1. Field of the Invention
This invention relates to a biometric sensor system that utilizes biosensors that are inserted into the skin of a patient. In particular the invention relates to a biometric sensor device can sense a wearer's health status and communicate the status to a central monitoring station.
2. The Prior Art
It is known to attach a sensor to a patient to monitor the patient's health and communicate the data collected by the monitor to a central station. U.S. Pat. No. 8,823,512 to Spector describes a patient monitoring system where the biometric sensor communicates with a receiver which transmits the information along with an alarm code to a central monitoring center. The receiver is often the user's cell phone, which communicates with a sensor worn by the user. While this is a convenient way to monitor the health of a person, it would be useful if the sensor was attached to the patient so that it cannot be removed. In addition, it would be useful if the device was programmable via external communications so that the device can change the physiological characteristics that are being measured by directing different sensors to be activated.
The invention provides a system for monitoring the health of an individual by providing biometric sensors attached to or inside the skin of a patient, along with a transmitter connected to the sensors for transmitting data from the sensors to a central monitoring station via a receiver located near the sensors.
The sensor system is connected to an RFID tag, which communicates with an RFID reader in a remote location. The RFID tag is a transmitter comprised of a microchip connected to an antenna, that is interrogated by the reader or transmits directly to the reader when in range of the tag. The RFID tag has an independent power source to transmit data from the sensors to the RFID reader. The RFID tag transmits data from the sensors to the reader through the antenna, and the data is then analyzed and communicated to a central monitoring station. Alternatively, other types of transmitters and receivers could be used with the sensor system according to the invention.
The RFID reader is typically disposed in a portable monitoring unit such as a smartphone that has a microprocessor and data storage capability. The microprocessor receives data from the sensors and compares the data to stored reference data. If the received data exceeds a predetermined threshold of the reference data, the microprocessor then communicates an alarm status to the central monitoring station, via a transmitter using cellular data, Wifi or any other suitable means. The smartphone itself can also issue a visual or audible alarm. One or more central monitoring stations can be programmed to receive signals from the transmitter, and the microprocessor is programmed to cause the transmitter in the smartphone continuously transmit the emergency alert signal until it is picked up by one of the monitoring stations. The monitoring stations can be a server of a health care system, a mobile phone of a relative or friend, or any suitable computer having the capability of receiving a remote signal. The monitoring stations each have a receiver, a processor and a display.
Along with the alert, the mobile monitoring unit sends the sensor data to the monitoring stations, so that healthcare professionals can see the patient's status at the stations. The sensor data is not sent until an alert level has been reached, so that the monitoring stations are not bombarded with excess data from various sources during non-alert periods. The alert and sensor data are displayed on a display connected to the receiver and processor of the monitoring station. The alert could also be communicated audibly. The processor at the monitoring station is configured to encrypt data received from the transmitter and store the data in a database connected to the processor for future use. The alert is sent continuously from the smartphone to the monitoring station until the alert is acknowledges by the monitoring station.
Once the alert is sent, the monitoring station activates the camera on the mobile telephone to allow visualization of the patient and communication between the patient and the monitoring station. Software in the monitoring station is programmed to transmit audible commands and questions to the patient based on the alert received.
The microprocessor connected to the RFID reader can be programmed to receive data from all sensors simultaneously, or can turn on or off different sensors at different times. The sensors can be any type of sensor, including blood glucose, heart rate, blood pressure, eeg, GPS or any other type of sensor.
The sensor system can be in the form of a tattoo-like device that is applied to the user's skin within the epidermis, so that the sensors can sense the desired biological functions. The tattoo can be configured of graphene or any other suitable material. The sensor module is not implanted underneath the skin, but within the layers of the epidermis. Some of the sensors can penetrate below the epidermis if necessary to obtain the required data.
The microprocessor can also be programmed to trigger an alert if the RFID reader goes out of range of the RFID tag, or if the sensor component of the system is removed from the patient.
Other objects and features of the present invention will become apparent from the following detailed description considered in connection with the accompanying drawings. It is to be understood, however, that the drawings are designed as an illustration only and not as a definition of the limits of the invention.
In the drawings, wherein similar reference characters denote similar elements throughout the several views:
Referring now in detail to the drawings and, in particular,
Once central monitoring station 30 notes an alarm status, a signal is sent from central monitoring station 30 to portable monitoring unit 20, to turn on camera 28 in portable monitoring unit 20. Camera 28 then transmits images of the patient back to central monitoring station 30 via transmitter 21. Software at central monitoring station 30 analyzes the sensor data and sends audible questions and instructions to portable monitoring unit 20, which are broadcast to the patient through a speaker.
Accordingly, while only a few embodiments of the present invention have been shown and described, it is obvious that many changes and modifications may be made thereunto without departing from the spirit and scope of the invention.
This is a continuation-in-part of U.S. patent application Ser. No. 14/826,364, filed on Aug. 14, 2015, which claims priority under 35 U.S.C. §119(e) of U.S. Provisional Patent Application Ser. No. 62/087,036 filed Dec. 3, 2014, the disclosure of which is incorporated by reference.
| Number | Date | Country | |
|---|---|---|---|
| 62087036 | Dec 2014 | US |
| Number | Date | Country | |
|---|---|---|---|
| Parent | 14826364 | Aug 2015 | US |
| Child | 15455451 | US |