摘要:
Systems and methods for predicting a physiological condition and customizing displayed physiological data. A pulse oximeter and second physiological sensor are connected to a control unit that controls a patient monitor display. A medical professional uses the patient monitor display to upload a list of symptoms and data from the pulse oximeter and the second physiological sensor to a cloud-based prediction engine to determine a likely physiological condition and determine key physiological indicators associated with the physiological condition that was not uploaded. A plurality of analysis and customization tools are also provided for analyzing, correlating, tagging, labeling, and annotating the displayed data.
摘要:
A medical sensor (100), comprising: a mark (110), capable of indicating identity information of the medical sensor (100) and capable of being identified by a specific electronic device; a communication part (120), used for receiving initialization parameters matching the identity information from the electronic device; and a setting part (130), connected to the communication part (120) and used for completing initialization setting of the medical sensor (100) according to the initialization parameters. The medical sensor (100) is provided with the mark for indicating the identity information of the medical sensor (100), so that an operating device (200) can obtain the identity information through the mark, and then read usage information such as initialization parameters of the medical sensor (100) on the basis of the identity information to automatically complete the initialization setting of the medical sensor (100); a user can conveniently use the medical sensor (100), learning burden and operation complexity can be reduced, and working efficiency is improved.
摘要:
A continuous glucose monitoring system and a monitoring terminal are provided, wherein the monitoring system comprises a monitoring terminal and a mobile terminal; wherein the monitoring terminal includes a portable host and probe assembly which is assembled to the host; the mobile terminal includes a second data communication unit and a user interface; the probe assembly includes two glucolase micro electrode needles, a micro processor, and two electrode terminals; the host includes a signal sampling unit, a signal processing unit, a data storage unit, and a first data communication unit. B using the portable host equipped with the probe assembly to carry out the sampling of the blood glucose data, and sending the detection data continuously to the mobile terminal to continuously monitor the blood glucose, the collection and analysis of the blood glucose data is facilitated, thereby providing a reliable basis for the diabetes treatment.
摘要:
Techniques are disclosed for localized adaptation of client devices based on correlation or learning at a remote server. For example, a method for modifying a behavior of a client device in a data collection system, wherein the client device collects data and transmits data to a server, includes the following steps. The client device transmits data to the server. The server uses at least a portion of the data received from the client device to generate information that represents a modification to a behavior of the client device. The server device transmits the generated information to the client device. The client device subsequently alters the behavior of the client device based on the information received from the server.
摘要:
The present invention relates to methods for tuning treatment parameters in movement disorder therapy systems. The present invention further relates to a system for screening patients to determine viability as candidates for certain therapy modalities, such as deep brain stimulation (DBS). The present invention still further provides methods of quantifying movement disorders for the treatment of patients who exhibit symptoms of such movement disorders including, but not limited to, Parkinson's disease and Parkinsonism, Dystonia, Chorea, and Huntington's disease, Ataxia, Tremor and Essential Tremor, Tourette syndrome, stroke, and the like. The present invention yet further relates to methods of tuning a therapy device using objective quantified movement disorder symptom data acquired by a movement disorder diagnostic device to determine the therapy setting or parameters to be provided to the subject via his or her therapy device. The present invention also provides treatment and tuning remotely, allowing for home monitoring of subjects.
摘要:
The present invention relates to methods for tuning treatment parameters in movement disorder therapy systems. The present invention further relates to a system for screening patients to determine viability as candidates for certain therapy modalities, such as deep brain stimulation (DBS). The present invention still further provides methods of quantifying movement disorders for the treatment of patients who exhibit symptoms of such movement disorders including, but not limited to, Parkinson's disease and Parkinsonism, Dystonia, Chorea, and Huntington's disease, Ataxia, Tremor and Essential Tremor, Tourette syndrome, stroke, and the like. The present invention yet further relates to methods of tuning a therapy device using objective quantified movement disorder symptom data acquired by a movement disorder diagnostic device to determine the therapy setting or parameters to be provided to the subject via his or her therapy device. The present invention also provides treatment and tuning remotely, allowing for home monitoring of subjects.