This application claims priority from Taiwan Patent Application No. 103133376, filed on Sep. 25, 2014, in the Taiwan Intellectual Property Office, the content of which are hereby incorporated by reference in their entirety for all purposes.
1. Field of the Invention
This application relates to a physiological nursing device, and a system and a method thereof, and more particularly, to a wearable device having active feedback characteristics for physiological nursing, a system and a method thereof.
2. Description of the Related Art
As the trend in the burgeoning technology of network and the miniaturized electronic components, the technique of the Internet of Things (IoT) along with the wearable technology can be applied to human body easier so as to monitor the vital signs in real-time. In addition, as the technology of cloud and network has been popularized, the wearable devices oriented to physiological nursing become more and more popular in human life.
The conventional wearable devices, however, sense one's vital signs through the collected physiological sensing signals, and once the wearer is under certain special conditions such as the unusual raise of blood glucose, sleep apnea, sudden infant death syndrome (SIDS), and so on, the wearer is unable to ask for help as the unconsciousness. Although the conventional wearable devices are able to actively send e-mails, messages or a call for aid, it is well-known that one may likely be in coma in the abnormal physiological conditions such as in dyspnea about 3-5 minutes. If the period of dyspnea lasts out, the life may be gone. Moreover, if the unusual raise of blood glucose occurs to the wearer, syndrome such as retinopathy, arteriosclerosis, nephropathy, and so on may become inevitable.
In conclusion, the lack of instant physiological nursing is indeed one of the drawbacks of the prior technology. No matter how accurate the sensed result is, the regret is unavoidable if an immediate physiological nursing cannot be provided adequately to the human body.
One objective of the present invention is to provide an active and instant physiological nursing.
The other objective of the present invention is to greatly reduce the damage to human's physiological condition when one wears a wearable device having active feedback characteristics for physiological nursing in accordance with the present invention.
For the sake of accomplishing the preceding objectives, the present invention is to provide a wearable device having active feedback characteristics for physiological nursing which may include a physiological signal sensing device being wearable to a wearer, and a control device connected with the physiological signal sensing device; the wearable device having active feedback characteristics for physiological nursing further comprising a feedback device being wearable to the wearer, and the feedback device connected with the control device; when the control device determines a physiological sensing signal produced by the physiological signal sensing device that is not within a safe range, the control device configured to command the feedback device applying a preset functional response to the wearer, wherein the preset functional response may enable the physiological sensing signal of the wearer returning to a stable state so as to be maintained within the safe range.
According to an embodiment in accordance with the present invention, the feedback device may include at least one of a sound player, a vibrator, a current releaser, and a medicine releaser, wherein a preset functional response the sound player may be to play a preset sound, a preset functional response of the vibrator may be to produce a vibration, a preset functional response of the current releaser may be to produce an effect of electric shock, and a preset functional response of the medicine releaser may be to apply a medicine to the wearer.
According to an embodiment in accordance with the present invention, the current releaser may include an anode patch and a cathode patch adhered to the wearer, and the current releaser may release a low frequency current through the anode patch and the cathode patch.
According to an embodiment in accordance with the present invention, a wireless communication module connected with the control device may be further included. Wherein the wireless communication module may be configured to connect with a first electronic communication device outside the wearable device having active feedback characteristics for physiological nursing, such that the physiological signal may be transmitted to the first electronic communication device. Wherein, the wireless communication module may be a near field communication module or a far field communication module.
In order to achieve to the aforementioned objective, the present invention further provides a physiological nursing system applying the above-mentioned wearable device having active feedback characteristics for physiological nursing which may include the wearable device having active feedback characteristics for physiological nursing being wearable to the wearer configured to sense the physiological sensing signal of the wearer and actively commanding the feedback device to produce the preset functional responses to the wearer when the physiological sensing signal is not within the safe range, and the first electronic communication device connected with the wearable device to receive the physiological sensing signal and transmit the physiological sensing signal to a second electronic communication device located in a remote end.
According to an embodiment in accordance with the present invention, the first electronic communication device may be configured with a global positioning system and a mobile communication module, and when the physiological sensing signal is not within the safe range, the first electronic communication device may transmit the physiological sensing signal and position data produced by the global positioning system to the second electronic communication device through the mobile communication module.
In order to achieve to the aforementioned objective as well as the other objectives, the present invention further provides a method having active feedback characteristics for physiological nursing which may include sensing a physiological condition of a wearer to produce a physiological sensing signal, determining whether the physiological sensing signal is not within a safe range, and actively applying a preset functional response relative to the physiological condition of the wearer through a feedback device when the physiological sensing signal is not within the safe range, wherein the preset functional response may enable the physiological sensing signal of the wearer returning to a stable state.
According to an embodiment in accordance with the present invention, the position data may be produced through a global positioning system, and the physiological sensing signal may be simultaneously transmitted to a remote end as an alert when the physiological sensing signal is not within the safe range, wherein the remote end may be at least one of an electric communication device of a preset contactor and a nearby medical institute provided by the position data.
According to an embodiment in accordance with the present invention, in addition to actively applying a preset functional response relative to the physiological condition of the wearer when the physiological sensing signal is not within the safe range, the method may further include regularly transmitting the physiological sensing signal to the remote end, wherein the remote end may be a monitoring host stored with preset physiological data, and the monitoring host may determine whether the preset functional responses are applied to the wearer corresponding to the preset physiological data and the physiological sensing signal when the physiological sensing signal is within the safe range; and if the result is positive, the preset functional response relative to the wearer may be forced to be actively applied through the feedback device.
