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A New Lateral Guidance Device for Stereotactic Breast Biopsy Using an Add-on Unit to an Upright Mammography System

机译:一种新的横向引导装置,用于立体定向乳房活组织检查,使用附加单元直立乳房X线摄影系统

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Stereotactic breast biopsy (SBB) is the gold standard for noninvasive breast cancer diagnosis. Current systems rely on one of two methods for needle insertion: a vertical-approach (from above the breast compression plate) or a lateral-approach (parallel to the compression plate). While the vertical-approach is more commonly used, it is not feasible in patients with thin breasts (less than 3cm thickness after compression) or with superficial lesions. We present a novel design of lateral guidance device for SBB which addresses these limitations of the vertical-approach, and provides improvements over existing lateral guidance hardware. This device incorporates spherical linkages to allow two degrees of rotational freedom in the needle trajectory for increased targeting flexibility, as well as an adjustable rigid needle support to minimize needle deflection within the tissue. Needle placement error in SBB experiments is compared using both the new lateral guidance device and a commercial lateral guidance device in agar phantoms. The effect of elevation angle on needle placement accuracy using the new lateral guidance device is also assessed. Finally, a biopsy accuracy experiment is presented using a certified SBB phantom to compare the new design and the commercial lateral guidance device. In these experiments, SBB performed using the new lateral guidance device resulted in improved needle placement error and biopsy accuracy, while increasing targeting flexibility and maintaining procedural workflow.
机译:立体定向乳腺活检(SBB)是非侵入性乳腺癌诊断的金标准。电流系统依赖于针插入两种方法之一:垂直 - 方法(来自乳房压缩板上上方)或横向 - 方法(平行于压缩板)。虽然垂直方法更常用,但在薄乳房的患者(压缩后厚度小于3cm)或浅表病变是不可行的。我们为SBB提供了一种新颖的SBB设计,它解决了垂直方法的这些限制,并提供了对现有横向引导硬件的改进。该装置包括球形连接,以允许针轨迹中的两度旋转自由度,以增加靶向柔性,以及可调节的刚针支撑件,以最小化组织内的针偏转。使用新的横向引导装置和琼脂模拟中的商业横向引导装置进行比较SBB实验中的针放置误差。还评估了使用新的横向引导装置对针放置精度的升降角度的影响。最后,使用经过认证的SBB Phantom提出了活组织检查精度实验,以比较新设计和商业横向引导装置。在这些实验中,使用新的横向引导装置进行的SBB导致针放置误差和活检精度改善,同时增加了靶向灵活性和维持程序工作流程。

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