Claims
- 1. An ultrasonic diagnostic imaging system for imaging three dimensional regions of a subject comprising:an ultrasonic scanhead including a two dimensional array of transducer elements which acts to transmit ultrasonic waves and receive echo signals from a volumetric region of a subject; a multiline beamformer coupled to receive echo signals from the elements of the two dimensional array to produce beamformed echo signals located along a plurality of scanlines produced in response to one transmit beam; a scanline interpolator coupled to the beamformer and responsive to the multiline scanlines which acts to produce interpolated scanlines from the beamformed echo signals along additional scanlines which increase the scanline density of the image data of the volumetric region; and a display coupled to the scanline interpolator which displays a three dimensional ultrasonic display.
- 2. The ultrasonic diagnostic imaging system of claim 1, wherein the scanline interpolator comprises an r.f. interpolator which performs interpolation of r.f. echo signals.
- 3. The ultrasonic diagnostic imaging system of claim 1, wherein the scanline interpolator acts to perform two-point interpolation using the signals of two spatially distinct beams received from the volumetric region.
- 4. The ultrasonic diagnostic imaging system of claim 3, wherein the scanline interpolator performs echo signal interpolation utilizing weighting factors which are a factor of two (2−1).
- 5. The ultrasonic diagnostic imaging system of claim 4, wherein the weighting factors are in the proportions of {fraction (1/2:1/2)}.
- 6. The ultrasonic diagnostic imaging system of claim 4, wherein the weighting factors are in the proportions of {fraction (1/4:3/4)}.
- 7. The ultrasonic diagnostic imaging system of claim 6, wherein the scanline interpolator acts to perform two levels of interpolation; and wherein the weighting factors used in the second level of interpolation are in the proportions of {fraction (1/4:3/4)}.
- 8. The ultrasonic diagnostic imaging system of claim 1, further comprising a filter, coupled to the scanline interpolator, which acts to filter interpolated scanline data.
- 9. The ultrasonic diagnostic imaging system of claim 1, wherein the scanline interpolator comprises a linear interpolation filter.
- 10. The ultrasonic diagnostic imaging system of claim 1, wherein the scanline interpolator utilizes an interpolation kernel that has a non-linear shape.
- 11. The ultrasonic diagnostic imaging system of claim 1, wherein the multiline beamformer produces multiple beams from the same transmit event;wherein the scanline interpolator acts to produce interpolated scanlines from multiline echo signals.
- 12. The ultrasonic diagnostic imaging system of claim 1, wherein the multiline beamformer is partitioned between the scanhead and an ultrasound system processor.
- 13. A method for ultrasonically imaging a volumetric region of a subject comprising:transmitting ultrasonic energy into the volumetric region; receiving echo signals in response to the transmitted ultrasonic energy by the elements of a two dimensional array transducer; beamforming the received echo signals to produce a plurality of spatially distinct beams of the volumetric region in response to one transmit beam; interpolating the spatially distinct beams to increase the scanline density of the image data of the volumetric region; and displaying a three dimensional ultrasonic image of the volumetric region which utilizes interpolated scanline data.
- 14. The method of claim 13, wherein interpolating further comprises performing two-point interpolation of two spatially distinct beams.
- 15. The method of claim 13, wherein interpolating further comprises weighting the echo signals of spatially distinct beams by weighting factors which are a factor of two (2−).
- 16. The method of claim 13, further comprising filtering interpolated scanline data.
- 17. The method of claim 13, wherein interpolating further comprises performing r.f. interpolation of echo signal information.
- 18. The method of claim 13, wherein interpolating further comprises performing linear interpolation.
- 19. The method of claim 13, wherein interpolating further comprises utilizing an interpolation kernel that has a non-linear shape.
- 20. The method of claim 13, wherein the array transducer is located in a scanhead and wherein beamforming comprises forming partially beamformed signals in the scanhead and performing further beamforming of the partially beamformed signals in an ultrasound processor coupled to the scanhead,wherein interpolating is performed in the ultrasound processor.
Parent Case Info
This is a division of application Ser. No. 09/645,872, filed Aug. 24, 2000.
US Referenced Citations (11)