Ultrasonic diagnosis device and program
A basic image generation unit generates a base frame by synthesizing a reception frame sequence obtained by transmission/reception of ultrasonic waves, and an edge-enhanced image generation unit generates a compensation frame where an edge component of an object is emphasized based on the reception frame sequence. A synthesis unit generates an output frame by synthesizing the base frame and the compensation frame.
1. An ultrasonic diagnosis device comprising:
a base frame generation unit configured to generate a base frame by synthesizing a frame sequence obtained by transmission/reception of ultrasonic waves;
a compensation frame generation unit configured to generate a compensation frame where an edge component is emphasized based on the frame sequence; and
a synthesis unit configured to generate an output frame by synthesizing the base frame and the compensation frame;
wherein the synthesis unit synthesizes the base frame and the compensation frame by changing a weight in an area unit or a pixel unit in the base frame and the compensation frame;
wherein each frame included in the frame sequence is a frame where deflection angles of ultrasonic waves are different from each other; and
wherein the synthesis unit sets a weight for an area where a number of frames overlapping each other is small to be smaller than a weight for an area where a number of frames overlapping each other is large in the compensation frame.
2. The ultrasonic diagnosis device according to claim 1 , wherein
the compensation frame generation unit generates a component image set which includes a plurality of component-specific images by applying wavelet transform to the frame sequence, and generates the compensation frame by synthesizing and inversely converting the plurality of component-specific images.
3. The ultrasonic diagnosis device according to claim 2 , wherein
the compensation frame generation unit may apply a maximum value method in the synthesis of the plurality of component-specific images.
4. The ultrasonic diagnosis device according to claim 1 , wherein
the synthesis unit synthesizes the base frame and the compensation frame by changing a weight for each type of an ultrasonic probe in the base frame and the compensation frame.
5. The ultrasonic diagnosis device according to claim 1 , wherein
each frame included in the frame sequence is a frame where the deflection angles of the ultrasonic waves are equal to each other and obtained at time different from each other.
6. The ultrasonic diagnosis device according to claim 5 , wherein
the base frame generation unit generates the base frame based on a part of the frame sequence, and
the compensation frame generation unit generates the compensation frame based on a larger number of frames than a number of frames used when generating the base frame sequence.
7. A non-transitory computer-readable medium storing a program, which causes a computer to function as:
a base frame generation unit configured to generate a base frame by synthesizing a frame sequence obtained by transmission/reception of ultrasonic waves;
a compensation frame generation unit configured to generate a compensation frame where an edge component is emphasized based on the frame sequence; and
a synthesis unit configured to generate an output frame by synthesizing the base frame and the compensation frame;
wherein the synthesis unit synthesizes the base frame and the compensation frame by changing a weight in an area unit or a pixel unit in the base frame and the compensation frame;
wherein each frame included in the frame sequence is a frame where deflection angles of ultrasonic waves are different from each other, and
wherein the synthesis unit sets a weight for an area where a number of frames overlapping each other is small to be smaller than a weight for an area where a number of frames overlapping each other is large in the compensation frame.