For a very long time, people have been using bottles to carry different types of substances. For example, people have been taking Aspirin from bottles, drinking water from bottles and applying lotions from bottles. Though people have been using them all these time, typically bottles are just being used to carry substances.
It will be apparent from the foregoing that there is still a need for a more intelligent bottle. Furthermore, it is desirable for the bottle to be more personal to the user.
A number of embodiments of the invention generally pertain to an intelligent bottle or use thereof. The intelligent bottle is typically portable. The intelligent bottle can also be personal to its user. The intelligent bottle can be implemented in various ways and with various features or aspects.
In one embodiment, the present invention provides a personal and portable bottle with a thermometer integral with or electrically coupled to the bottle, and with the bottle carrying medication for fever (antipyretic), such as acetaminophen.
In one embodiment, the bottle can include one or more electrical attributes. For example, the bottle can include an output device, such as a display, a speaker and/or a tactile output device. The bottle can include an input device, such as one or more input buttons, a key pad, a stylus with pull down menu on a screen, a microphone, and/or a digital camera.
In one embodiment, the bottle can be connected to another electrical device, such as a memory device or a computer. This can be done physically such as through an electrical connector at the bottle. In another embodiment, the connection can be achieved wirelessly. For example, the bottle can include wireless communication capabilities, such as a RFID tag; electronics for global positioning; short distance communication electronics such as for Bluetooth, WiFi and infrared; and longer distance communication electronics such as for WiMax or cellular networks, which can be special-purpose phone to specific destinations. The connection can facilitate data exchange. For example, based on the connection, information in the bottle can be transferred to another device. This allows, for example, a user to transfer information from one bottle to another bottle.
In one embodiment, a bottle can be battery-powered. The bottle can have power conservation capabilities. For example, the bottle can be in sleep-mode until there is motion in the immediate vicinity of the bottle, or until the bottle is moved.
In another embodiment, a bottle can include browsed/search capabilities to allow information in the bottle to be electronically browsed/searched.
A bottle can have a number of physical attributes. For example, the bottle can include more than one compartment. One or more of the compartments can be detached. For example, the compartment(s) holding the electronics or the substances in the bottle can be detached. The user can detach the one or more compartments before washing the bottle. There can also be more than one compartment to hold additional substances.
In one embodiment, a bottle includes one or more electrical components, which can also be detached. For example, one electrical component is a memory card, which can be detached. Information to be stored by, for or in the bottle can be stored in the memory card.
Based on the one or more physical and/or electrical attributes, a bottle can keep track of personal information regarding the user, such as the user's health data. For example, the bottle can keep track of the temperatures or blood pressures of the user. The bottle can keep track of how often and how much the user has been taking the substance in the bottle. Other personal information can include the identity of the user. The bottle can track inputs entered into the bottle by the user. Inputs can be provided by the user through responding to questions from the bottle. The user can also download information from a device to the bottle. Information regarding the user can also be provided by others, such as a supplier of the bottle with the substance inside. The supplier can be the seller (e.g. drug company) or dispenser (e.g. pharmacist or drug store) of the bottle, or a medical personnel (e.g. doctor). For example, a pharmacist can download information regarding the user to the bottle when the pharmacist provides medications to the user.
In one embodiment, a bottle can keep track of additional information. For example, the bottle can keep track of information from a seller or a dispenser of the bottle. This can be specific information on the medication carried by the bottle, or products/services related to the medication. Such information can be downloaded into the bottle, such as by the seller or dispenser. The bottle can also keep track of conditions regarding the environment (e.g. surroundings) of the bottle, such as temperature. In one embodiment, information regarding the environment can be used to dynamically determine whether the content (e.g. medicine) of the bottle is still suitable for use. The environment can also influence how often its content is to be used.
In one embodiment, based on information available from a bottle, the bottle can perform one or more applications for the user. There are many exemplary applications. For example, the bottle can provide information and/or recommendations to the user. The bottle can call out the name of the user when it is activated. The bottle can tell the user what the time is. The bottle can educate the user regarding its content. The bottle can remind the user when the time comes to take the content and how much the user should be taking. The bottle can alert the user on health issues regarding the user, such as the user should be going for a checkup, or the user has vital health problems and should go see a doctor immediately. In one embodiment, the bottle allows the user to record voice messages, which can be time-stamped. The messages can also be linked to measurements made by the sensor, such as the thermometer.
Regarding buying products, in one embodiment, a bottle can alert the user on replenishing the substance inside the bottle. The bottle can also provide other options regarding medication to acquire based on the user's characteristics.
Regarding promoting products/services to the user, in one embodiment, a bottle can show advertisement. The source of the advertisements can be from the seller when the bottle was acquired, or downloaded from a website at a subsequent time. The advertisement can be interactive. For example, there can be embedded hyperlinks and/or pop-up windows in the advertisements.
Based on the information stored or acquired, the bottle can provide one or more applications for others. In one embodiment, based on the user's measurements, the bottle can alert one or more people interested in the well being of the user. They can include the user's relative, or the health care provider the user previously registered with. In another embodiment, the interested person can wirelessly access information in the bottle, such as through a cellular connection.
In one embodiment, specific information can be sent every time when the user takes a measurement or takes the substance in a bottle. Alternatively, the information can be sent only when there are some critical issues, for example, the user's temperature exceeding a certain threshold. In yet another embodiment, specific information is sent when requested by the user, such as when the user pushes a button on the bottle. Information can also be sent on request from a remote interested user.
The information kept in a bottle can be for subsequent use. In one embodiment, a doctor can download the information later. Such download can be done remotely, such as through a website, or locally, such as when the user is in the doctor's clinic.
The bottle can provide information to its seller. In one embodiment, a bottle carrying a substance can keep track of its own location, such as from its manufacturer to the pharmacy carrying it. Such location information can be periodically sent to its seller, and can help, for example, to ensure the medication produced is the medication given out to the patients, or reduce the problems of losing medication or not having sufficient supplies at hand.
