A61B8/4472

Medical imaging table, table support assembly, probe support assembly, system, and method of use

A system including: a table assembly for supporting a subject in one or more examination positions; a table support assembly for supporting the table assembly, wherein the table support assembly includes: one or more moving mechanisms controlled to move the table assembly relative to a reference point along one or more axes, and to rotate the table assembly around the one or more axes; and a probe support assembly comprising: a grip for holding a probe; and an arrangement of a plurality of arms and joints controlled to movably support the probe that is held by the grip, wherein the probe support assembly is removably arranged at a predetermined position and orientation relative to the table support assembly to permit movement of the table support assembly and the probe support assembly for reproduction of a position and orientation of the probe relative to the subject supported by the table assembly.

Devices, systems, and method for non-invasive tissue characterization

Disclosed herein is a non-invasive system for determining tissue composition. The system comprises an imaging system with a non-invasive probe, a signal analyzer, and a correlation processor. The probe includes active imaging components for emitting energy and collecting imaging data including reflected signals from an object of interest. The signal analyzer analyzes the imaging data and determines one or more signal properties from the reflected signals. The correlation processor then associates the one or more signal properties to pre-determined tissue signal properties of different tissue components through a pattern recognition technique wherein the pre-determined tissue signal properties are embodied in a database, and identifies a tissue component of the object based on the pattern recognition technique.

Wirelessly programmable transducer-based remote control with inertial sensor

Systems and methods are disclosed for remotely controlling a main processing console of an ultrasound system. In various embodiments, an ultrasound remote controller can be used to remotely control a main processing console of an ultrasound system. The ultrasound remote controller can include a user interface controller configured to provide one or more ultrasound control functions to a user remote from the main processing console. The control functions can be used to remotely control operation of the main console. Further, the user interface controller can be configured to receive input for the one or more ultrasound control functions from the user. The ultrasound remote controller can include a communication interface configured to transmit operational instructions to the main processing console for remotely controlling the operation of the main processing console through the ultrasound remote controller based on the user input for the one or more ultrasound control functions.

Apparatus and method for providing improved health care
11633102 · 2023-04-25 · ·

A system for acquiring physiological data from a patient, the system comprising: a smartphone configured for wireless communication; an adapter for releasably mounting to the smartphone; a sensor module for releasably mounting to the adapter, the sensor module comprising at least one sensor for acquiring physiological data from the patient; and a software app running on the smartphone for (i) wirelessly controlling operation of the sensor module and wirelessly receiving the physiological data from the sensor module, and (ii) wirelessly communicating with a remote location.

Apparatus for AI-based automatic ultrasound diagnosis of liver steatosis and remote medical diagnosis method using the same
11633169 · 2023-04-25 · ·

Disclosed herein are an apparatus for AI-based automatic ultrasound diagnosis of liver steatosis and a remote medical diagnosis method using the same applied in the field of ultrasound image processing. The apparatus for AI-based automatic ultrasound diagnosis of liver steatosis can automatically determine a grade of liver steatosis, which is difficult to determine visually, through extraction from an image acquired by imaging medical examination using a deep learning trained artificial neural network.

System and method for converting handheld diagnostic ultrasound systems into ultrasound training systems

A system and method for converting a commercial diagnostic ultrasound transducer into a medical training device that is used for simulated ultrasound training; or a system and method for adding a training option to a standard ultrasound diagnostic system by attaching a motion sensor accessory to the commercial diagnostic ultrasound transducer.

ULTRASOUND DIAGNOSTIC APPARATUS AND METHOD FOR OPERATING SAME
20230121329 · 2023-04-20 · ·

Disclosed is an ultrasound diagnostic apparatus comprising: a display; a memory for storing one or more instructions; and a processor for executing the one or more instructions stored in the memory. The processor acquires a plurality of pieces of elastic data about an object, generates a plurality of elastic images on the basis of the plurality of pieces of elastic data, acquires quality information about each of the plurality of elastic images on the basis of the pieces of elastic data respectively corresponding to the plurality of elastic images, determines at least one recommended elastic image, for which to acquire an elasticity value, from among the plurality of elastic images on the basis of the quality information, and controls the display to display the at least one recommended elastic image that is determined.

ULTRASONIC DIAGNOSTIC APPARATUS, INFORMATION-PROCESSING METHOD, AND STORAGE MEDIUM

An ultrasonic diagnostic apparatus of an embodiment includes a processing circuitry. The a processing circuitry acquires contact information detected by a plurality of contact sensors provided at different positions on an ultrasonic probe inserted into a body cavity of a subject and causes an output interface to output information representing a state of the ultrasonic probe in the body cavity on the basis of the contact information and the positions of the contact sensors provided on the ultrasonic probe.

Wireless ultrasound probe and ultrasound imaging apparatus connected with wireless ultrasound probe

Provided are a wireless ultrasound probe and an ultrasound imaging apparatus connected with the wireless ultrasound probe. The wireless ultrasound probe includes: a battery; and a charging terminal connector that is coupled to a power supply terminal of the ultrasound imaging apparatus and receives power from the power supply terminal to charge the battery, wherein the charging terminal connector has a unique shape configured to be physically coupled to the power supply terminal.

Wireless ultrasound monitoring device

Some implementations of the disclosure are directed to an ultrasound measurement device including: multiple ultrasound sensors to capture tomographical information of a physiological structure, each ultrasound sensor comprising a transducer having a respective resonant frequency, where each transducer has a frequency response that partially overlaps with a frequency response of another transducer; and a processing device to control and process measurements made by the ultrasound sensors. The device may be incorporated in an adhesive substrate configured to be adhered to a patient's skin in alignment with an artery of the patient. The processing device may use the multiple ultrasound sensors to compute the mean arterial pressure through the artery by performing operations of: measuring a circumference of the artery using the multiple ultrasound sensors; measuring a blood flow velocity using the same ultrasound sensors; and computing the mean arterial pressure using the measured arterial circumference and blood flow velocity.