Claims
- 1. An X-ray CT apparatus comprising:
an X-ray source configured to generate X-rays towards a subject; a rotation mechanism configured to rotate the X-ray source around a rotational axis; an X-ray detector having a plurality of detection elements arranged in a first direction roughly parallel to the rotational axis and in a second direction which is different from the first direction and configured to detect X-rays emitted from the X-ray source; a blocking member located between the X-ray source and the X-ray detector and configured to block X-rays; a reconstruction unit configured to reconstruct an image of the subject in accordance with the data detected by the X-ray detector; and the blocking member comprising an aperture including a first section and a second section, the second section located in the first direction in relation to the first section and staggered in relation to the first section in the second direction.
- 2. An X-ray CT apparatus according to claim 1, wherein the first section is adjacent to the second section in the first direction.
- 3. An X-ray CT apparatus according to claim 2, wherein the first section of the aperture is unified with the second section of the aperture.
- 4. An X-ray CT apparatus according to claim 1, wherein a plurality of apertures is located at prescribed intervals in the second direction.
- 5. An X-ray CT apparatus according to claim 4, wherein the rotational axis is arranged such that a line projecting the rotational axis from the X-ray source on to the X-ray detector is staggered in the second direction in relation to an alignment-centered axis of the X-ray detector.
- 6. An X-ray CT apparatus according to claim 5, wherein
the line projecting the rotational axis is staggered by roughly ¼ the width of the detection element in the second direction, the first section of the aperture is staggered by roughly ¼ the width of the detection element in the second direction in relation to the second section of the aperture, the center of the second section of the aperture is staggered by roughly ⅜ the width of the detection element in the second direction in relation to the alignment-centered axis, and the widths of the first section and the second section are roughly ½ detection element, respectively, in the second direction.
- 7. An X-ray CT apparatus according to claim 5, wherein
the line projecting the rotational axis is staggered by roughly ⅛ the width of the detection element in the second direction, the first section of the aperture is staggered by roughly ½ the width of the detection element in the second direction in relation to the second section of the aperture, the center of the second section of the aperture is staggered by roughly ¼ the width of the detection element in the second direction in relation to the alignment-centered axis, and the widths of the first section and the second section are roughly ½ detection element, respectively, in the second direction.
- 8. An X-ray CT apparatus according to claim 5, wherein the blocking member can be attached to and detached from the X-ray detector.
- 9. An X-ray CT apparatus according to claim 5, further comprising:
a movement mechanism configured to move the blocking member inwards between the X-ray detection elements and the X-ray source, or outwards from between the X-ray detection elements and the X-ray source.
- 10. An X-ray CT apparatus according to claim 9, wherein the blocking member is at least partially divisible.
- 11. An X-ray CT apparatus according to claim 5, wherein the reconstruction unit reconstructs an image of the subject in accordance with
first and second projection data derived from detected X-rays which have permeated the first and the second sections of the aperture in a first position of the X-ray source, and third and fourth projection data derived from detected X-rays which have permeated the first and the second sections of the aperture in a second position where the X-ray source is roughly half a rotation from the first position.
- 12. An X-ray CT apparatus according to claim 11, further comprising:
a movement mechanism configured to move the X-ray detector and the subject relatively in the first direction; and an interpolation processing unit configured to perform helical interpolation using the first, second, third and fourth data.
- 13. An X-ray CT apparatus according to claim 11, wherein,
the X-ray detector has at least four X-ray detection elements in the first direction, the length of the first section is at least two detection elements in the first direction, and the length of the second section is at least two detection elements in the first direction.
- 14. An X-ray CT apparatus according to claim 13, further comprising:
a movement mechanism configured to move the X-ray detector and the subject relatively in the first direction; and an interpolation processing unit configured to perform helical interpolation using first interpolation data wherein the first data detected by at least two detection elements is interpolated, second interpolation data wherein the second data detected by at least two detection elements is interpolated, third interpolation data wherein the third data detected by at least two detection elements is interpolated, and fourth interpolation data wherein the fourth data detected by at least two detection elements is interpolated.
- 15. An X-ray CT apparatus comprising:
an X-ray source configured to generate X-rays towards a subject; a rotation mechanism configured to rotate the X-ray source around a rotational axis; an X-ray detector having a plurality of detection elements arranged in a first direction roughly parallel to the rotational axis and in a second direction which is different from the first direction and configured to detect X-rays emitted from the X-ray source; a reconstruction unit configured to reconstruct an image of the subject in accordance with the data detected by the X-ray detector; and the X-ray detector comprising at least four detection elements in the first direction, at least two detection elements being arranged aligned in relation to the second direction, and at least two detection elements being staggered against the at least two aligned X-ray detection elements in relation to the second direction.