In one embodiment, a bottle can alert the seller regarding its content, such as when its content is getting low. The bottle can keep track of whether its promotional materials has been read, such as whether its pop-up windows have been acknowledged or clicked. The seller can receive such information through the bottle's electrical connection, such as physically through the bottle's electrical connector, or wirelessly.
The information collected by a bottle can be personal and can be confidential. In one embodiment, the information in the bottle can be accessed only by the user. In another embodiment, whenever there is access, the user will be notified. The information can also be password protected and/or encrypted.
In one embodiment, one or more other types of sensors applicable to measure the user can be integral with or coupled to a bottle. One example of a sensor is a thermometer, as noted above. Another example of a sensor is a skin hydration sensor or a lotion sensor. In such case, the bottle can be a bottle of lotion.
In another embodiment, a sensor can be a secretion sensor based on reagent, such as a flu sensor, with a bottle carrying antipyretic/analgesics such as acetaminophen or ibuprofen. In one embodiment, the secretion sensor includes a sensor head and a sensor tube. The sensor head can include a printed circuit board and is adapted for repeated usage. The sensor tube includes reagents on absorptive material (e.g. filter paper) in the shape of a tube, and can be disposable. The sensor head can include multiple pairs of LED and photodiode, and the sensor tube can include multiple reagents. Each pair of LED and photodiode is adapted to measure one reagent. There can be one extra pair of LED and photodiode serving as an identifier to determine which types of reagents are on the sensor tube.
In one embodiment, a sensor can be a saliva sensor, with a bottle carrying a type of beverages. The saliva sensor can measure the viscosity of the saliva, which can then tell the hydration level of the user, or how well hydrated the user is.
In one embodiment, information from more than one sensor can be used to provide personal information regarding the user. For example, there can be an activity sensor, such as a pedometer, to keep track of the user's activity. Such activity information can be used with information from a saliva sensor to provide guidance to the user on fluid intake. As another example, another sensor can be a temperature sensor to measure, such as the environment temperature.
The substance in the bottle can pertain to medication, whether prescribed by medical personnel, or over-the-counter medication. In one embodiment, a bottle carries antidepressant medication, such as Paroxetine or Fluoxetine. Every day, the user activates a bottle and answers a number of questions from the bottle. The questions can be related to the user's mood, sleep pattern and activity level. The user's answers are summarized, such as charted or graphed, and presented to the user's healthcare provider. Based on the data presented, the provider adjusts the medication dosage for the user.
In another embodiment, a bottle carries antihypertensive drugs. Both over and under dosage of such drugs can be dangerous. Every day, the user activates the bottle and measures his blood pressure. Based on the measurement and the user's responses to a number of questions, the bottle could send the data to healthcare professionals. The data are typically summarized, charted and/or graphed before sending to the healthcare professionals. This can enable real-time titration/adjustment of drug dosage, thus enabling quick stabilization of the user's hypertension.
In one embodiment, a user has asthma, and a bottle has medications and monitoring sensor for asthma. The bottle can have a peak flow meter and one/two metered dose inhaler such as bronchodilator, like Albuterol, and inhaled steroid, like Fluticasone. Based on the measurement of the peak flow meter, and answers to a number of questions on additional symptoms, the bottle could recommend the dose (number of puffs)/frequency of metered dose inhaler. The recommendation may depend on the user severity of asthma, as previously determined by healthcare professional. The metered dose inhaler can also be set automatically to adjust its dosage, and recommends the user on the frequency and the number of puffs each day, based on the peak flow reading and asthma severity.
In one embodiment, a user has attention deficit hyperactivity disorder. On a daily basis, the user's parents activate a bottle and answer a number of questions regarding the user, such as the user's attention and hyperactivity scales. Within a time period, such as one week, the bottle can produce a set of data that can be summarized and charted, which can be sent to the user's health care professionals for adjustment of medication dose. This data can also be useful to encourage/motivate user to take medication. The bottle can also include a built-in safety mechanism. If the bottle suspects over-dosage abuse, the bottle can alert a healthcare provider.
In another embodiment, a bottle monitors other types of information that can be personal to the user. For example, there can be different ways to monitor the usage of the substance in a bottle. One way to monitor usage is by weight measurements. In one embodiment, a sensor can sense each time the bottle is opened. In another embodiment, a sensor can measure the empty space, or the distance or the volume between the opening of the bottle and the top level of the content in the bottle.
There can also be other types of user inputs requested by the bottle. In one embodiment, the bottle can monitor the user's mental capacity. This can be done, for example, by asking the user to answer a set of questions. Information regarding the user's prior health history can also be provided by the user to the bottle.
In one embodiment, information regarding the user can also be provided by other instruments. These instruments can be wirelessly coupled to a bottle, such as through Bluetooth, WiFi or infrared. Examples of such instruments include a scale for the weight of the user.
Other information regarding the bottle's environment can be monitored by a bottle. For example, the bottle can keep track of the humidity of its immediate vicinity through a humidity sensor at or coupled to the bottle.
The bottle can also perform other functions. In one embodiment, a bottle can provide other personalized educational materials related to its content to the user. To illustrate, the bottle can hold diabetes medication, such as insulin. The bottle can educate the user issues regarding foot problems because many people with diabetes develop foot problems also.
In one embodiment, a bottle can guide a user through a program. For example, the bottle can track the user's progress and compare it to the user's weight-loss goals.
In one embodiment, a number of applications described above can be performed by a computer or a website, instead of the corresponding bottle.
In another embodiment, one or more of applications previously described for a bottle can alternatively be performed by a base. Information in a bottle can be accessed by the base through a barcode reader, a RFID tag reader and/or a connector. In one embodiment, the connector can be at the bottom of the bottle, and the connector can be slightly recessed to allow the bottle to firmly stand. The corresponding connector at the base can be in a recessed space on the top surface of the base. The bottle can sit in the recessed space, with its connector received by the corresponding connector at the base.
In one embodiment, the base can also have a slot to receive a sensor and a scale to keep track of the weight of the bottle.
In another embodiment, the base can have more than one recessed spaces for additional bottle(s) and/or more than one slot for additional sensor(s). In one embodiment, the base can tell if the multiple substances the user is taking conflict with each other and can harm the user.
