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使用 Hausdorff 距离和计算机建模评估三维打印导板的虚拟手术计划与徒手技术在马骨科中修复舟骨的比较。

Use of Hausdorff Distance and Computer Modelling to Evaluate Virtual Surgical Plans with Three-Dimensional Printed Guides against Freehand Techniques for Navicular Bone Repair in Equine Orthopaedics.

机构信息

Department of Large Animal Clinical Sciences, College of Veterinary Medicine, University of Florida, Gainesville, Florida, United States.

Equine Performance Center, Ocala, Florida, United States.

出版信息

Vet Comp Orthop Traumatol. 2021 Jan;34(1):9-16. doi: 10.1055/s-0040-1721846. Epub 2021 Jan 13.

DOI:10.1055/s-0040-1721846
PMID:33440435
Abstract

OBJECTIVE

The aim of this study was to evaluate the surgical execution of a virtual surgical plan (VSP) with three-dimensional (3D) guides against a freehand approach in the equine navicular bone using an automated computer analysis technique.

STUDY DESIGN

Eight pairs of cadaveric forelimb specimens of adult horses were used in an experimental study design with modelling. Limbs received either a 3.5 mm cortical screw according to a VSP or using an aiming device. Using computed tomography and computer segmentation, a comparison was made between the executed screw and the planned screw using the Hausdorff distance (HD).

RESULTS

Navicular bone mean HD registration error was -0.06 ± 0.29 mm. The VSP with 3D printing demonstrated significantly superior accuracy with a mean deviation of 1.19 ± 0.42 mm compared with aiming device group (3.53 ± 1.24 mm,  = 0.0018). The VSP group was 5.0 times more likely to result in a mean aberration of less than 1.0 mm (95% confidence interval, 0.62-33.4). A 3.5 mm screw with an optimal entry point can have a maximum deviation angle of 3.23 ± 0.07, 2.70 ± 0.06 and 2.37 ± 0.10 degrees in a proximal, dorsal and palmar direction respectively, prior to violating one of the cortical surfaces.

CONCLUSION

Procedures performed using the 3D guides have a high degree of accuracy, with minimal mean deviations (<1 mm and <1 degree) of a VSP compared with those using the conventional aiming device. The use of VSP and the HD for evaluation of orthopaedic surgeries and outcome measures shows promise for simplifying and improving surgical accuracy.

摘要

目的

本研究旨在评估使用自动化计算机分析技术,通过三维(3D)引导与徒手方法相比,在马的舟骨中执行虚拟手术计划(VSP)的手术效果。

研究设计

在一项具有建模的实验性研究设计中,使用 8 对成年马的四肢标本。四肢分别根据 VSP 或使用瞄准器接受 3.5mm 皮质螺钉。通过计算机断层扫描和计算机分割,使用 Hausdorff 距离(HD)比较执行螺钉和计划螺钉之间的差异。

结果

舟骨平均 HD 注册误差为-0.06±0.29mm。与瞄准器组(3.53±1.24mm,=0.0018)相比,3D 打印的 VSP 显示出明显更高的准确性,平均偏差为 1.19±0.42mm。VSP 组更有可能导致平均偏差小于 1.0mm(95%置信区间,0.62-33.4)的可能性高 5 倍。具有最佳入口点的 3.5mm 螺钉在前侧、背侧和掌侧方向上的最大偏差角分别可以为 3.23±0.07、2.70±0.06 和 2.37±0.10 度,然后才会侵犯皮质表面之一。

结论

与传统的瞄准器相比,使用 3D 引导器进行的手术具有很高的准确性,VSP 的平均偏差最小(<1mm 和 <1 度)。VSP 和 HD 用于评估骨科手术和结果测量具有简化和提高手术准确性的潜力。

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