As a result, if one who wears a wearable device having active feedback characteristics for physiological nursing of the present invention is having physiological problems, the preset functional responses of the arrangement in accordance with the present invention enable the adequate treatment to be actively and immediately provided without waiting passively. For example, if one is in dyspnea and the blood oxygen saturation is much lower than the standard value, closing to be in a shock, the wearable device disclosed in the present invention is able to produce an effect of electric shock by the preset functional response of the current releaser, such that the wearer may recover from the unconsciousness. As to one having abnormality of blood glucose, the wearable device disclosed in the present invention is able to apply the insulin to the wearer by the preset functional response of the medicine releaser, wherein the intake can be injection or the other methods which can be absorbed by human body. The wearable device disclosed in the present invention provides convenient and instant treatment when the wearer is having physiological problems, and the physiological condition of the wearer can therefore be controlled in a relative stable state; and additionally, a wearable device having active feedback characteristics in accordance with the present invention can further provide a pretreatment in no time such that the wearer can wait the follow-up aid, or decide to do other treatments independently.
Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings so that those skilled in the art to which the present invention pertains can realize the present invention, wherein:
Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings so that those skilled in the art to which the present invention pertains can realize the present invention. As those skilled in the art would realize, the described embodiments may be modified in various different ways, all without departing from the spirit or scope of the present invention.
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The feedback device 130 is connected with the control device 110. The control device 110 is configured to determine whether a physiological sensing signal produced by the physiological signal sensing device 120 is within a safe range. When the control device 110 determines the physiological sensing signal produced by the physiological signal sensing device that is not within a safe range, the control device 110 is configured to actively command the feedback device 130 applying a preset functional response to the wearer. Wherein, the preset functional response enables the physiological sensing signal of the wearer returning to a stable state so as to be maintained within the safe range.
What one skilled in the art can understand is that the control device 110, the physiological signal sensing device 120 and the feedback device 130 may be integrated as a single device in the appearance, or the control device 110 and the physiological signal sensing device 120 may be integrated as a single device (shown in
The feedback device 130 and the physiological signal sensing device 120 disclosed in the present invention may be able to cooperate with each other, that is to say, when the physiological signal sensing device 120 senses that the physiological condition of the wearer is in danger, the feedback device 130 is configured to apply adequate treatment to the wearer to enable the physiological sensing signal of the wearer returning to a stable state so as to be maintained within the safe range. For example, when the physiological signal sensing device 120 is configured to sense the wearer's blood oxygen saturation (e.g. using infrared to irradiate the wearer's skin, and extracting the reflected light to analyze, or the other sensing devices feasible to obtain the blood oxygen saturation), the setting of the control device 110 relative to the safe range means the normal numeral of blood oxygen saturation. If the numeral of the physiological sensing signal sensed by the physiological signal sensing device 120 is not within the safe range (the numeral is usually set to higher than a threshold value), the control device 110 actively commands the feedback device 130 to release current (e.g. current releaser configured to release a low frequency current through an anode patch and a cathode patch adhered to the wearer) to awaken the wearer's consciousness through the current. As the reduction of blood oxygen saturation is usually caused by dyspnea or insufficient respiratory capacity, the wearer may fall into a shock within 3-5 minutes and the brain organization may hence be damaged if an immediate treatment cannot be done. As a result, the present invention is to apply a physiological nursing system cooperating with the feedback device 130 having active feedback characteristics to provide an adequate treatment instantly according to different physiological conditions so as to seize the precious time for treatment.
The feedback device 130 mentioned in the present invention may include at least one of a sound player, a vibrator, a current releaser, and a medicine releaser. Wherein a preset functional response the sound player is to play a preset sound, a preset functional response of the vibrator is to produce a vibration, a preset functional response of the current releaser is to produce an effect of electric shock caused by an anode patch and a cathode patch, and a preset functional response of the medicine releaser is to apply a medicine to the wearer. Wherein, the medicine releaser may sense the physiological signal relative to the wearer's blood glucose, and when the amount of blood glucose is abnormal, an adequate treatment can be done immediately. For example, the control device 100 may command a medicinal patch to release an adequate amount of insulin which can be absorbed by the wearer's skin so as provide the instant aid. Besides the aforementioned method, injection or the other methods which can be absorbed by human body may be applied to the feedback device 130 as well.
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In step S100, a physiological condition of a wearer is sensed to produce a physiological sensing signal.
In step S200, whether the physiological sensing signal is determined within a safe range. If the result is “positive”, step S300 is entered, and if the result is “negative”, the procedure backs to step S100.
In step S300, a preset functional response relative to the wearer is actively applied to the wearer through the feedback device when the sensed physiological sensing signal is not within the safe range. After the application is made (an adequate amount is usually added in advance), the procedure backs to step S100.
Wherein, the preset functional response enables the physiological sensing signal of the wearer returning to a stable state. If an initial application is insufficient, the wearable device keeps performing the physiological nursing, namely, a second application is made. The number of the nursing may be set in advance to enable the control device 110 executing the nursing procedures according to the practical situation or different physiological conditions.
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While the means of specific embodiments in present invention has been described by reference drawings, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention set forth in the claims. The modifications and variations should in a range limited by the specification of the present invention.
Number | Date | Country | Kind |
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103133376 | Sep 2014 | TW | national |