Abstract:
The present invention provides a method for storing an ultrasonic scan image and an ultrasonic device. The ultrasonic device may include: an image acquiring unit configured to scan a target object to obtain an image; a buffer unit configured to store the obtained image; a processing unit configured to compute a similarity of a frame of the image; and a storage unit, wherein when it is determined that the computed similarity of the frame is less than a threshold, the processing unit stores frames with a similarity equal to or greater than the threshold previous to the frame in the storage unit. Therefore, the image may be stored automatically based upon the similarity information of the frame of the ultrasonic scanning image.
Abstract:
An ultrasound system comprises a probe for acquiring ultrasound data associated with a patient and a microphone detecting audio. The system further comprises a processor module and a memory. The processor module is configured to receive the ultrasound data from the probe and processes the ultrasound data to form an image file. The processor module is further configured to receive the audio from the microphone and forms a voice recording file based on the received audio. The memory stores the image file and the voice recording file, and the processor module automatically associates the image file and the voice recording file with each other.
Abstract:
An ultrasound system includes an ultrasound probe having a transducer array for acquiring ultrasound data and a first beamformer for partially beamforming the information received from the transducer array, and a portable host system in communication with the ultrasound probe, the portable host system including a second beamformer to perform additional beamforming on the partially beamformed data received from the ultrasound probe.
Abstract:
Embodiments of the present invention provide a method, apparatus and system for enhancing needle visualization in ultrasound imaging. The method comprises setting a scanning depth corresponding to a depth of a part or tissue target in a patient's body; and automatically determining a needle frame steering angle and an ultrasound working frequency for needle frame collection based on the scanning depth.
Abstract:
A method for needle visualization for an ultrasound imaging device, the method comprising alternately acquiring a tissue frame followed by a needle frame at a temporal spacing to form a frame sequence, spatially compounding the frame sequence, and outputting an image frame resulting from spatial compounding.
Abstract:
A method of enhancing needle visualization in ultrasound imaging is provided. The method includes reducing overall gain in needle frames, and applying a nonlinear mapping to the needle frames, wherein the nonlinear mapping is configured to make strong signals stronger and make weak signals weaker after mapping.
Abstract:
Systems and methods for toggling between a high frame rate setting and a high resolution setting while acquiring image data are provided. A method can include: receiving an indication that a high frame rate setting or a high resolution setting should be used to acquire image data, retrieving scan parameters that are associated with the indicated setting from real-time accessible and rewriteable memory, and using the scan parameters to acquire image data using an image acquisition device. An indication to toggle between settings can be triggered manually by an operator of the image acquisition device or automatically based on acquired image data. When successive sets of image data indicate image data is changing at least a minimum amount, a high frame rate setting can be automatically selected. When successive image frames indicate image data is not changing at least a minimum amount, a high resolution setting can be automatically selected.
Abstract:
A method and system are disclosed for a compact, inexpensive ultrasound system using an off-the-shelf personal digital assistant (PDA) device interfacing to a hand-held probe assembly through a standard digital interface. The hand-held probe assembly comprises a detachable transducer head attached to a beamforming module that performs digital beamforming. The PDA runs Windows applications and displays menus and images to a user. The PDA also runs ultrasound data processing software to support a plurality of imaging modes. An internal battery is provided in the PDA to power the system. The transducer head is detachable from the beamforming module.
Abstract:
A method of displaying cardiac function which forms by helical or segmental analysis a three-dimensional cage model which can be shaded and color coded to indicate local and regional dysfunction by thickening or motion and stresses. On this model is superimposed the coronary artery tree including stenosed segments as obtained from the same patient by angiograms and the resulting three-dimensional coronary and mechanical model can be subjected to animation and analysis for diagnostic purposes and to simulate effects of treatment.
Abstract:
A medical device customization system and method comprising medical device that receives signals from a biological probe having an operational parameter and that stores data based on the signals in a memory. The medical device receives a custom application and establishes a virtual machine to run the custom application.