- 16. An X-ray CT apparatus according to claim 15, wherein the rotational axis is arranged such that a line projecting it from the X-ray source on to the X-ray detector is staggered in the second direction in relation to an alignment-centered axis of the X-ray detector.
- 17. An X-ray CT apparatus comprising:
an X-ray source configured to generate X-rays towards a subject; a rotation mechanism configured to rotate the X-ray source around a rotational axis; an X-ray detector having a plurality of detection elements arranged in a first direction roughly parallel to the rotational axis and in a second direction which is different from the first direction and configured to detect X-rays emitted from the X-ray source; a plurality of blocking members, arranged in the first and second directions respectively and configured to block X-rays; a reconstruction unit configured to reconstruct an image of the subject in accordance with data detected by the X-ray detector; and the blocking members comprising first blocking members and second blocking members, the second blocking members located in the first direction in relation to the first blocking members and staggered in relation to the first blocking members in the second direction.
- 18. An X-ray CT apparatus according to claim 17, wherein the rotational axis is arranged such that a line projecting the rotational axis from the X-ray source on to the X-ray detector is staggered in the second direction in relation to an alignment-centered axis of the X-ray detector.
- 19. An X-ray CT apparatus comprising:
an X-ray source configured to generate X-rays towards a subject; a rotation mechanism configured to rotate a focal point of an X-ray emitted from the X-ray source around a rotational axis; an X-ray detector having a plurality of detection segments, each including a plurality of detection elements arranged in a channel direction roughly parallel to the rotational axis, said detection segments arranged in a segment direction perpendicular to the channel direction; a blocking member located between the focal point of the X-ray and the X-ray detector and is configured to block X-rays; and a reconstruction unit configured to reconstruct an image of the subject in accordance with the data detected by the X-ray detector; wherein the blocking member has a plurality of apertures arranged in the channel direction.
- 20. An X-ray CT apparatus according to claim 19, wherein each of the apertures includes first and second sections located on first and second detection segments, respectively.
- 21. An X-ray CT apparatus according to claim 20, wherein the second section of at least one aperture is staggered in relation to the first section thereof in the channel direction.
- 22. An X-ray CT apparatus comprising:
an X-ray source configured to generate X-rays towards a subject; a rotation mechanism configured to rotate a focal point of an X-ray emitted from the X-ray source around a rotational axis; an X-ray detector having a first detection segment and a second detection segment staggered with respect to the first detection segment in relation to a channel direction, each of said detection segments including a plurality of detection elements extending in a channel direction roughly parallel to the rotational axis; an interpolation processing unit configured to perform helical interpolation using a first and second projection data detected by the first and the second detection segments in a first position of the focal point of the X-ray, and third and fourth projection data detected by the first and the second detection segment in a second position where the focal point of the X-ray is roughly half a rotation from the first position; and a reconstruction unit configured to reconstruct an image of the subject in accordance with the interpolated data.
- 23. An X-ray CT apparatus comprising:
an X-ray source configured to generate X-rays towards a subject; a rotation mechanism configured to rotate the X-ray source around a rotational axis; an X-ray detector having a plurality of detection segments, each including a plurality of detection elements arranged in a channel direction roughly parallel to the rotational axis, said detection segments arranged in a segment direction perpendicular to the channel direction; a blocking member configured to block X-ray emitted from the X-ray source and, having a plurality of apertures including a first section and a second section, the first section located on a first detection segment and the second section located on a second detection segment and staggered in relation to the first section in the channel direction; an interpolation processing unit configured to perform helical interpolation using first and second projection data detected by the first and the second detection segments in a first position of the X-ray source, and third and fourth projection data detected by the first and the second detection segments in a second position where the X-ray source is roughly half a rotation from the first position; and a reconstruction unit configured to reconstruct an image of the subject in accordance with the interpolated data.
- 24. An X-ray detector detecting an X-ray comprising:
a plurality of detection segments, arranged in a first direction, each including a plurality of detection elements arranged in a second direction roughly perpendicular to the first direction; and a blocking member configured to block X-ray and having a plurality of apertures arranged in the second direction.
- 25. An X-ray detector according to claim 24, wherein each of the apertures includes first and second sections located on first and second detection segments, respectively.
- 26. An X-ray detector according to claim 25, wherein the second section of at least one aperture is staggered in relation to the first section in the second direction.
Priority Claims (1)
Number |
Date |
Country |
Kind |
P2001-105957 |
Apr 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. §119 to Japanese patent application No. P2001-105957 filed Apr. 4, 2001, the entire content of which are incorporated by reference herein.