TOMOSYNTHESIS-GUIDED BIOPSY IN PRONE
20230240785 · 2023-08-03
Assignee
Inventors
- Kenneth F. DeFreitas (Patterson, NY, US)
- Ian Shaw (Yorktown Heights, NY, US)
- John Laviola (Orange, CT, US)
Cpc classification
A61B90/11
HUMAN NECESSITIES
A61B6/4452
HUMAN NECESSITIES
International classification
A61B90/11
HUMAN NECESSITIES
A61B6/02
HUMAN NECESSITIES
A61B6/04
HUMAN NECESSITIES
Abstract
A station for tomotactic-guided biopsy in prone includes a table with an aperture, and a tomosynthesis imaging system. A biopsy gun can be mounted on a stage arm assembly disposed below the table. The imaging system and stage arm assembly can be independently rotated and linearly repositioned in one or more dimensions, thereby allowing the tomotactic scan axis to be located relative to a breast being imaged.
Claims
1-20. (canceled)
21. An apparatus comprising: a base; an equipment support platform linearly positionable relative to the base; a tomosynthesis imaging system rotatably secured to the equipment support platform for imaging a breast of a patient, wherein the tomosynthesis imaging system is rotatable about an imaging system rotation axis; a stage arm assembly rotatably secured to the equipment support platform, wherein the stage arm assembly comprises a biopsy needle configured to obtain a tissue sample from the breast of the patient, wherein the stage arm assembly is rotatable about a stage arm assembly rotation axis; and a breast support assembly linearly positionable along the equipment support platform, wherein the breast support assembly is configured to immobilize the breast of the patient during an image-guided biopsy procedure.
22. The apparatus of claim 21, wherein the equipment support platform is positionable along a Z-axis, the Z-axis being oriented in a same direction as at least one of the imaging system rotation axis and the stage arm assembly rotation axis.
23. The apparatus of claim 22, further comprising a table positioned above the equipment support platform, wherein the table is configured to support the patient in a prone position.
24. The apparatus of claim 23, wherein the table defines an aperture through which the breast imaged by the tomosynthesis imaging system extends.
25. The apparatus of claim 23, wherein the Z-axis is defined by the aperture.
26. The apparatus of claim 22, wherein the equipment support platform is configured to be moved in one or more dimensions orthogonal to the Z-axis.
27. The apparatus of claim 22, wherein the tomosynthesis imaging system is positionable along the Z-axis.
28. The apparatus of claim 22, wherein the stage arm assembly is positionable along the Z-axis.
29. The apparatus of claim 21, wherein the tomosynthesis imaging system comprises an x-ray source and a receptor, the imaging system rotation axis is defined between the x-ray source and the receptor.
30. The apparatus of claim 29, wherein a portion of the biopsy needle is configured to be positioned within a path of x-ray emission from the x-ray source.
31. The apparatus of claim 21, wherein the stage arm assembly is configured to be rotated to either side of the breast support assembly without interfering with the breast support assembly.
32. The apparatus of claim 21, wherein the stage arm assembly is independently rotatable from the tomosynthesis imaging system.
33. The apparatus of claim 21, wherein the stage arm assembly is independently linearly positionable from the tomosynthesis imaging system.
34. The apparatus of claim 21, wherein the imaging system rotation axis is co-axial with the stage arm assembly rotation axis.
35. The apparatus of claim 21, wherein the stage arm assembly is rotatable through at least 180 degrees.
36. The apparatus of claim 21, wherein the biopsy needle is positionable through 360 degrees relative to the breast.
37. The apparatus of claim 21, wherein the breast support assembly comprises a breast support platform and a compression paddle.
38. The apparatus of claim 37, wherein the compression paddle is linearly movable toward and away from the breast support platform.
39. The apparatus of claim 21, further comprising a carriage slide assembly connected to the stage arm assembly, wherein the carriage slide assembly is configured to reposition the biopsy needle.
40. A method of performing an image-guided biopsy procedure, the method comprising: extending a breast of a patient through an opening of a patient support table when the patient is in a prone position; compressing the breast of the patient with a breast support assembly, wherein the breast support assembly is linearly positionable relative to an equipment support platform disposed below the table; rotatably positioning a tomosynthesis imaging system about an imaging system rotation axis, wherein the tomosynthesis imaging system is rotatably secured to the equipment support platform for imaging a breast of a patient, wherein the tomosynthesis imaging system is positionable independent of the breast support assembly; and rotatably positioning a stage arm assembly relative to the breast support assembly, wherein the stage arm assembly is positionable independent of the breast support assembly, and wherein the stage arm assembly comprises a biopsy needle configured to obtain a tissue sample from the breast of the patient, wherein the stage arm assembly is rotatable about a stage arm assembly rotation axis and positionable along a Z-axis, the Z-axis being oriented in a same direction as at least one of the imaging system rotation axis and the stage arm assembly rotation axis.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0010]
[0011]
[0012]
[0013]
DETAILED DESCRIPTION
[0014] Referring to
[0015] The biopsy table 106 is supported by a footed base 108. The base is offset to one side of the table such that an area beneath the table is available for positioning both a portion of the body of the patient on which the biopsy is performed and equipment for performing the biopsy. The table 106 includes a rigid platform which, may be cantilevered from the base 108, and which supports the patient during the biopsy procedure. The platform may be partially or wholly covered with padding for the comfort of the patient. The table may be contoured such that symmetrical distal end sections 110, 112 are elevated relative to a central section 114. Either of the elevated sections 110, 112 can help support the legs of the patient, thereby allowing 180 degree repositioning of the patient. The central section 114 supports the head, abdomen and hip of the patient. Transitions between the end sections and the central section are angled to provide comfortable head, abdomen and hip support. An aperture 116 in the central section 114 of the table enables a portion of the body of the patient to extend below the table when the patient is situated in a prone position. For example, the breast being biopsied may extend through the aperture. Other parts of the patient's body may also extend through the aperture, e.g., an arm, for enhanced comfort or positioning for the biopsy procedure. Some aspects of the table may be consistent with features described in International Application Number PCT/US11/61186, titled TABLE FOR PERFORMING MEDICAL PROCEDURES, filed Nov. 17, 2011, and U.S. Pat. No. 5,289,520, titled STEREOTACTIC MAMMOGRAPHY IMAGING SYSTEM WITH PRONE POSITION EXAMINATION TABLE AND CCD CAMERA, filed Oct. 6, 1992, both of which are incorporated by reference.