In one embodiment, the base further can be wired or wirelessly connected to another device, such as a computer or a website. With such a base, a bottle can include minimal electronics. For example, the bottle can keep track of what content it is carrying. Every time, when the bottle is placed onto the base, the bottle's connector is received by another connector at the base. The base can then keep track of the content in the bottle, including when it has been used.
Other aspects and advantages of the present invention will become apparent from the following detailed description, which, when taken in conjunction with the accompanying drawings, illustrates by way of example the principles of the invention.
Same numerals in
In one embodiment, the bottle can have one or more input mechanisms. The bottle can have one or more input buttons or switches, a keypad and/or stylus to allow inputs by hand. There can be a pull-down menu on a display on the bottle. The stylus can activate the pull-down menu to enter information into the bottle. The inputs can be through voice. There can be a microphone on the bottle to receive voice signals by the user. The bottle can understand natural language by the user. There are different approaches to implement such natural-language comprehension, as discussed, for example, in U.S. Pat. No. 6,498,921, entitled, “Method and system to answer a natural-language question”, which is hereby incorporated by reference into this application. In yet another embodiment, the input mechanism is visual. The bottle can include a camera to take pictures as entry.
In one embodiment, the bottle includes one or more electrical connection mechanisms to couple the bottle to one or more electrical devices. One such electrical connection mechanism is an electrical connector, which can bemused to plug the bottle to a physical network. For example, the bottle can have a standard electrical connector, such as a USB connector. As another example, the bottle has a non-standard electrical connector. Such connector can connect the bottle to another electrical device, such as a memory device, like a flash card, or connect the bottle to a computer.
In one embodiment, the bottle can include electronic circuits to allow the bottle to be coupled to a wireless network.
In another embodiment, the bottle includes a position-sensing device, which can be based on GPS technologies, to couple to position-sensing information. For example, the device can wirelessly acquire position signals, extract raw position data from the signals, and convert the raw position data into the position of the position-sensing device.
In one embodiment, the bottle includes electronics for short-range communications, such as those based on Bluetooth, UWB, Zigbee, WiFi, infrared or other types of short-distance wireless transmission standards. For example, the bottle can include a short-range analog or digital wireless transceiver under one of the standards. Based on the short-range communication electronics, the bottle can wirelessly connect to another computing device, another sensing device and/or another instrument.
In another embodiment, the bottle includes electronics for long-range or longer-range communications, such as those based on WiMax or cell-phone standards. For example, the bottle can include a special purpose one-way phone that is only connected to one or more specific destinations. For example, instead of dialing all the numbers of the destination(s), a person only needs to push one button on the bottle, and the bottle will be connected to the destination(s). One such location can be the cell phone number of a healthcare provider of the user. Another can be a SMS message to an electronic address of a relative of the user. Yet another can be to a 911 operator.
Based on one or more electrical connections, information in a bottle can be transferred to another device, or bottle. For example, information in a bottle can be downloaded to a storage medium. In another example, information in a bottle can be transferred to another bottle.
In one embodiment, a bottle can be battery powered. The battery can be re-chargeable. In another example, the battery is not designed to be replaceable by the user. In another embodiment, a bottle includes power conservation algorithm. For example, the bottle goes into a sleep mode if its electronics are not activated or if there is no input into the bottle for more than a pre-set period of time, such as fifteen minutes. In another example, to conserver power, the display on the bottle is turned on only if a motion sensor in the bottle senses motion in the immediate vicinity of the bottle, or if the bottle has been moved.
In another embodiment, the bottle includes browse/search capabilities to allow information in the bottle to be browsed/searched and accessed. For example, different pieces of information stored in an electronic storage device in a bottle can be categorized, and the categorization can be hierarchical, with multiple levels in the hierarchy. To illustrate, assume that there are two levels. The top level can be the name of a medication, and the second level can be the time a specific medication was taken. The entries, such as the name of a medication, can be abbreviated. There can be a control knob or switch to allow the user to scroll down entries in a level. By pushing the knob, the user selects an entry, which can lead the user to the next level. There can be an entry for moving up a level also. In one embodiment, once an entry is selected, the identity of that entry will be announced. For example, a selected entry is about acetaminophen or Aspirin. Once that entry is selected, a speaker in the bottle will announce, “Aspirin.” If that is the one the user wants, the user can signal his preference by, for example, pushing a switch in the bottle. Another example of information access is through, for example, pull-down menus, as discussed, for example, in U.S. Pat. No. 6,839,699, “natural query interface based on concept selection,” which is hereby incorporated by reference.
In the example shown in
In one embodiment, any of the buttons can serve as an on switch for the bottle. If any of the buttons is pushed, the bottle will be activated. If no buttons are pushed, or no entries are made for a duration of time, such as 10 minutes, the bottle will deactivate. In another embodiment, after activation, the display 108 can show an exit icon, which, if entered, will turn off the bottle.
The three contacts of the output port 112 can be for Tx, Rx and Gnd connections respectively. In another embodiment, the output port can be a standard connector, like a telephone plug.
In the example shown in
The temperature sensor 102 also can include an on/off switch 140 and a display 142, such as a LCD display, to show temperatures measured.
There can be multiple areas to store multiple substances. For example,
In one embodiment, the substance in a bottle is stored in a bag. When the substance is getting low and needs to be replenished, the user can order another bag of the substance and replace the old bag with the new bag, while using the same bottle.
In one embodiment, one or more compartments are detachable. For example, the compartment holding electrical components is detachable. The user can detach the electronic compartment and wash the bottle, such as with a dishwasher.
A bottle can hold information electronically regarding the user. The personal information of the user can come from different sources.
In one embodiment, the personal information is from a sensor. The sensor can be a sensor that measures a health condition of the user. As an example, the sensor is a thermometer. After temperatures are measured, the bottle keeps track of the measured temperature, which can include the time when each temperature was measured.
The amount of the substance that has been consumed by the user can be kept track of. For example, a scale can keep track of the weight of the bottle. As the user takes the substance, the weight of the bottle is reduced. The scale can be in a base that the bottle sits on. More discussion regarding the base will be found below. In this example, the bottle is assumed to be personal to the user, and only the user takes the substance in the bottle.
