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手持式三维扫描仪和常规照片图像的面积测量认证。

Accreditation of the handheld 3-dimensional scanner and conventional photo images for area measurement.

机构信息

Division of Plastic Surgery, Department of Surgery, Kaohsiung Medical University Hospital, Kaohsiung, Taiwan.

Department of Nursing, Faculty of Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan.

出版信息

Medicine (Baltimore). 2024 Feb 9;103(6):e35376. doi: 10.1097/MD.0000000000035376.

Abstract

Accurate assessment of wound areas is crucial in making therapeutic decisions, as the prognosis and changes in the size of the wound over time play a significant role. An ideal assessment method should possess qualities such as speed, affordability, accuracy, user-friendliness for both patients and healthcare professionals, and suitability for daily clinical practice. This study aims to introduce a handheld 3-dimensional (3D) scanner and evaluate its accuracy in measuring wound areas. Engineers from the Industrial Technology Research Institute in Taiwan developed a handheld 3D scanner with the intention of extending its application to the medical field. A project was conducted to validate the accuracy of this 3D scanner. We utilized a smartphone (Asus ZenFone 2 with a 13-million-pixel rear camera), a digital single-lens reflex digital camera (Nikon, D5000, Tokyo, Japan), and the 3D scanner to repeatedly measure square papers of known size that were affixed to the curved surface of life-size facial mask or medical teaching breast models. The "Image J" software was employed for 2-dimensional image measurements, while the "3D Edit" software was used to assess the "area of interest" on 3D objects. By using square papers with predetermined dimensions, the measurement-associated error rate (ER) could be calculated for each image. Three repeated measurements were performed using the "Image J" software for each square paper. The ERs of the 3D scan images were all below 3%, with an average ER of 1.64% in this study. The close-up mode of the smartphone exhibited the highest ER. It was observed that as the area increased, the ER also increased in the digital single-lens reflex camera group. The extension distortion effect caused by the wide-angle lens on the smartphone may increase the ER. However, the definition of a healthy skin edge may vary, and different algorithms for calculating the measurement area are employed in various 3D measurement software. Therefore, further validation of their accuracy for medical purposes is necessary. Effective communication with software engineers and discussions on meeting clinical requirements are crucial steps in enhancing the functionality of the 3D scanner.

摘要

准确评估伤口面积对于制定治疗决策至关重要,因为随着时间的推移,伤口的预后和大小变化起着重要作用。理想的评估方法应该具备速度快、价格实惠、准确性高、患者和医疗保健专业人员使用方便以及适合日常临床实践等特点。本研究旨在介绍一种手持式三维(3D)扫描仪,并评估其测量伤口面积的准确性。来自中国台湾工业技术研究院的工程师开发了一种手持式 3D 扫描仪,旨在将其应用扩展到医疗领域。进行了一个项目来验证该 3D 扫描仪的准确性。我们使用智能手机(华硕 ZenFone 2,后置 1300 万像素摄像头)、数码单镜反光相机(日本东京尼康 D5000)和 3D 扫描仪,反复测量贴在真人大小面部面罩或医学教学乳房模型曲面上的已知尺寸的方形纸张。使用“Image J”软件进行二维图像测量,而“3D Edit”软件用于评估 3D 物体上的“感兴趣区域”。通过使用具有预定尺寸的方形纸张,可以计算出每张图像的测量相关误差率(ER)。对于每张方形纸,我们使用“Image J”软件进行了三次重复测量。在这项研究中,3D 扫描图像的 ER 均低于 3%,平均 ER 为 1.64%。智能手机的特写模式显示出最高的 ER。观察到随着面积的增加,数码单镜反光相机组的 ER 也随之增加。智能手机广角镜头引起的延伸失真效应可能会增加 ER。然而,健康皮肤边缘的定义可能会有所不同,并且各种 3D 测量软件采用不同的算法来计算测量面积。因此,有必要进一步验证其在医学上的准确性。与软件工程师进行有效的沟通并讨论满足临床需求是增强 3D 扫描仪功能的关键步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba9a/10860941/2254d628b088/medi-103-e35376-g001.jpg

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