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1.WO/2022/108667DETECTION AND MITIGATION OF INACCURATE SENSING BY AN IMPLANTED SENSOR OF A MEDICAL SYSTEM
WO 27.05.2022
Int.Class A61B 5/00
AHUMAN NECESSITIES
61MEDICAL OR VETERINARY SCIENCE; HYGIENE
BDIAGNOSIS; SURGERY; IDENTIFICATION
5Measuring for diagnostic purposes; Identification of persons
Appl.No PCT/US2021/052786 Applicant MEDTRONIC, INC. Inventor ANDERSON, David A.
This disclosure is directed to techniques for detecting and mitigating inaccurate sensing in a medical system. In some examples, one or more sensors of the medical system may include at least one electrode configured to sense an impedance of a portion of a patient's body proximate to the electrode and processing circuitry of the medical system may detect an inaccuracy in the data corresponding to the one or more patient physiological parameters based upon data including at least the sensed impedance of the portion of the patient body; correct at least a portion of the inaccuracy in the data corresponding to the one or more patient physiological parameters; and generate, for display on a display device, output data indicating the inaccuracy in the data corresponding to the one or more patient physiological parameters.
2.WO/2022/108084TEMPERATURE SENSOR, WEARABLE DEVICE COMPRISING TEMPERATURE SENSOR, CORE TEMPERATURE MEASUREMENT METHOD USING TEMPERATURE SENSOR
WO 27.05.2022
Int.Class A61B 5/01
AHUMAN NECESSITIES
61MEDICAL OR VETERINARY SCIENCE; HYGIENE
BDIAGNOSIS; SURGERY; IDENTIFICATION
5Measuring for diagnostic purposes; Identification of persons
01Measuring temperature of body parts
Appl.No PCT/KR2021/012978 Applicant OSONG MEDICAL INNOVATION FOUNDATION Inventor LEE, Seung Rag
Disclosed are a temperature sensor, a wearable device comprising the temperature sensor, a core temperature measurement method using the temperature sensor, the temperature sensor comprising: a sensing unit; and a substrate unit. The sensing unit comprises: a base part; a measurement part which is mounted on the base part and is brought into contact with the body of a subject to sense a temperature; and a cover part which covers the measurement part. The sensing unit is mounted to the substrate unit. On the substrate unit, a plurality of slits are formed around a first area where the sensing unit is mounted.
3.WO/2022/106583SENSOR DEVICE FOR ASCERTAINING INFLAMMATION-RELEVANT VITAL PARAMETERS
WO 27.05.2022
Int.Class G01K 13/20
GPHYSICS
01MEASURING; TESTING
KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
13Adaptations of thermometers for specific purposes
20Clinical contact thermometers for use with humans or animals
Appl.No PCT/EP2021/082226 Applicant GEFFE, Markus Inventor GEFFE, Markus
The invention relates to a sensor device for ascertaining inflammation-relevant vital parameters.
4.WO/2022/104199ACTIVITY CLASSIFICATION AND DISPLAY
WO 19.05.2022
Int.Class A61B 5/0205
AHUMAN NECESSITIES
61MEDICAL OR VETERINARY SCIENCE; HYGIENE
BDIAGNOSIS; SURGERY; IDENTIFICATION
5Measuring for diagnostic purposes; Identification of persons
02Measuring pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography; Heart catheters for measuring blood pressure
0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
Appl.No PCT/US2021/059366 Applicant OURA HEALTH OY Inventor SERGEEV, Dmitry
Methods, systems, and devices for activity classification are described. A system may receive physiological data associated with a user via a wearable device, where the physiological data includes at least motion data. The system may identify an activity segment during which the user is engaged in a physical activity based on the motion data, where the activity segment is associated with activity segment data including at least the physiological data collected during the activity segment. The system may generate activity classification data associated with the activity segment based on the activity segment data, the activity classification data including a set of classified activity types and corresponding confidence values. The system may then cause a graphical user interface (GUI) of a user device to display the activity segment data and at least one classified activity type of the set of classified activity types.
5.WO/2022/103119PORTABLE MEDICAL DIAGNOSIS DEVICE AND DISEASE DIAGNOSIS METHOD USING SAME
WO 19.05.2022
Int.Class G16H 50/20
GPHYSICS
16INFORMATION AND COMMUNICATION TECHNOLOGY SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
50ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics
20for computer-aided diagnosis, e.g. based on medical expert systems
Appl.No PCT/KR2021/016242 Applicant METAMEDICINE INC. Inventor CHO, Yang Hyun
The present invention relates to a portable medical diagnosis device and a disease diagnosis method using same, and allows various diseases to be accurately diagnosed at home or outside, so that even ordinary people with no medical expertise can continuously monitor their own body conditions and accurately manage their health at any time and at any place. The present invention enables accurate diagnosis of an affected part by acquiring a shadowless image from which shadow has been removed, can be naturally grasped and used by having an ergonomic design, and enables accurate diagnosis and health management for various diseases by acquiring and merging various biosignals and analyzing and diagnosing same. In addition, the present invention allows respective components to operate in an IoT-based sensor network, and thus merging and management of various biosignals and information, information processing (data processing), and the like can be smoothly performed.
6.WO/2022/102864WEARABLE ELECTRONIC DEVICE
WO 19.05.2022
Int.Class G06F 1/16
GPHYSICS
06COMPUTING; CALCULATING OR COUNTING
FELECTRIC DIGITAL DATA PROCESSING
1Details not covered by groups G06F3/-G06F13/82
16Constructional details or arrangements
Appl.No PCT/KR2020/019105 Applicant SAMSUNG ELECTRONICS CO., LTD. Inventor KIM, Taeseon
According to various embodiments disclosed in the present document, an electronic device may comprise: a guide housing having a frame shape; at least one coupling member extending from the guide housing and configured to allow the guide housing to be worn on the body of a user; and a main housing arranged to be movable up and down in the guide housing, wherein the main housing is configured to be movable up and down with respect to the guide housing in a direction toward or away from the body of a user in a state where the electronic device is worn on the body of the user. Various other embodiments are also possible.
7.20220151528SYSTEMS AND METHODS FOR MEASURING STRESS LEVELS
US 19.05.2022
Int.Class A61B 5/16
AHUMAN NECESSITIES
61MEDICAL OR VETERINARY SCIENCE; HYGIENE
BDIAGNOSIS; SURGERY; IDENTIFICATION
5Measuring for diagnostic purposes; Identification of persons
16Devices for psychotechnics; Testing reaction times
Appl.No 17587353 Applicant Georgia Tech Research Corporation Inventor Woon-Hong Yeo