Another type of information regarding the user is the user's identity. In one embodiment, the bottle includes a biometric sensor that can be used to sense the identity of the user. The biometric sensor can be based on the user's voice, the user's fingerprint and/or the user's iris.
In one embodiment, a bottle includes a fingerprint sensor to serve as a key to access the information stored in the bottle. The fingerprint sensor can also serve as an on/off switch. As the user presses onto the sensor, the sensor is activated. If the sensor authenticates the fingerprint to be the fingerprint of the user, other electrical components in the bottle will be activated. Otherwise, the user cannot use at least one electrical component in the bottle.
In another embodiment, the bottle stores a code entered by the user, and the code can be used to identify the user. The code can be an alphanumeric string of characters. Upon entering the code, the user can use other electrical components in the bottle.
In one embodiment, the source of information regarding the user is from the user's input. For example, the user provides the inputs by responding to questions from a bottle. The bottle can present one or more questions to the user. Based on the user's responses to the questions, the bottle gathers information regarding the user. This can be done through a speaker and a microphone on a bottle, or through questions shown on a display of the bottle.
Instead of responding to questions from a bottle, in another embodiment, the user downloads information into a bottle. This can be done from, for example, a memory card or a computer. For example, the user can download information regarding his health history into a memory in the bottle.
There can be different types of inputs by the user. The inputs can be related to the condition of the user. For example, it can be the user's response regarding whether the user has eaten yet to find out if the user has an empty stomach before taking the content in the bottle. In one embodiment, the inputs can be related to the user's preference. For example, the inputs can be a piece of contact information, such as the cell phone number, of the user, or an email address of a healthcare provider. This allows the bottle to contact the person the user prefers, if the bottle has such capabilities. In another example, user preference includes the songs, or the tunes, which the user likes and/or dislikes. The songs can be downloaded into the bottle.
Information regarding the user 400 can be from another person or entity. In one embodiment, the information is from the seller or dispenser of the bottle with the substance inside. For example, when the user gets the bottle with medication from a pharmacy, a pharmacist can download information regarding the user into the bottle. There can be a barcode or other identifier that includes or points to information regarding the user, such as the user's name. The pharmacist can scan the barcode or use the other identifier. After capturing the information, the information can be downloaded to the bottle. As another example, the information is from a healthcare provider of the user. The user can go to see the provider, who can download information regarding the user into the bottle.
Instead of information regarding the user, the bottle can store other types of information.
In one embodiment, a bottle also stores information related to the bottle's immediate environment. For example, the bottle keeps track of the information from a motion sensor in the bottle. The motion sensor keeps track of motions in the immediate vicinity of the bottle.
In one embodiment, the bottle keeps track of the usage of the substance in the bottle. Based on the usage, the bottle can determine user compliance, or whether the user has been following the recommendation of a health care provider on when and how much to take the substance in the bottle. In another embodiment, the bottle can determine user abuse in taking the substance in the bottle. For example, the bottle carries a controlled substance, and the user can take significantly more than the recommended amount, in turn causing substance abuse. In yet another embodiment, the bottle can determine user mistakes, such as incorrect dosage being taken by the user.
In one embodiment, the bottle can remind the user when to take the substance in the bottle, how much the user should take, when the user should take again and/or reprimand the user for not taking the substance for a duration of time.
The bottle can also remind the user to acknowledge 558 the use of the substance in the bottle. For example, the bottle can say, “Angeline, after you have taken the tablets, please push the blue button on the bottle.” After the user has taken the medication, the user can push the blue button on the bottle. This would facilitate the bottle to keep track 560 of information related to the user's usage. The bottle can also remind 562 the user when the user should be taking the substance. For example, the bottle can say, “Angeline, you should be taking two tablets of Aspirin in 4 hours, or around 5 pm today.” With no other activities after a predetermined duration of time, the bottle deactivates 564 itself, such as by having its electronics go into a sleep mode or turning itself off.
Instead of waiting for the user to activate, the bottle can proactively send a message to the user, or to another person or entity.
In one embodiment, the user can be reminded by different types of songs or ring tones. If the user takes the medication at the right time, the bottle can reward the user with a happy song, or a song that the user likes. If the user takes the medication at the wrong time or takes the wrong amount, the bottle can reprimand the user with a sad song upon identifying the mistake. In another embodiment, the bottle can remind the user when it is time to take the medication with a pleasant song. If the user ignores the reminder and does not take the medication for a preset duration of time, the bottle can play an annoying song. The different types of songs, or sound clips, which can be a few seconds of a song, can serve the functions of rewards/punishment and/or motivation for the user to take the medication at the appropriate time.
In one embodiment, the bottle can allow the user to record messages, which can be voice messages. These messages can be time-stamped. These messages can also be linked to measurements made by the sensor, such as the thermometer. For example, after the user has measured his temperature, the user can record a message as to how he feels. Such information can be recorded for later retrieval.
The bottle can help the user regarding buying products. For example, the bottle can keep track of the amount of the substance in the bottle. When the content is getting low, the bottle can remind the user that it is about time to replenish. The bottle can provide suggestions to the user as to alternative substances to acquire. This suggestion can be based on the user's characteristics. For example, the user typically has high fevers. Based on such information, the bottle can suggest the user to buy Motrin, instead of Aspirin. In one embodiment, the bottle can upload such information to another device, such as a computer, which can add Motrin to other medications the user needs, to assemble a list. Next time when the user is about to go to a drugstore, the user can access the updated list from the computer as a reminder.
In one embodiment, the bottle can provide promotional materials to the user. The materials can be an advertisement shown on a display on a bottle to promote products and/or services offered by a company. Such products and/or services can be related to the substance in the bottle. The promotional materials can be from a supplier of the bottle with its substance. They can come with the bottle when the user buys the bottle. Or, they can be downloaded to the bottle after acquisition. For example, the user can connect the bottle to the company's website to download such information into the bottle. In one embodiment, when the user visits the website of the company, the user may be encouraged to connect the bottle to the website, such as through a connector on the bottle. The company can give incentives to the user if the user is willing to allow the company download company information onto the bottle. The incentives, for example, can be discounts for the company's products, which can include services.
