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莫尔条纹法的理论方面与实际应用。

Theoretical aspects and practical applications of moiré topography.

作者信息

Xenofos S S, Jones C H

出版信息

Phys Med Biol. 1979 Mar;24(2):250-61. doi: 10.1088/0031-9155/24/2/002.

Abstract

When a surface is observed at a distance through a parallel line grating which is illuminated by a source of light laterally displaced to the viewing axis, the grating is superimposed on its shadow and this gives rise to a moiré fringe pattern. The fringes represent cross-sections of the surface parallel to the grating plane. The principle of the formation of the contour map has been studied assuming a grating represented by a Fourier series, a source of light represented by a 3D intensity distribution and a viewing aperture of finite dimensions. The experimental system used for illumination and observation of the moiré fringes consists of an equispaced parallel-lined glass grating and two small light sources positioned symmetrically about the imaging device. The arrangement constitutes a 3D imaging system with an accuracy of the order of 1 mm. The technique has been applied in radiotherapy problems such as the design of contour compensators and the measurement of body contours. Moiré patterns have been analysed with the aid of a PDP-8 computer, and have been used to calculate surface areas and volumes such as in breast studies and superficial tumour measurements.

摘要

当通过一个由横向偏离视轴的光源照明的平行线光栅在一定距离处观察一个表面时,光栅会叠加在其阴影上,从而产生莫尔条纹图案。这些条纹代表与光栅平面平行的表面横截面。假设光栅由傅里叶级数表示、光源由三维强度分布表示且观察孔径具有有限尺寸,研究了等高线图的形成原理。用于照明和观察莫尔条纹的实验系统由一个等间距平行线玻璃光栅和两个关于成像设备对称定位的小光源组成。该装置构成了一个精度约为1毫米的三维成像系统。该技术已应用于放射治疗问题,如轮廓补偿器的设计和身体轮廓的测量。借助PDP - 8计算机对莫尔图案进行了分析,并已用于计算表面积和体积,如在乳房研究和浅表肿瘤测量中。

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