Abstract:
A system for remotely monitoring a patient. The system performs a base module for remotely monitoring the patient and generates a clinical condition vector using data collected by the base module. The system receives one or more clinical modules from a module store. The one or more clinical modules are received based on the clinical condition vector. The system performs the one or more clinical modules to remotely monitor the patient.
Abstract:
A system for monitoring fluid delivery to a patient. The system communicates an alert to a caregiver when a condition that triggers an alarm is confirmed to exist based on video data. The system calculates flow rates of fluids delivered from one or more containers based on monitoring fiducial markings. The system issues an alert when an abnormality is detected based on monitoring a line tracing between an infusion pump and the patient.
Abstract:
A method of determining a blood pressure of a patient includes determining a plurality of pressure pulses, wherein each pressure pulse of the plurality of pressure pulses comprises a profile having a maximum profile height. The method also includes determining a pulse score associated with the plurality of pressure pulses, wherein the pulse score is determined based on the profiles of the pressure pulses and the maximum profile heights. The method further includes determining that the pulse score is above a pulse score threshold, and generating, in response to determining that the pulse score is above the pulse score threshold, a pulse curve based on the maximum profile heights. The method also includes determining the blood pressure of the patient without completely occluding a blood vessel of the patient, wherein the blood pressure is determined based on a plurality of values corresponding to respective points on the pulse curve.
Abstract:
A method for detecting cuff slippage in a blood pressure monitoring device includes starting a cuff inflation on the blood pressure monitoring device. A plurality of pressure samples is obtained when the cuff is inflating. A level of background noise is determined during the cuff inflation. The level of background noise is determined from the plurality of pressure samples. When the background noise is determined, a determination is made from the plurality of blood pressure readings whether a pressure pattern indicating cuff slippage is obtained.
Abstract:
This disclosure is directed toward systems and methods for monitoring patients in a clinical setting by using non-contact multimodal imaging. For example, based on receiving imaging data, a computing device may identify an object and a region of focus formed by the object. The computing device may then cause a sensor to capture first sensor data at a first time and second sensor data at a second time, wherein the sensor data is associated with the region of focus. Based on determining that a difference between the first sensor data and the second sensor data is greater than or equal to a threshold difference, the computing device may generate and send, to an additional computing device, an alert indicative of the second sensor data.
Abstract:
Disclosed herein is a system for monitoring a patient that includes a cuff configured to inflate to at least partially occlude an artery of the patient and a cuff controller configured to inflate the cuff during a dynamic phase and generally maintain inflation of the cuff at about a target pressure during a static phase. The system also includes a sensor configured to receive a signal associated with the at least partially occluded artery and generate an output signal based on the received signal, and a cuff control module configured to determine the target pressure during the dynamic phase and based on the output signal, and control the cuff controller during the dynamic phase and the static phase.
Abstract:
A method for detecting cuff slippage in a blood pressure monitoring device includes starting a cuff inflation on the blood pressure monitoring device. A plurality of pressure samples is obtained when the cuff is inflating. A level of background noise is determined during the cuff inflation. The level of background noise is determined from the plurality of pressure samples. When the background noise is determined, a determination is made from the plurality of blood pressure readings whether a pressure pattern indicating cuff slippage is obtained.
Abstract:
A system for providing a clinical analysis of a subject is described. The system receives video data and audio data of the subject. The system extracts metadata from the video data and the audio data. The metadata includes an event, one or more parameters measured during the event, and a time stamp of when the event occurs in the video data and the audio data. The system generates an electronic medical record that includes a video display area for providing playback of the video data and the audio data, and a data stream area that displays one or more medically relevant events in the video data and the audio data. Selection of a medically relevant event causes the video display area to skip to a portion of the video data and the audio data where the medically relevant event occurs based on the time stamp in the metadata.
Abstract:
Systems and methods for modifying power consumption of a wearable device are provided. The systems and methods include an imaging device, a directional antenna, and a power transmission device in combination with a wearable device. The imaging device, antenna, and power transmission device are positioned and re-positioned so that the wearable device is in the center of the field of view of at least one of the imaging device, antenna, and power transmission device. The systems allow for a decrease in the gain of the wearable device, decreasing power usage. The system may also allow for remote charging of the wearable device.
Abstract:
A method for identifying a skin abnormality including using an imaging device, the imaging device including a lighting member for directing light toward a target surface, the lighting member including a plurality of lighting elements, and a filter member positioned between the lighting member and the target surface, the filter member including a plurality of filter elements, capturing a plurality of images of the target surface, each of the plurality of images captured when illuminating a different one or more of the plurality of lighting elements, compiling the plurality of images into a data package, transmitting the data package to a server for processing the data package, and determining, at the server, a presence of an abnormality.