In one embodiment, the product promoted can change. This change can be based on time. For example, every week the display can change the product shown, such as the display showing a type of health tea on one week and automatically changing to a type of vitamin the next week. The type of product promoted, such as the vitamin, can be more suitable for the user as indicated by the measurements from a sensor coupled to the bottle, such as the thermometer.
In one embodiment, the promotional materials can be interactive. There can be embedded hyperlinks and/or pop-up windows in the promotional materials, which allow the user to interact with the promotional materials.
In one embodiment, a bottle can provide information and/or recommendation to a person or entity interested in the well being of the user, such as a relative, a healthcare provider, a doctor, a nurse, a social worker, or the police.
The bottle can keep track of the user, such as the user's temperature to assist, for example, a healthcare provider. Such information can be stored in the bottle for future download. The download can be done remotely or locally. For example, the user can download the information to the healthcare provider's website through the user's computer. Or, the user can take the bottle to see the healthcare provider, allowing the healthcare provider to access the stored information. In another embodiment, such information can be wirelessly sent, such as through a cellular connection, to the person interested in the well-being of the user. In yet another embodiment, the person can also access the information wirelessly such as, by cellular connection. This can be done, for example, by allocating a cellular phone number to a cellular phone embedded in a bottle, which can allow the person to directly access the information.
In one embodiment, the bottle can send stored information to a person or entity interested when there is a critical issue. For example, if the temperature measured is beyond 104 degrees, the bottle can automatically send a message to the family doctor of the user. In another embodiment, the bottle can send an instant message to a relative of the user every time the user takes the substance in the bottle, or every time the user takes a measurement.
In yet another embodiment, the bottle can send information to a person or entity as requested by the user. For example, there might be a special button on the bottle. The button activates a special-purpose phone, such as when pushed, a special number will be dialed. In one embodiment, the most recent data, such as data captured within the last twenty four hours will be sent to the recipient.
In one embodiment, the bottle provides information and/or recommendation to a supplier of the bottle with the substance inside the bottle. For example, the bottle keeps track of its own location from the manufacturer to its dispenser or retailer and to the customer, such as from the big pharmaceutical company where the medication is produced, through the distributors, to pharmacies or hospitals. In one embodiment, such tracking can help ensure the drug produced is the same as the one being given out to the consumers; or such tracking reduces the chance of the drug produced being tampered with before reaching the consumers. Such tracking can also help reduce the problem of losing medical supplies or reducing the chance of having insufficient supplies of certain medication at hand. Such location information can be automatically forwarded to the entity interested, such as a hospital, distributor, manufacturer or pharmacy.
In another embodiment, the supplier can be aware of the user's usage. For example, a seller is aware of the substance getting low, or the seller can keep track of the usage of the substance each time the user uses it. In another embodiment, the seller is aware of the user accessing promotional materials, such as tracking the use of the hyperlinks and/or pop-up windows. This allows advertisers to gather information about what the user shows interest in (e.g. clicks on), and determine effects on sale of products. Such information can be transmitted to the seller through the bottle's electrical connection, for example, through the bottle's wireless connections.
Information stored in the bottle can be sensitive, particularly to the user.
In another embodiment, the user is aware of any access. This can be whenever the information is accessed. For example, the bottle can send the user an electronic message whenever any of the information is being accessed. In another embodiment, the bottle keeps track of data access and changes made to the data. Such information can serve as an audit trail.
A number of embodiments have been described regarding functions performed by a bottle. In one embodiment, a bottle is defined as a container or a receptacle that has a narrow neck. In another embodiment, a bottle is defined as a container or a receptacle with a width that is not uniform (some part narrower than another part, such a neck portion being narrower). In yet another embodiment, a bottle does not have to have a narrow neck and a bottle can have uniform width or substantially uniform width, but the bottle has an opening or a mouth that can be plugged, corked or capped. For example, the cap can be removed to expose the opening or the mouth. In still another embodiment, a bottle is portable if it can be carried or moved with ease by a person. In yet another embodiment, a bottle is portable if it can be handheld, meaning that it can be easily grasped and/or carried within a single hand.
In one embodiment, any of a number of functions previously described as being performed by a bottle can be performed by a base.
In one embodiment, in such a base implementation, operations performed by a bottle can be minimized. For example, when the user gets his medication from a pharmacist, the bottle can include information regarding the prescription, which can include the user's schedule to take the medication. Such information can be on a barcode, a RFID tag or in a memory in the bottle, according to different embodiments. The user can download such information into the base. For example, if the information is in a barcode on a bottle, the base can include a barcode reader 652. The user can push a start button 654, and then the user can scan the barcode to enter such information into the base 650. When the barcode is successfully scanned, a signal can be provided to the user, such as a light 656 can turn on, or a signal can be provided by a speaker.
Note that different pharmacies might use different barcodes. In one embodiment, information regarding different barcodes from the different pharmacies is stored in the base.
In one embodiment, the base can include a RFID tag reader, including its antenna 658, to access the information stored in an RFID tag.
Alternatively, the bottle can include an electrical connector. The user can connect the bottle's connector to a base connector to download the information. In one embodiment, the bottle's connector is at the bottom of the bottle. There can be a recessed space on top of the base to receive the bottle. When the user puts the bottle into the space, with the bottle's connector received by the base's connector, information in the bottle can be downloaded into the base. In one embodiment, the bottle's connector can be at the bottom of the bottle. The bottle's connector can be a standard connector, such as a USB connector. The connector can be slightly recessed into the bottle, allowing the bottle to firmly stand on a flat surface, without the connector sticking out.
In one embodiment, the base includes a slot 660 to receive a sensor 662, such as a thermometer. The slot 660 can be used to track different measurements regarding the user. Each time a sensor is stationed in the space, such as inserted into the slot 660, measurements made by the sensor 662, such as in the past 24 hours, are uploaded to the base 650. The upload can be through a connector at the sensor 662 with a corresponding connector at the base 650.
