G01S7/52073

Ultrasound apparatus and ultrasound medical imaging method for identifying view plane of ultrasound image based on classifiers

An ultrasound medical imaging method includes: displaying an ultrasound image on a screen; determining a view plane, on which the displayed ultrasound image is captured, among view planes; and setting a region of interest corresponding to the determined view plane on the ultrasound image.

ULTRASOUND IMAGING APPARATUS, CONTROL METHOD THEREOF, AND COMPUTER PROGRAM
20210282750 · 2021-09-16 · ·

Provided are an ultrasound imaging apparatus and a control method thereof, the ultrasound imaging apparatus including: an input/output interface; a storage; and at least one processor configured to: display, via the input/output interface, at least one resulting value calculated based on a plurality of medical images; when one of the at least one resulting value is selected by an input via the input/output interface, retrieve, from the storage, a plurality of measurement values and a plurality of medical images used to calculate the selected resulting value; and output, via the input/output interface, the retrieved plurality of measurement values and the retrieved plurality of medical images on a single display.

Method and system for simultaneously presenting doppler signals of a multi-gated doppler signal corresponding with different anatomical structures

A system and method for simultaneously presenting Doppler signals of a Multi-Gated Doppler (MGD) signal corresponding to different anatomical structures is provided. The method includes receiving an MGD signal having a plurality of Doppler signals. The method includes analyzing the MGD signal to select multiple gates, each of the gates corresponding with a Doppler signal, and each of the selected gates associated with a different anatomical structure. The method includes selecting a set of parameters for each of the selected gates and applying each selected set of parameters for each of the selected gates. The selected set of parameters for each of the selected gates may be one or both of image acquisition parameters or display processing parameters. The method includes simultaneously presenting the Doppler signal for each of the selected gates at a display system after the each selected set of parameters is applied.

METHODS AND APPARATUSES FOR MODIFYING THE LOCATION OF AN ULTRASOUND IMAGING PLANE

Aspects of the technology described herein related to modifying the location of an ultrasound imaging plane. Some embodiments include modifying the location of the ultrasound imaging plane based on a user selection. For example, some embodiments include receiving the user selection through a graphical user interface (GUI) that includes an ultrasound imaging plane indicator, where the ultrasound imaging plane indicator indicates the location of the ultrasound imaging plane. As another example, some embodiments include receiving the user selection by detecting tilts, taps, or voice commands. Some embodiments include automatically modifying the location of the ultrasound imaging plane. Some embodiments include modifying the location of the ultrasound imaging plane during biplane imaging.

ANATOMICALLY INTELLIGENT ECHOCHARDIOGRAPHY FOR POINT-OF-CARE

An apparatus includes an imaging probe and is configured for dynamically arranging presentation of visual feedback for guiding manual adjustment, via the probe, of a location, and orientation, associated with the probe. The arranging is selectively based on comparisons between fields of view of the probe and respective results of segmenting image data acquired via the probe. In an embodiment, the apparatus includes a sensor which guides a decision that acoustic coupling quality is insufficient, the apparatus issuing a user alert upon the decision.

MEDICAL DIAGNOSTIC APPARATUS AND MEDICAL ANALYSIS METHOD
20210145400 · 2021-05-20 · ·

According to one embodiment, a medical diagnostic apparatus includes processing circuitry and display circuitry. The processing circuitry estimates a position of a structure in a subject based on data obtained by scanning with respect to the subject and analyzes tissue characterization in the subject. The display circuitry displays an analysis result of the tissue characterization obtained by the processing circuitry with respect to a plurality of positions in the subject except for the estimated structure position.

ULTRASOUND SYSTEM FOR ENHANCED INSTRUMENT VISUALIZATION
20210145403 · 2021-05-20 ·

An ultrasound imaging system includes a processor programmed to generate an anatomy image and a number of needle frames at different transmit beam angles. The system analyzes the data in the needle frames and selects segments therein that are identified as likely representing an interventional instrument. Data from one or more needle frames are blended with the data for the anatomy image of the tissue to create a composite image of the tissue and the interventional instrument.

Ultrasound system with wide depth and detailed viewing

The invention relates to an ultrasound system for imaging a volumetric region comprising a region of interest comprising: a probe having an array of CMUT transducers adapted to steer ultrasound beams in a variable frequency range over the volumetric region; a beamformer coupled to the array and adapted to control the ultrasound beam steering and provide ultrasound image data of the volumetric region; a transducer frequency controller coupled to the beamformer and adapted to vary operation frequencies of the CMUT transducers within the frequency range, which frequency controller is arranged to set the operation frequency to a first frequency for the ultrasound beam steered in the volumetric region; an image processor responsive to the ultrasound image data, based on which it is adapted to produce an ultrasound image. The system further comprises a region of interest (ROI) identifier enabling to identify the region of interest on the basis of the ultrasound image data, wherein the identifier is adapted to generate identification data indicating the region of interest within the volumetric region; wherein the transducer frequency controller is further adapted to set, based on the identification data, the operation frequency to a second frequency for the ultrasound beams steered within the region of interest, the second frequency being higher than the first frequency.

Ultrasound system for providing ultrasound images at variable frequencies of a volumetric region comprising an interferer analyzer

An ultrasound system (100) for providing an ultrasound image of a volumetric region comprising a region of interest (12) comprising: a probe (10) having an array of CMUT transducers (14); a beamformer (64) coupled to the array and adapted to control the ultrasound beam steering and provide an ultrasound image data of the volumetric region; a transducer frequency controller (62) coupled to the beamformer and adapted to vary operation frequencies of the CMUT transducers within the frequency range, which frequency controller is arranged to set the operation frequency to a first frequency for the ultrasound beam steered in the volumetric region and to set the operation frequency to a second frequency for the ultrasound beams steered within the region of interest, the second frequency being higher than the first frequency; wherein the system further comprises an interferer analyzer (69) coupled to the transducer frequency controller (62), said interferer analyzer is adapted to vary at least one of beam steering parameters when the second frequency is above a threshold frequency value so as to mitigate a quality reduction of the ultrasound image due to the use of frequencies above the threshold.

Photoacoustic image generation apparatus
11006837 · 2021-05-18 · ·

An insertion needle has a light guide member for guiding light emitted from a light source, a light emitting portion for emitting light guided by the light guide member, and a photoacoustic wave generating portion for generating photoacoustic waves caused by light emitted from the light emitting portion. A photoacoustic image generation unit generates a photoacoustic image based on the detection signal of the photoacoustic waves. A distal end candidate extraction unit extracts a distal end candidate region from the shallow side of the image based on the strength of the detection signal of the photoacoustic waves. An image output unit displays the extracted distal end candidate region on an image display unit.