Three-dimensional imaging system

4694434
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Inventors

von Ramm, Olaf T.
Smith, Stephen W.

Application #

619899

Filed

Jun-12-1984

Published

Sep-15-1987

Current US Class

073/626
345/419
367/110
367/113
367/7

International Classes

G01N 029/04; A61B 010/00

Field of Search

367/7 367/71 367/72 367/113 367/110 364/522 73/602 73/603 73/606 73/626 128/660 340/701 340/720 343/5

Examiners

Moskowitz; Nelson

Attorney, Agent or Firm

Lalos & Keegan

US Patent References

4030343   Apparatus for provi...
4145680   Acoustic imaging s...
4156304   Biomedical ultraso...
4381675   Ultrasound visualiz...
4412544   Ultrasonic method...
4489729   Ultrasound imagin...
4499771   Ultrasound visualiz...
4541435   Ultrasonic imaging...
4550607   Phased array acou...
4596145   Acoustic orthoscopi...

Referenced by:

View Backward References

Other References

Nagata, "How to Reinforce Perception . . . Pictures", 10/3/83, pp. 239-246, 3rd Intern. Disc. Research Conf., vol. 25, #3 Abst. Supplied. Magee, et al, "Determining Vanishing Points . . . , 12/29/83, pp. 212-216, vol. 1, Proc. Int. Conf. a Lysts., Man . . . " India. Canteloup et al, "Ultrasonic Visualization . . . Defects", pp. 50, 52, 53., Qualite Rev. Prat. Controle, Ind., vol. 19, #104.

Citation

Cite This Patent

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Abstract
An acoustic pulse echo imaging system capable of producing an image of a three-dimensional object utilizing a two-dimensional display having perspective capabilities is described. In the system angular relationships of targets at all ranges are maintained for display. The system uses a two-dimensional transducer array of piezoelectric elements; the array is steered to assume transmit and receive orientations in both azimuth and elevation by producing (1) a directed transmit pulse and many similarly directed receive orientations or (2) a non-directed transmit pulse and many directed receive orientations. For each transmit pulse a parallel processing system produces several unique image points whose locations in the image correspond to the tangents of the angles of the receive orientations in the azimuth and elevation planes. The brightness of each image point is the weighted integral of the echo data received along each receive path. As an option, range discrimination capability is provided by means of a range dependent gain control, brightness shading as a function of range or a color display in which data originating from different ranges is displayed in different hues.
 
Claims
We claim:

1. A radiated energy pulse-echo imaging system with transducers for transmitting pulse for producing an image of a three-dimensional object in a display having at least two dimensions maintaining perspective, in which, at all ranges, the angular relationships of all targets on the object relative to the origin of the transducers are reproduced in the display, comprising:

an array of transducers for transmitting pulses toward the three-dimensional object and receiving corresponding echo data,

means for steering said array in elevation and azimuthal directions to assume predetermined transmit and receive orientations relative to an initial array position, said array assuming a predetermined angular transmit orientation for each transmitted pulse and a plurality of predetermined angular receive orientations for each transmitted pulse, said array receive orientations being defined by angles formed in the elevation and azimuthal directions between said array in said initial position and said array in said receive orientations, processing means for receiving the echo data for each transmitted pulse from said array of transducers and for producing therefrom output signals indicating a plurality of image points having predetermined locations in the image to be displayed corresponding to the relative locations of those image points on the three-dimensional object,



Description
BACKGROUND OF THE INVENTION

The invention described herein relates to radiant energy imaging systems, and in particular pulse echo imaging systems having a three-dimensional display capability.

Acoustic imaging techniques are well-known and extensively described in the prior art to provide visual inspection or analysis of all three phase states of materials, i.e., solids, liquids and gases. Examples of application of acoustic imaging techniques include industrial non-destructive evaluation of metals and liquids, medical ultrasound imaging, underwater imaging and echo ranging in the atmosphere. In the development of such techniques several classes of acoustic imaging systems have been devised. These various classes of systems obtain images in one-, two- or three-dimensions. The various types of imaging devices include direct imaging systems such as acoustic cameras or pulse-echo devices and indirect reconstructed imaging devices including acoustic holographic devices, synthetic aperture devices and computed tomographic systems.
 
  The invention relates to a transmitting system for the generation of ultrasonic waves for testing materials, comprising a controllable signal generator...  A three-dimensional imaging system for obtaining a three-dimensional image of an object being scanned ultrasonically comprises a source arrangement for...