In one embodiment, the base 650 can also include a scale 664. The user can weigh a bottle with the scale 664. The scale 664 can also be at a recessed space on top of the base 650 to receive the bottle. In another embodiment, as the bottle sits on the scale 664, its RFID tag is read by a RFID tag reader in the base 650.
In another embodiment, the base can have multiple recessed spaces for more than one bottle. The base can also have multiple slots for more than one sensor to be stationed.
In another embodiment, the base 650 can include a connector 666 to connect to other devices or instruments, such as a computer. Instead of a physical connector, the connection can also be wireless. Based on such connections, the base 650 can be connected, for example, to another area, such as a website. Information in the base 650 can be accessed and the base 650 can also access information from the another area, such as the website. In yet another embodiment, the base can also include another input/output connector 668, which can be for a memory device, such as a flash memory card.
In one embodiment, the base can keep track of the time, the date, the weight of a bottle, the medication, sensor measurements and/or the user identity. For example, every time the user uses a bottle of medication, the user can place the bottle on a selected space on the base to weigh the bottle and to download information into the base. This would allow the base to keep track of information related to the user taking the medication.
In one embodiment, since the bottle can keep track of the type of substance taken by the user, as the user takes different types of substances, such as from different bottles, the information regarding the substance can be downloaded into the base accordingly. Based on information in the base, or information accessed from a remote site or area, the base can provide indication to the user that the different types of medication the user is taking, conflict with each other and can cause complications to the user.
In one embodiment, a base is, or performs the functions of, a medical monitoring system. In another embodiment, a base can be considered personal to the user in the sense that the user typically does not want to share it with another user if the another person is using the base for similar purposes as the user. This can be similar to a toothbrush, which is usually considered personal to the user. However, the user may be willing to let a healthcare provider use it because the provider is typically using the base for different purposes, such as to access information from it to diagnose the user.
In
In
Instead of a thermometer,
In one embodiment, the sensor is a skin hydration sensor or a lotion sensor and the bottle is for holding lotion.
In one embodiment, the sensor is a blood pressure monitor. In another embodiment, the sensor is a pulse oximeter.
In yet another embodiment, the sensor is an anthrax sensor, such as using PCR based test, which can be applicable to a bio-terrorism environment. The corresponding bottle can carry the antibiotics against anthrax.
In one embodiment, the sensor is a secretion/excretion sensor based on a reagent, and the bottle holds medication, such as, for example, for flu/cold/strep-throat. The secretion/excretion can be, for example, saliva, sweat, urine, or stool, depending on the embodiment. FIGS. 14A-C show different embodiments of a reagent sensor according to different embodiments, with the sensor 775 including a sensor head 777 and a disposable sensor tube 801 carrying reagents.
As shown in FIGS. 14A-B, the sensor 775 includes a sensor head 777 adaptable to be inserted into a slot 779 of a bottle 781. The electrical components of the sensor head 777 can be on a printed circuit board 778. The board includes an on/off switch 783 to activate the head. The board also includes a number of connecting pads 785, 787 and 789, to electrically connect to a number of corresponding pads 791 at the bottle 781. The board can also hold a battery 793 as a power source, and a microcontroller unit 795 to control operations.
In one embodiment, the sensor head 777 includes a number of light emitting diode and photodiode pairs, such as 797 and 799. For example, there can be two such pairs, each pair for one type of reagents. To be explained below, an extra pair of light emitting diode and photodiode pair can be used to identify the reagents. In another embodiment, the extra pair can serve as a base line of the electrical measurements.
In one embodiment, the sensor tube 801 includes reagents 803 positioned or printed on a piece of absorptive material, such as a filter paper 805 that is in the form of a tube or envelope. The reagents are on the inside of the tube 801. There can be a piece of plastic or other transparent materials covering the reagents. The transparent materials can serve as the inner lining of the tube and can serve to provide structural strengths for the tube. The tube creates a channel to receive at least a portion of the sensor head 777.
An alignment mechanism can indicate that the tube 801 and the sensor head 777 are at the appropriate locations relative to each other. In one embodiment, the alignment mechanism is based on pushing the sensor head 777 all the way into the end of the channel of the tube 801. At that position, each LED and photodiode pair is approximately aligned to their corresponding reagents, such as the pair 807 and 809, with their reagents 803. When the LED emits light, the photodiode receives the light of the LED reflected from the corresponding reagents.
There can be markings on the filter paper. The marking, such as bar codes, can be used to indicate the identity of the one or more reagents on the filter paper. The extra LED 811 and photodiode 813 can be used to read the markings. For example, the markings can be printed barcodes that are read as the tube 801 is slid on or off the sensor head 777. In one embodiment, as the sensor head 777 is inserted into the channel of the tube, the photodiode 813 keeps taking measurements.
With the sensor tube 801 disposed, the sensor head 777 can be inserted back into the slot 779 at the bottle 781. Measurements made by the sensor head 777 can then be uploaded into the bottle 781.
In one embodiment, the secretion/excretion sensor based on a reagent can be used to measure the blood or other fluids of the user, based on different types of reagent.
In yet another embodiment, the sensor is a saliva sensor that can be used to determine whether a user is well hydrated. The corresponding bottle can hold a type of beverage. A number of embodiments regarding saliva sensing have previously been described in U.S. Provisional Patent Application Ser. No. 60/670,957, entitled, “Bottle of lotion with a lotion sensor”. The sensor can be disposable and the bottle can contain different types of beverages or fluids, which could include nutrients, vitamins, minerals, and/or medications. For example, the beverage can be vitamin C enriched water.
FIGS. 15A-C show a saliva sensor 850 that can continually measure certain attribute(s) in saliva according to different embodiments.
Instead of using a pressure pump and a vacuum pump, in another embodiment, the user can blow into the tube 854 to clear the tube 854. The MCU can just keep measuring for the time T without the pumps.
In one embodiment, measurements can be based on multiple sensors sensing the user. For example, a saliva sensor and an activity sensor, such as a pedometer, can be coupled to a bottle. Based on both the saliva and the level of activity (or the lack of activity), the bottle can recommend appropriate fluid consumption for the user.