An exemplary embodiment of the present disclosure provides a method of determining stress levels in a user comprising: receiving galvanic skin response (GSR) measurements by a wearable sensor on the user over a period of time; receiving temperature measurements by the wearable sensor on the user over the period of time; determining changes in the temperature over a predetermined threshold in the temperature measurements over the period of time; calibrating the GSR measurements based on the determined changes in temperature over the predetermined threshold; calculating a stress level of the user based on the calibrated GSR measurements; and generating an output indicative of the calculated stress level.

8.20220151541Computerised and Automated System for Detecting an Allergic Reaction and Managing Allergy Treatment
US 19.05.2022
Int.Class A61B 5/00
AHUMAN NECESSITIES
61MEDICAL OR VETERINARY SCIENCE; HYGIENE
BDIAGNOSIS; SURGERY; IDENTIFICATION
5Measuring for diagnostic purposes; Identification of persons
Appl.No 17098548 Applicant Dosepack LLC Inventor Miteshkumar Ishwarbhai Patel

A computer implemented and automated method for detecting and measuring an allergic reaction is described. The method utilizes a server computer, an infrared module, a camera, and electronic devices connected through a network to measure allergic reactions as well as manage a patient's end-to-end allergic treatment.

The infrared (IR) module includes a temperature sensor to detect and read radiation and provide a temperature reading emitted from the wheal formed on patient's body in response to an allergen.

The camera captures an image of the wheal and provides its dimensions.

IR module and camera correlate data to verify accuracy and provide criticality of the reaction.

The method also provides other modules such as vaccination module, scoring module, allergen recommendation module, and a skin test result management module. All modules are provided on an electronic device and allow user input and changes to manage allergy treatment.

9.20220151582SYSTEM AND METHOD FOR ASSESSING PULMONARY HEALTH
US 19.05.2022
Int.Class A61B 7/00
AHUMAN NECESSITIES
61MEDICAL OR VETERINARY SCIENCE; HYGIENE
BDIAGNOSIS; SURGERY; IDENTIFICATION
7Instruments for auscultation
Appl.No 17499837 Applicant Acorai AB Inventor Filip Ludwig Peters

Disclosed are systems and methods for assessing pulmonary health. An example system includes a handheld electronic device (HED); a casing; and at least one circuit board. The HED includes a display screen, a processor, and a software application. The casing includes a plurality of ECG electrodes that are placed on the outer surface of the casing and at least one diaphragm. The ECG electrodes capture the electrophysiological data of the user. The circuit board is configured within the casing and electrically connected with the ECG electrodes and a microcontroller. The circuit board is further connected to at least one sound transducer and at least one Inertial Measurement Unit (IMU) sensor. The sound transducer captures pulmonary signals indicative of pulmonary health. The IMU sensor captures seismic and gyroscope signals indicative of the pulmonary health of the user and the orientation of the casing. The diaphragm enhances the pulmonary audio signals captured by the sound transducer. The microcontroller transmits the pulmonary health data to at least one of the HED and a computing device.

10.WO/2022/102717INFORMATION PROCESSING DEVICE, SUPPORT SYSTEM, TERMINAL DEVICE, INFORMATION PROCESSING METHOD, AND PROGRAM
WO 19.05.2022
Int.Class A63B 69/00
AHUMAN NECESSITIES
63SPORTS; GAMES; AMUSEMENTS
BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
69Training appliances or apparatus for special sports
Appl.No PCT/JP2021/041577 Applicant PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD. Inventor YABUUCHI, Rise
The problem addressed by the present disclosure is to enable training information suited to a user to be provided. An information processing device (10) is provided with an attribute information acquisition unit (1311), an environment information acquisition unit (1315), a determination unit (132), and an output unit (137). The attribute information acquisition unit (1311) acquires attribute information pertaining to a user's attributes. The environment information acquisition unit (1315) acquires environment information pertaining to the user's training environment. The determination unit (132) determines, on the basis of at least the attribute information and the environment information, training information pertaining to training that the user should undertake. The output unit (137) outputs the training information determined by the determination unit (132).