[0016] Referring now to
[0017] The tomosynthesis imaging system 102 is mounted on the equipment support platform 200. The imaging system may include an x-ray energy source 202 and an x-ray energy receptor 204 (shown via cutaways in
[0018] The biopsy gun stage arm assembly 104 is connected to the support platform 200 via a pivoting connector such as a bearing. Moreover, the stage arm assembly may pivot around a Z-axis which is coincident with Z-axis 302, and a multi-part bearing assembly may be utilized to enable independent rotational movement of the imaging system and the stage arm assembly. Optionally, the stage arm assembly may rotate about an axis offset from that of the imaging system. A rotatable support platform 400 associated with the stage arm assembly is disposed above the support arm 206. The stage arm assembly is rotatable through 180 degrees in the X-Y plane for manual set up by the operator. The stage arm assembly may be secured against rotational movement by a brake mechanism, e.g., to inhibit motion during a sweep or scan. A guidance module 402 with an interface and display mounted in a housing integral with or connected to the support platform displays tomosynthesis images and information about the relative locations of the targeted feature and the biopsy gun 404 to help position the biopsy gun and guide its path of travel such that the needle intersects with the target feature. A stage arm 406 is disposed on top of the guidance module 402 housing. A carriage slide assembly 408 is connected to the stage arm. A gun mount is connected to the carriage slide assembly. A biopsy gun 404 is mounted to the gun mount. The stage arm assembly may be oriented such that the operational path of travel of the biopsy gun needle intersects the Z-axis 302 about which the stage arm assembly and support arm rotate. More particularly, the orientation of the stage arm assembly may be such that the operational path of travel of the biopsy gun needle intersects the Z-axis about which the stage arm assembly and support arm rotate at a particular point within the field of view of the tomosynthesis imaging system. The carriage slide assembly enables manual or motor-driven adjustment of the distance between the needle and the rotational Z-axis intersection point. The stage arm (and thus the gun mount and biopsy needle) may be oriented at a fixed inclination, e.g., 10°, relative to the X-Y plane in which the stage arm assembly is rotatable. Inclination of the stage arm allows a “zero degree” offset configuration in which the stage arm assembly is aligned with the imaging system as specifically shown in
[0019] A breast support assembly is provided to place the breast in compression. The breast support assembly includes a breast support platform 504 and compression paddle 502 connected to a rotatable platform 500. The platform 500 of the breast support assembly is connected to the support platform 200 via a pivoting connector such as a bearing. Moreover, the stage arm assembly may pivot around a Z-axis which is coincident with Z-axis 302, and a multi-part bearing assembly may be utilized to enable independent rotational movement of the breast support assembly. Optionally, the stage arm assembly pivots about an axis that is offset from Z-axis 302. The compression paddle is linearly movable toward and away from platform 504 in order to compress the breast against the foremost surface of the breast support platform 504 and release the breast from compression upon completion of the procedure. An aperture in the compression paddle allows a biopsy needle to traverse the compression paddle, e.g., in the zero degrees offset configuration. The breast support platform 504 may be integral to a protective cover 506 which encloses the receptor 204. A gap, e.g., 3 cm, between the foremost surface 700 (see
[0020] The stage arm assembly 104 and imaging system 102 are independently rotatable for set up, e.g., each through a 180 degree range of arc in the X-Y plane. More particularly, the furthest extent to which the stage arm assembly protrudes from the Z-axis of rotation is less than the minimum distance between the first upright portion of the support arm and the Z-axis of rotation. Consequently, the stage arm assembly can be rotated to either side of the receptor without interference. Similarly, the stage arm assembly can be rotated to either side of the breast support assembly without interference. (compare, e.g.,
[0021] Some or all of the features described above may be used to facilitate a breast biopsy procedure illustrated in
[0022] While the invention has been described through the above examples and features, it will be understood by those of ordinary skill in the art that a wide variety of modifications, combinations and variations of the examples and features may be made without departing from the inventive concepts herein disclosed. Moreover, the invention should not be viewed as being limited to any specific purposes described herein, but rather should be viewed as being applicable to accomplish a wide variety of purposes beyond those described herein.