Gateway S-7235 Texas Instruments Card Reader Driver
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Gateway S-7235 Texas Instruments Card Reader Driver
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- Publisher's Description
Although embodiments make specific reference to monitoring impedance and electrocardiogram signals with an adherent patch, the system methods and device described herein may be applicable to many application in which physiological Gateway S-7235 Texas Instruments Card Reader is used, for example physiological monitoring with implantable devices. In many embodiments, the adherent patch comprises a tape, which comprises a material, preferably breathable, with an adhesive, such that trauma to the patient skin can be minimized while the patch is worn for the extended period.
In many embodiments, the printed circuit board comprises a flex printed circuit board that can flex with the patient to provide improved patient comfort.
Patient P comprises a midline M, a first side S1, for example a right side, and a second side S2, for example a left side. Monitoring system 10 comprises an adherent device Adherent device can be adhered to a patient P at many locations, for example thorax T of patient P.
In many embodiments, the Gateway S-7235 Texas Instruments Card Reader device may adhere to one side of the patient, from which side data can be collected. Work in relation with embodiments of the present invention suggests that location on a side of the patient can provide comfort for the patient while the device is adhered to the patient. Monitoring system 10 includes components to transmit data to a remote center Adherent device can communicate wirelessly to an intermediate devicefor example with a single wireless hop from the adherent device on the patient to the intermediate device.
Intermediate device can communicate with remote center in many ways, for example with an internet connection. In many embodiments, monitoring system 10 comprises Gateway S-7235 Texas Instruments Card Reader distributed processing system with at least one processor on deviceat least one processor on intermediate deviceand at least one process at remote centereach of which processors is in electronic communication with the other processors.
Health care provider A, for example a family member, can be in communication with patient P with a communication, for example with a two way communication system, as indicated by arrow A, for example by cell phone, email, landline. Physician B can be in communication with patient P with a communication, for example with a two way communication system, as indicated by arrow B, for example by cell phone, email, landline.
Emergency responder C can travel to the patient as indicated by arrow C. Thus, in many embodiments, monitoring system 10 Gateway S-7235 Texas Instruments Card Reader a closed loop system in which patient care can be monitored and implemented from the remote center in response to signals from the adherent device. In many embodiments, the adherent device may continuously monitor physiological parameters, communicate wirelessly with a remote center, and provide alerts when necessary.
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The system may comprise an adherent patch, which attaches to the patient's Gateway S-7235 Texas Instruments Card Reader and contains sensing electrodes, battery, memory, logic, and wireless communication capabilities. In some embodiments, the patch can communicates with the remote center, via the intermediate device in the patient's home. In the many embodiments, the remote center receives the data and applies the prediction algorithm. For example, with at Gateway S-7235 Texas Instruments Card Reader one of the following an adhesive tape, a constant-force spring, suspenders around shoulders, a screw-in microneedle electrode, a pre-shaped electronics module to shape fabric to a thorax, a pinch onto roll of skin, or transcutaneous anchoring.
In many embodiments, the system can perform the following functions: The adherent device may contain a subset of the following physiological sensors: The activity sensor may be one of the following: In many embodiments, the patch wirelessly communicates with a remote center.
In some embodiments, the communication may occur directly via a cellular or Wi-Fi networkor indirectly through intermediate device Intermediate device may consist of multiple devices which communicate wired or wirelessly to relay data to remote center Adherent patch comprises a first side, or a lower side A, that is oriented toward the skin of the patient when placed on the patient. In many embodiments, adherent patch comprises a tape T which is a material, preferably breathable, with an adhesive A.
Patient side A comprises Gateway S-7235 Texas Instruments Card Reader A to adhere the patch and adherent device to patient P.
Electrodes A, B, C and D are affixed to adherent patch In many embodiments, at least four electrodes are attached to the patch, for example six electrodes. In some embodiments the patch comprises two electrodes, for example two electrodes to measure the electrocardiogram ECG of the patient.
Gel A, gel B, gel C and gel D can each be positioned over electrodes A, B, C and D, respectively, to provide electrical conductivity between the electrodes and the skin of the patient. In many embodiments, the electrodes can be affixed to the patchfor example with known methods and structures such as rivets, adhesive, stitches, etc.