Claims
- 1. Apparatus for producing multiple image slice data responsive to incident radiation, comprising:
a detector array, comprising at least a first detector element and a second detector element disposed in a lateral direction, which detector elements generate signals responsive to radiation incident thereon, wherein each detector element is characterized a width in the lateral direction, wherein each detector element is characterized by an effective detector width, defined by the portion of the width of the detector element that is exposed to the radiation, and wherein the second detector element is shifted in the lateral direction relative to the first detector element, so as to overlap and mask a portion of the first detector, thereby altering the first detector's effective width.
- 2. Apparatus in accordance with claim 1, and comprising an adjustable slit or aperture, which masks a portion of the second detector, thereby altering the second detector's effective width.
- 3. Apparatus in accordance with claim 1, wherein the effective widths of the first and second detectors are substantially equal.
- 4. Apparatus in accordance with claim 1, wherein the detector array is planar in shape.
- 5. Apparatus in accordance with claim 1, wherein the detector array is arcuate in shape.
- 6. Apparatus for producing image slice data responsive to incident radiation, comprising:
a detector array, comprising one or more rows of detector elements, which generate signals responsive to radiation incident thereon; and at least one mechanical tilting device, which controllably tilts at least one of the one or more rows about a tilt axis thereof, which tilt axis is substantially parallel to the long dimension of the at least one row, wherein the one or more rows are characterized by a width, measured in a direction perpendicular to the tilt axis thereof, and wherein an effective width of the at least one row, defined by a geometrical projection of the width thereof onto a plane that is substantially perpendicular to a direction of propagation of the radiation incident on the row, is varied by controlling the at least one mechanical tilting device.
- 7. Apparatus in accordance with claim 6, wherein the one or more rows comprises a plurality of rows, and wherein the mechanical tilting device tilts all of the plurality of rows in the array.
- 8. Apparatus in accordance with claim 7, wherein the at least one mechanical tilting device tilts all the rows of the array by a common angle.
- 9. Apparatus in accordance with claim 7, wherein the at least one mechanical tilting device tilts the entire array about a common tilt axis.
- 10. Apparatus in accordance with claim 7, wherein the at least one mechanical tilting device comprises a plurality of such devices, which tilt about different, respective axes.
- 11. Apparatus in accordance with claim 10, wherein each row of the array is tilted about its own respective axis.
- 12. Apparatus in accordance with claim 10, and comprising a motion control mechanism, which controls a distance between adjoining rows of the array when they are tilted, so that geometrical projections of the rows onto the plane that is substantially perpendicular to the direction of propagation of the radiation incident on the array are substantially contiguous.
- 13. Apparatus in accordance with claim 1, and including one or more logarithmic amplifiers, to which signals generated by the detector elements are applied.
- 14. Apparatus in accordance with claim 13, wherein the one or more logarithmic amplifiers comprise a plurality of logarithmic amplifiers, each of which is coupled to a respective one of the detector elements.
- 15. Apparatus in accordance with claim 13, wherein the one or more logarithmic amplifiers receive output data from the signal processing circuitry.
- 16. Apparatus in accordance with claim 1, and including a data acquisition system, which receives the plurality of channels of output data.
- 17. Apparatus in accordance with claim 16, and including a reconstructor, which receives data from the data acquisition system and reconstructs a multiple-slice image therefrom.
- 18. Apparatus in accordance with claim 17, wherein the multiple-slice image comprises image slices, characterized by a variable slice thickness, and wherein the slice thickness is determined by the effective widths of the channels of output data.
- 19. Apparatus in accordance with claim 17, and including a display, which displays the multiple-slice image.
- 20. Apparatus in accordance with claim 19, and including a processor, which prints the multiple-slice image.
- 21. A CT scanner, for producing images of multiple sectional slices through an object, comprising:
a radiation source, which irradiates the object from a first side thereof; and apparatus for producing image slice data in accordance with claim 1, wherein the detector array is positioned on a second side of the object, opposite to the first side.
Priority Claims (1)
Number |
Date |
Country |
Kind |
119033 |
Aug 1996 |
IL |
|
RELATED APPLICATIONS
[0001] The present application is a divisional of U.S. application Ser. No. 09/242,079, which was filed in the U.S. Patent and Trademark Office on Feb. 4, 1999 as a national application of PCT/IL97/00267, filed Aug. 6, 1997.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09242079 |
Feb 1999 |
US |
Child |
09854647 |
May 2001 |
US |