Anatomical relationships of human pelvises and their application to registration techniques.

Q Medicine
Martin Haimerl, Mario Schubert, Melanie Wegner, Sabine Kling
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引用次数: 11

Abstract

Knowledge of consistent anatomical relationships is an important criterion for establishing registration procedures for orthopedic navigation systems. Based on an analysis of 420 CT data sets, we investigated whether a robust registration of the pelvis in a lateral decubitus position could be achieved based on anatomical relationships. For this purpose, we assessed basic statistics and variation in anatomical parameters. It was found that inter-teardrop and inter-fossa distances exhibit a high degree of consistency in pelvises of the same gender. Additionally, stable relationships were found between the anterior pelvic plane (APP) and other reference planes that rely on acetabular points instead of pubic points. Based on these results, a registration procedure for the pelvis was developed which uses only landmarks that are accessible intra-operatively from the ipsilateral side. The deviation between a standard APP registration and this new registration method was assessed. For a standard cup position (40° inclination, 15° anteversion), the resulting deviations were found to be 0.15 ± 2.86° for inclination and 0.27 ± 3.46° for anteversion. Of the registrations, 99% had cup positions within the Lewinnek safe zone. This shows that accurate lateral pelvis registration based on anatomical relationships is achievable.

人体骨盆的解剖关系及其在配准技术中的应用。
了解一致的解剖关系是建立骨科导航系统注册程序的重要标准。基于420个CT数据集的分析,我们研究了基于解剖关系的侧卧位骨盆是否可以实现稳健的配准。为此,我们评估了基本统计数据和解剖参数的变化。研究发现,在同一性别的骨盆中,泪滴间和窝间距离表现出高度的一致性。此外,发现骨盆前平面(APP)与依赖髋臼点而不是耻骨点的其他参考平面之间存在稳定的关系。基于这些结果,我们开发了骨盆的定位程序,该程序仅使用术中可从同侧到达的地标。评估了标准APP注册与新注册方法之间的偏差。对于标准杯位(倾斜40°,前倾15°),结果偏差为倾斜0.15±2.86°,前倾0.27±3.46°。在登记的人中,99%的人的杯子位置在莱温内克安全区内。这表明基于解剖关系的准确骨盆侧位是可以实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Computer Aided Surgery
Computer Aided Surgery 医学-外科
CiteScore
0.75
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The scope of Computer Aided Surgery encompasses all fields within surgery, as well as biomedical imaging and instrumentation, and digital technology employed as an adjunct to imaging in diagnosis, therapeutics, and surgery. Topics featured include frameless as well as conventional stereotaxic procedures, surgery guided by ultrasound, image guided focal irradiation, robotic surgery, and other therapeutic interventions that are performed with the use of digital imaging technology.
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