Claims
- 1. A portable ultrasound system for scanning a region of interest with ultrasound energy to image a fluid moving within the region of interest comprising:
a hand held probe having a transducer array mounted therein; a front-end interface unit having a beamforming device and a transceiver chip, the front-end interface unit being connected to the handheld probe and to a data processing system; a Doppler processing system disposed in the data processing system, having at least one parallel computing element, and a memory coupled to the at least one parallel computing element, the memory having stored therein a sequence of instructions to execute color Doppler processing.
- 2. The portable ultrasound system of claim 1, wherein the at least one parallel computing element comprises a multiplier and an adder.
- 3. The portable ultrasound system of claim 1, wherein the at least one parallel computing element executes at least one of Single Instruction Multiple Data instructions and Multiple Instruction Multiple Data instructions.
- 4. The portable ultrasound system of claim 1, wherein Doppler processing is executed in a computation device having a MMX™ processor.
- 5. The portable ultrasound system of claim 1, wherein the Doppler processing further comprises directional power Doppler, power Doppler and pulsed wave Doppler and provides corresponding images.
- 6. The portable ultrasound system of claim 1, further comprising adjustable controls for one of at least scan area selection, velocity display, steering angles, color inversion, color gain, color priority, color persistence, color baseline and frame rate.
- 7. In an ultrasound system for Doppler processing, a method for imaging a region of interest comprising of:
providing a handheld probe and an associated processing system for capturing images of an area of interest; providing a data processing system coupled to the associated processing system having a microprocessor with at least one parallel processing element and a memory coupled to the microprocessor having stored therein a sequence of instructions to execute Doppler processing including one of color Doppler, directional power Doppler, power Doppler and pulsed wave Doppler; and performing a Doppler processing operation to form an image of the region of interest.
- 8. A computer readable medium having stored therein instructions for causing a processing unit to execute the steps of the method of claim 7.
- 9. The method for imaging a region of interest of claim 7, wherein the sequence of instructions comprises of:
mapping a stream of serial data to a vector representation; determining an auto-correlation function of the data; and determining a phase shift of the auto-correlation function to generate a monotonic function for all values of the phase shift corresponding to a range of Doppler velocities.
- 10. The method of imaging a region of interest of claim 9, wherein the sequence of instructions further comprises:
demodulating the data to obtain in-phase and quadrature sample data; filtering the data to remove low frequency signals; averaging a plurality of frames of data; converting phase shift data to an index; converting the phase shift data from scan to raster coordinates; and displaying a plurality of images.
- 11. The method for imaging a region of interest of claim 7, wherein at least one parallel processing element comprises a multiplier and an adder.
- 12. The method for imaging a region of interest of claim 7, wherein at least one parallel processing element executes at least one of Single Instruction Multiple Data instructions and Multiple Instruction Multiple Data instructions.
- 13. The method for imaging a region of interest of claim 7, wherein the Doppler processing further comprises displaying at least one of the presence, direction, and relative velocity of blood flow, perfusion and contour of lumens.
- 14. The method of imaging a region of interest of claim 7, further comprising providing adjustable controls for at least one of scan area selection, velocity display, steering angles, color inversion, color gain, color priority, color persistence, color baseline and frame rate.
- 15. An ultrasound imaging apparatus comprising:
at least one processing module; and memory operable coupled to the at least one processing module, wherein the memory stores operational instructions that cause the at least one processing module to:
map serial data to vector representation; calculate an auto-correlation function of the data; calculate a phase shift of the auto-correlation function to generate a monotonic function for all values of the phase shift corresponding to a range of Doppler velocities; convert the phase shift to an index; and display a plurality of images including at least one of color Doppler, directional power Doppler, power Doppler and pulsed wave Doppler.
- 16. The apparatus of claim 15, wherein the apparatus further comprises a handheld probe operable to transmit an ultrasound image and to obtain data indicative of the flow characteristics of the region of interest.
- 17. The apparatus of claim 15, wherein the plurality of images includes color Doppler images, directional power Doppler images, power Doppler images and pulsed wave Doppler images.
- 18. The apparatus of claim 15, further comprising adjustable controls for one of at least scan area selection, velocity display, steering angles, color inversion, color gain, color priority, color persistence, color baseline and frame rate.
CROSS REFERENCES TO RELATED APPLICATIONS
[0001] The present application is a continuation-in-part of co-pending U.S. patent application Ser. No. 09/966,810, filed Sep. 28, 2001.
[0002] The entire contents of the above application is incorporated herein by reference in its entirety.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09966810 |
Sep 2001 |
US |
Child |
10259251 |
Sep 2002 |
US |