In one embodiment, the sensor can include a sensor in a point-of-care test. For example, the sensor is a blood tester, which can be a self-testing blood tester, such as for cholesterol test or hormone test. Another example of a sensor in a point-of-care test is a flu test sensor.
The substance in the bottle does not have to be limited to over-the-counter medication. In one embodiment, a bottle carries an antidepressant medication, such as Paroxetine or Fluoxetine.
In another embodiment, a bottle carries antihypertensive drugs. If the user has high blood pressure, both under and over dose can be dangerous to the user. The user can be a patient. In one embodiment, the user takes three different types of medication. They may include Diuretic, such as Hydrochlorthiazide, Ace Inhibitor, such as Captopril, and CA-Channel Inhibitor, such as Nifedipine.
In another embodiment, the user may get visual reports 943, such as a blood pressure graph on a display on the bottle. The graph can show his blood pressure being in a downward trend, presumably attributed to his effort of taking the recommended dosage of medication. Such reports can serve as an encouragement, motivating the user to continue to be diligent in taking the medication. However, if the trend is unfavorable, the user might be more inclined to consult his healthcare provider. Such constant monitoring can minimize side effects.
In one embodiment, the amount of medication in the bottle is monitored. If the user is not taking the medication as recommended, or if the medication is not re-filled, the user's health care provider and/or a family member of the user could be alerted. This can promote compliance of taking medication and also can potentially identify the user for further counseling or health professional visit.
In one embodiment, a base, such as one described in
In one embodiment, the user has asthma. In this example, a bottle can include two metered dose inhalers, such as an Albuterol inhaler and a steroid inhaler, and the sensor includes a peak flow meter.
In one embodiment, the user has attention deficit hyperactivity disorder. The medication can include Ritalin, Concerta, Adderall and/or Straterra.
Different embodiments for other prescription drugs are also applicable to the present invention, such as Propanolol for migraine headache, insulin for diabetes, lipid lowering drugs, or other drugs that need to be taken regularly, such as daily, or other drugs where the user needs to be frequently monitored of side effects.
Different approaches on measuring the quantity of substance consumed or left in a bottle have been described. In one embodiment, the usage of the substance is measured or is deduced based on sensing the number of times the bottle or the cap of the bottle has been opened. In another embodiment, the usage is measured based on sensing the empty space in the bottle, such as the distance or the volume between the bottle cap and the top level of the substance, such as the fluid, in the bottle. The cap covers an opening of the bottle to keep the substance in the bottle. This can be done, for example, by measuring the time it takes for an ultra-sonic pulse to travel from the cap to the top level of the fluid and back. Based on the travel time, the distance is calculated. In yet another embodiment, the volume of the empty space is calculated based on measuring the acoustic resonance of the space to determine the size of the empty chamber.
Different types of inputs provided by the user have been described to provide user information. In one embodiment, another type of user inputs is for measuring the mental capacity of the user. For example, questions are presented to the user for answers. The questions can be mathematics questions. In another embodiment, the prior health history of the user, which can be provided by the user, can include the health history of one or more family members of the user.
Different types of instruments have been described that can be coupled to a bottle. In one embodiment, an exercise machine, such as a bicycle, a treadmill, or a stepper machine, is electrically coupled to the bottle. In another embodiment, a scale for measuring the weight of the user is coupled to a bottle. Information from such a machine, like a scale, can be sent to the bottle. Such information can be used together with other information in the bottle to provide, for example, recommendation to the user.
Different types of sensors have been described to measure the user.
In one embodiment, a bottle has additional information from one or more sensors measuring the environment in the immediate vicinity of the bottle. Examples of such sensors include one or more sensors for temperature, humidity, altitude, sunlight and/or ultra-violet radiation. In one embodiment, information regarding the environment can be used to dynamically determine whether the substance (e.g. medicine) in the bottle is still suitable for use by the user. The environment can also influence how often the substance is to be used by the user. In another embodiment, such information can be used together with other information in the bottle to provide, for example, recommendations for the user.
Different types of applications by a bottle have been described. In one embodiment, a bottle can provide personalized education and/or recommendation to the user regarding the substance the bottle contains. In one embodiment, the education and/or recommendation provided to the user is personalized to the user. For example, if the bottle carries antipyretic/analgesic medication, the appropriate amount recommended for a user can be tailored to the user based on the user's age, sex and weight. As another example, since many people with diabetes develop foot problem, though the bottle carries diabetes medication, the bottle provides education to the user regarding foot problem.
In another embodiment regarding applications, a bottle can recommend a user regarding a health program the user is involved. The bottle tracks the user's progress and compares the goals set by the user. Then, based on, for example, the user's consumption of the substance in the bottle, the user's weight and the user's activities, the bottle can determine if the program is effective, such as whether the user's weight-loss program is working.
In one embodiment, a bottle can provide motivation to the user.
In one embodiment, at least some of the functions previously described as performed by a bottle can be performed by another device. In another embodiment, a number of the functions previously described as performed by a bottle are performed by a computer coupled to a bottle, through, for example, a connector at the bottle. In a further embodiment, a number of functions previously described as performed by a bottle are performed by a remote website, wired or wirelessly coupled to a bottle. In yet another embodiment, a number of functions previously described as performed by a bottle are performed by a sensor electrically coupled to a bottle. Further, in one embodiment, at least some of the functions previously described as being performed by a bottle can be performed by a base, such as the base shown in
Different embodiments have been described regarding a bottle carrying a substance. The substance can be in solid (such as pills), liquid or gaseous form, depending on the embodiment.
A number of embodiments have been described regarding a base coupled to a bottle. In one embodiment, a base can be used to measure the consumption of a substance in a container. One can scan the barcode on the container to download information regarding the substance into the base. The user can then weigh the container after the user consumes the substance, or can weigh before and after the consumption. This can allow the base to keep track of when and how much the user has consumed the substance.
A number of embodiments have been described based on a bottle. In one embodiment, instead of a bottle, different embodiments previously described are incorporated in a container, such as a box, a bag or a canister.
