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A Small and High-Speed Driving Mechanism for 3D Shape Measurement in Monocular Endoscopy

机译:单眼镜检查中3D形测量的小而高速驱动机制

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摘要

Three-dimensional (3D) shape acquisition has been widely introduced to enrich quantitative analysis with the combination of object shape and texture, for example, surface roughness evaluation in industry and gastrointestinal endoscopy in medicine. Shape from focus is a promising technique to measure substance surfaces in 3D space because no occlusion problem appears in principle, as does with stereo shape measurement, which is another commonly used option. We have been developing endoscopic shape measurement devices and shape reconstruction algorithms. In this paper, we propose a mechanism for driving an image sensor reciprocated for the shape from focus of 3D shape measurement in monocular endoscopy. It uses a stepping motor and a planar-end cam, which transforms the motor rotation to imaging sensor reciprocation, to implement the shape from focus of 3D shape measurement in endoscopy. We test and discuss the device in terms of its driving accuracy and application feasibility for endoscopic 3D shape measurement.
机译:已经普遍地引入了三维(3D)形状采集,以通过物体形状和质地的组合来丰富定量分析,例如,在医学中的工业和胃肠内窥镜检查中的表面粗糙度评估。焦点的形状是一种有希望的技术来测量3D空间中的物质表面,因为原则上没有遮挡问题,与立体声形状测量一样,这是另一个常用的选项。我们一直在开发内窥镜形状测量装置和形状重建算法。在本文中,我们提出了一种机制,用于驱动图像传感器以单眼镜检查中的3D形状测量的焦点往复运动的形状。它使用步进电机和平面凸轮,将电机旋转变换为成像传感器往复运动,以实现内窥镜检查中的3D形状测量的焦点。我们在其驱动精度和用于内窥镜3D形测量的可行性方面测试和讨论该装置。

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