Abstract:
An ultrasound system includes a display, an actuator, a user interface, and a processing circuit. The actuator is configured to control at least one of a position or an orientation of the display. The user interface is configured to receive a user input. The processing circuit is configured to cause the actuator to adjust the at least one of the position or orientation of the display based on the user input.
Abstract:
An ultrasound system includes a display, an actuator, a user interface, and a processing circuit. The actuator is configured to control at least one of a position or an orientation of the display. The user interface is configured to receive a user input. The processing circuit is configured to cause the actuator to adjust the at least one of the position or orientation of the display based on the user input.
Abstract:
An ultrasound processing system includes an ultrasound interface and processing electronics. The ultrasound interface receives imaging information. The processing electronics are coupled to the ultrasound interface and are configured to perform processing across a plurality of ultrasound channels by combining channel data for adaptively reducing the common mode noise prior to beamforming for a transmit event. The combination of the channel data may be computing an arithmetic mean, which is then multiplied to a weighting coefficient. This value may then be removed from the individual channel data. The modified channel data is then transmitted to a beamformer, which processes the channel data for directional signal transmission and reception.
Abstract:
A computing system includes a memory configured to store instructions, and one or more processors configured to execute the instructions to receive data relating to an image or a user, determine a feature from the data, identify a user preference from a user profile, obtain a model, and segment the image based on the feature, the user preference, and the model. The model is generated by determining a historical feature from historical data as an input, determining a desired output, obtaining a preliminary model based on the input and the desired output, determining an actual output of the preliminary model, determining error criteria between the actual output and the desired output, and generating the model by updating the preliminary model based on the error criteria.
Abstract:
A portable computing device includes a user interface system including at least a first display and a second display, a memory storing a series of images, a user input device configured to receive an input from a user corresponding to changing a power state of the portable computing device, and a processing circuit coupled to the user interface system, the memory, and the user input device. The processing circuit is configured to receive the input from the user corresponding to changing the power state, determine based on the received input if the input satisfies a trigger condition, and in response to determining that the trigger condition is satisfied, display the series of images on the first display and the second display such that at least one image is displayed on the first display and the second display during a display sequence.
Abstract:
An ultrasound system is disclosed. The ultrasound system includes an ultrasound device. The ultrasound device includes a housing, a control panel coupled to the housing, and a receiver assembly coupled to the housing, wherein the receiver assembly includes a first contact surface. The ultrasound system further includes a transducer assembly having an ultrasound probe and a cartridge, wherein the cartridge includes a second contact surface. The cartridge is configured to be removably received in a slot of the receiver assembly such that the cartridge is movable between a removed position, in which the transducer assembly is not connected to the ultrasound device, and an engaged position, in which the cartridge is positioned in the slot and the first contact surface is electrically coupled to the second contact surface.
Abstract:
Systems and methods provided herein relate to an image processing system. The image processing system may include a beamformer module structured to receive channel data from each of at least three firings; and, a synthesis module communicably coupled to the beamformer module, the synthesis module may be structured to: combine channel data corresponding to two inverted firings to isolate a harmonic component; combine channel data from one of the two inverted firings with channel data from a third firing to isolate a fundamental component; and, combine the fundamental component with the harmonic component incoherently.