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一种用于精确测量人耳参数的三维算法。

A three-dimensional algorithm for precise measurement of human auricle parameters.

机构信息

Department of Plastic, Reconstructive and Hand Surgery, Amsterdam UMC Location University of Amsterdam, Amsterdam, The Netherlands.

Amsterdam Reproduction and Development Research Institute, Amsterdam, The Netherlands.

出版信息

Sci Rep. 2024 May 10;14(1):10760. doi: 10.1038/s41598-024-61351-5.

Abstract

Measurement of auricle parameters for planning and post-operative evaluation presents substantial challenges due to the complex 3D structure of the human auricle. Traditional measurement methods rely on manual techniques, resulting in limited precision. This study introduces a novel automated surface-based three-dimensional measurement method for quantifying human auricle parameters. The method was applied to virtual auricles reconstructed from Computed Tomography (CT) scans of a cadaver head and subsequent measurement of important clinically relevant aesthetical auricular parameters (length, width, protrusion, position, auriculocephalic angle, and inclination angle). Reference measurements were done manually (using a caliper and using a 3D landmarking method) and measurement precision was compared to the automated method. The CT scans were performed using both a contemporary high-end and a low-end CT scanner. Scans were conducted at a standard scanning dose, and at half the dose. The automatic method demonstrated significantly higher precision in measuring auricle parameters compared to manual methods. Compared to traditional manual measurements, precision improved for auricle length (9×), width (5×), protrusion (5×), Auriculocephalic Angle (5-54×) and posteroanterior position (23×). Concerning parameters without comparison with a manual method, the precision level of supero-inferior position was 0.489 mm; and the precisions of the inclination angle measurements were 1.365 mm and 0.237 mm for the two automated methods investigated. Improved precision of measuring auricle parameters was associated with using the high-end scanner. A higher dose was only associated with a higher precision for the left auricle length. The findings of this study emphasize the advantage of automated surface-based auricle measurements, showcasing improved precision compared to traditional methods. This novel algorithm has the potential to enhance auricle reconstruction and other applications in plastic surgery, offering a promising avenue for future research and clinical application.

摘要

由于人类耳廓的复杂 3D 结构,对耳廓参数进行规划和术后评估存在很大的挑战。传统的测量方法依赖于手动技术,导致精度有限。本研究提出了一种新颖的基于自动表面的三维测量方法,用于量化人类耳廓参数。该方法应用于从尸体头部 CT 扫描重建的虚拟耳廓,并随后测量重要的临床相关美学耳廓参数(长度、宽度、突出度、位置、耳颅角和倾斜角)。参考测量值是手动(使用卡尺和 3D 地标法)进行的,并将测量精度与自动方法进行了比较。CT 扫描分别使用了一款现代高端和低端 CT 扫描仪进行。扫描是在标准扫描剂量和半剂量下进行的。自动方法在测量耳廓参数方面表现出明显更高的精度。与传统的手动测量相比,耳廓长度(9 倍)、宽度(5 倍)、突出度(5 倍)、耳颅角(5-54 倍)和后前位置(23 倍)的测量精度得到了提高。对于没有与手动方法进行比较的参数,上-下位置的精度水平为 0.489 毫米;两种所研究的自动方法的倾斜角测量精度分别为 1.365 毫米和 0.237 毫米。提高耳廓参数的测量精度与使用高端扫描仪有关。较高的剂量仅与左侧耳廓长度的较高精度相关。本研究的结果强调了基于自动表面的耳廓测量的优势,与传统方法相比,显示出更高的精度。这种新算法有可能增强耳廓重建和整形手术中的其他应用,为未来的研究和临床应用提供了有前途的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e76/11087560/204349be7043/41598_2024_61351_Fig1_HTML.jpg

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