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用于非接触式三维体积测量和表面纹理分析的激光和声扫描仪。

Laser and sound scanner for non-contact 3D volume measurement and surface texture analysis.

作者信息

Bhat S S, Smith D J

机构信息

Department of Polymer Science and Engineering, University of Akron, OH 44325.

出版信息

Physiol Meas. 1994 Feb;15(1):79-88. doi: 10.1088/0967-3334/15/1/007.

Abstract

Non-invasive three-dimensional measurement of volume and analysis of surface texture is desired in various medical applications, particularly wound healing measurements. In this paper we present a PC-based non-contact laser scanner for volume measurements, and a sound scanner that can accurately measure volumes and analyse surface textures. The non-invasive laser and sound sensors, which are lightweight, are mounted inverted on an X-Y table and the sensor heads are held at a distance of 3 cm from the object to be scanned. Volumes of various shapes on different materials, simulating depth profiles and surfaces of wounds, have been measured accurately and surface textures of varying softness have been analysed. The ratios of measured to actual volume range between 0.8 for the sound sensor and 1.1 for the laser sensor. A linear relation between hardness of 50%-20% concentration gelatin gel surfaces and amplitude of reflected sound waves is also observed. The average time per pass of a scan, for a distance of 3 cm, is 4 s and the computation time for measuring volume and reconstruction of a 3D image using ten passes per scan is 1 min. The unique features of this scanner are its speed, portability, accuracy and simple operation as well as its ability to be used on both soft and hard surfaces.

摘要

在各种医学应用中,尤其是伤口愈合测量中,需要对体积进行非侵入性三维测量并分析表面纹理。在本文中,我们展示了一种基于个人计算机的用于体积测量的非接触式激光扫描仪,以及一种能够精确测量体积并分析表面纹理的声学扫描仪。重量轻的非侵入性激光和声学传感器倒置安装在一个XY工作台上,传感器头与待扫描物体保持3厘米的距离。已经精确测量了不同材料上各种形状的体积,模拟了伤口的深度轮廓和表面,并分析了不同柔软度的表面纹理。测量体积与实际体积的比率在声学传感器的0.8至激光传感器的1.1之间。还观察到50%-20%浓度明胶凝胶表面的硬度与反射声波振幅之间存在线性关系。对于3厘米的距离,每次扫描的平均时间为4秒,每次扫描使用十次扫描来测量体积和重建三维图像的计算时间为1分钟。该扫描仪的独特之处在于其速度、便携性、准确性和操作简单,以及能够在软硬表面上使用的能力。

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