As described above, in one embodiment, a bottle has a connector to couple to electronics in the bottle. In an example, the connector is at the bottom of the bottle, such as in a recessed area. The electronics are also at the bottom of the bottle. To illustrate, there could be an electronics compartment at the bottom of the bottle to hold the electronics, which could be on a printed circuit board. The electronics compartment could be right below the bottom of the internal compartment of the bottle that holds a substance (e.g., pills). The connector can be further below or can be a part of the electronics component. There could be stands at the bottom edge of the bottle to hold up the bottle, preventing the connector from touching the surface the bottle is standing on.
In yet another example, there could be an internal scale inside the bottle. The substance in the bottle is on the scale. The scale keeps track of the weight of the substance, which in turn can provide an indication as to the quantity of substance left in the bottle. In one embodiment, the electronics in the bottles include a memory device that keeps track of different types of information. Examples of the different types of information include the name of the user who should be taking the substance; the name of the substance in the bottle; the brand name of the bottle of substance; the name of the company manufacturing the substance; the name of the pharmacy distributing the bottle with the substance; the name of the doctor prescribing the substance; the time when the bottle with the substance was sold to the user or “filled” by a pharmacy; the price of the bottle with the substance; schedule indicating when and how the substance should be consumed; an expiration date of the substance in the bottle; any warnings regarding taking the substance; and conflicts the substance might have with other substances.
As described above, in one embodiment, based on the communication electronics in a bottle, the bottle can, via wire or wirelessly, connect to another computing device. In an example, the bottle is a first bottle, and the another computing device is a second bottle, both with communication electronics. Each bottle includes a memory device in its housing to electrically store a piece of information regarding the substance in that bottle and a piece of information regarding the user using the substance in the bottle, such as the user's name. Assume that the substance carried in the first bottle is different from the substance carried in the second bottle. In this example, the first bottle can transmit information to the second bottle to generate a message for the user regarding complications if the user consumes both the substances in the first and the second bottle.
As described above, in one embodiment, a portable bottle includes a sensor that is coupled to the bottle housing.
The various embodiments, implementations and features of the invention noted above can be combined in various ways or used separately. Those skilled in the art will understand from the description that the invention can be equally applied to or used in other various different settings with respect to various combinations, embodiments, implementations or features provided in the description herein.
A number of embodiments in the invention can be implemented in software, hardware or a combination of hardware and software. A number of embodiments of the invention can also be embodied as computer readable code on a computer readable medium. The computer readable medium is any data storage device that can store data which can thereafter be read by a computer system. Examples of the computer readable medium include read-only memory, random-access memory, CD-ROMs, magnetic tape, optical data storage devices, and carrier waves. The computer readable medium can also be distributed over network-coupled computer systems so that the computer readable code is stored and executed in a distributed fashion.
Numerous specific details are set forth in order to provide a thorough understanding of the present invention. However, it will become obvious to those skilled in the art that the invention may be practiced without these specific details. The description and representation herein are the common meanings used by those experienced or skilled in the art to most effectively convey the substance of their work to others skilled in the art. In other instances, well-known methods, procedures, components, and circuitry have not been described in detail to avoid unnecessarily obscuring aspects of the present invention.
Also, in this specification, reference to “one embodiment” or “an embodiment” means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the invention. The appearances of the phrase “in one embodiment” in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. Further, the order of blocks in process flowcharts or diagrams representing one or more embodiments of the invention do not inherently indicate any particular order nor imply any limitations in the invention.
Other embodiments of the invention will be apparent to those skilled in the art from a consideration of this specification or practice of the invention disclosed herein. It is intended that the specification and examples be considered as exemplary only, with the true scope and spirit of the invention being indicated by the following claims.
This application is a continuation-in-part application of U.S. patent application Ser. No. 11/314,545, filed Dec. 20, 2005, and entitled “BOTTLE OF LOTION WITH A SENSOR,” which is hereby incorporated herein by reference, which claims priority to each of: (i) U.S. Provisional Patent Application No. 60/636,969, filed Dec. 20, 2004, entitled “PREVENTIVE MEDICAL SYSTEMS, METHODS AND APPARATUS,” and which is hereby incorporated herein by reference; (ii) U.S. Provisional Patent Application No. 60/652,213, filed Feb. 14, 2005, entitled “PREVENTIVE MEDICAL SYSTEMS, METHODS AND APPARATUS,” and which is hereby incorporated herein by reference; (iii) U.S. Provisional Patent Application No. 60/670,957, filed Apr. 13, 2005, entitled “BOTTLE OF LOTION WITH A LOTION SENSOR,” and which is hereby incorporated herein by reference; (iv) U.S. Provisional Patent Application No. 60/689,312, filed Jun. 10, 2005, entitled “PERSONAL AND PORTABLE BOTTLE,” and which is hereby incorporated herein by reference; and (v) U.S. Provisional Patent Application No. 60/732,925, filed Nov. 2, 2005, entitled “METHOD AND APPARATUS TO SENSE HYDRATION LEVEL OF A PERSON,” and which is hereby incorporated herein by reference. This application also claims priority to: (i) U.S. Provisional Patent Application No. 60/689,312, filed Jun. 10, 2005, entitled “PERSONAL AND PORTABLE BOTTLE,” and which is hereby incorporated herein by reference; (ii) U.S. Provisional Patent Application No. 60/732,925, filed Nov. 2, 2005, entitled “METHOD AND APPARATUS TO SENSE HYDRATION LEVEL OF A PERSON,” and which is hereby incorporated herein by reference; and (iii) U.S. Provisional Patent Application No. 60/785,825, filed Mar. 24, 2006, entitled “MEDICAL MONITORING SYSTEM,” and which is hereby incorporated herein by reference.
Number | Date | Country | |
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60636969 | Dec 2004 | US | |
60652213 | Feb 2005 | US | |
60670957 | Apr 2005 | US | |
60689312 | Jun 2005 | US | |
60732925 | Nov 2005 | US | |
60689312 | Jun 2005 | US | |
60732925 | Nov 2005 | US | |
60785825 | Mar 2006 | US |
Number | Date | Country | |
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Parent | 11314545 | Dec 2005 | US |
Child | 11451781 | Jun 2006 | US |