技术说明:在计算机断层扫描数据中测量双髁长度。

IF 1.7 2区 生物学 Q1 ANTHROPOLOGY American Journal of Biological Anthropology Pub Date : 2024-10-07 DOI:10.1002/ajpa.25032
Kelly R Kamnikar, Nicollette S Appel, Rachel Menegaz, Tea Jashashvili, Ethan C Hill, Heather J H Edgar
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引用次数: 0

摘要

目的:随着三维生成图像在生物研究中的应用日益广泛,我们迫切需要将传统上使用卡尺进行的经典解剖测量应用到虚拟环境中。我们介绍了使用三种不同的成像软件--3D Slicer™、Amira™ 和 Simpleware™ 测量股骨关键尺寸--双髁长度的详细方案。这些规程为放射学、整形外科、生物力学和生物人类学领域的研究人员和从业人员提供了精确、可重复的测量技术。目的是在生物力学研究、身材估算以及相关医学和人类学研究中实现虚拟骨学的标准化并为其提供支持:根据标准化协议,我们对新墨西哥采集的计算机断层扫描图像(n = 10)进行了股骨双髁长度测量。该方法在设计时考虑了三个软件平台的适用性和可重复性。通过比较不同观察者和不同平台对同一样本的测量结果,本研究验证了改良方案的准确性和一致性,证明了其在研究和临床评估中的实用性:结果:我们为每个程序提供了一个分步指南,详细介绍了骨骼排列和测量。我们对每个步骤进行了说明,并通过链接提供了视频教程,以加深对这一过程的理解:讨论:每个软件程序都能按照提供的说明有效测量双髁长度。然而,各软件的测量难易程度不尽相同,有些软件的测量过程更为简单。这种差异强调了根据用户的需求和熟练程度选择合适软件的重要性。同时,这也表明了软件设计和教学清晰度方面需要改进和标准化的地方。
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Technical note: Measuring bicondylar length in computed tomography data.

Objectives: With the increased use of 3D-generated images in biological research, there is a critical need to adapt classical anatomical measurements, traditionally conducted with calipers, to a virtual environment. We present detailed protocols for measuring bicondylar length, a critical dimension of the femur, using three different imaging software programs-3D Slicer™, Amira™, and Simpleware™. These protocols provide researchers and practitioners in radiology, orthopedics, biomechanics, and biological anthropology with accurate and reproducible measurement techniques. The objective is to standardize and support virtual osteology in biomechanical research, stature estimation, and related medical and anthropological studies.

Materials and methods: Adhering to standardized protocols, we adapted femoral bicondylar length measurements for computed tomography images from a New Mexican collection (n = 10). The method was designed for applicability and reproducibility across three software platforms. By comparing measurements from the same sample across different observers and different platforms, this study validates the accuracy and consistency of the adapted protocol, demonstrating its utility for research and clinical assessments.

Results: We present a step-by-step guide for each program, detailing bone alignment and measurement. We illustrate each step and provide video tutorials via links for an enhanced understanding of the process.

Discussion: Bicondylar length can be measured effectively in each software program following the provided instructions. However, ease of measurement varied among the programs, with some offering a more straightforward process. This variability underscores the importance of choosing appropriate software for the user's needs and proficiency. It also suggests areas for improvement and standardization in software design and instructional clarity.

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