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Image processing with the radial Hilbert transform of Photo-thermal imaging for carious detection

机译:利用光热成像的径向希尔伯特变换进行龋齿检测的图像处理

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Knowledge of heat transfer in biological bodies has many diagnostic and therapeutic applications involving either raising or lowering of temperature, and often requires precise monitoring of the spatial distribution of thermal histories that are produced during a treatment protocol. The present paper therefore aims to design and implementation of laser therapeutic and imaging system used for carious tracking and drilling by develop a mathematical algorithm using Hilbert transform for edge detection of photo-thermal imaging. photothermal imaging has the ability to penetrate and yield information about an opaque medium well beyond the range of conventional optical imaging. Owing to this ability, Q- switching Nd:YAG laser at wavelength 1064 nm has been extensively used in human teeth to study the sub-surface deposition of laser radiation. The high absorption coefficient of the carious rather than normal region rise its temperature generating IR thermal radiation captured by high resolution thermal camera. Changing the pulse repetition frequency of the laser pulses affects the penetration depth of the laser, which can provide three-dimensional (3D) images in arbitrary planes and allow imaging deep within a solid tissue.
机译:生物体内传热的知识具有许多涉及温度升高或降低的诊断和治疗应用,并且通常需要精确监控在治疗方案过程中产生的热历史的空间分布。因此,本文旨在通过开发使用希尔伯特变换的光热成像边缘检测数学算法,设计和实现用于龋齿跟踪和钻孔的激光治疗和成像系统。光热成像具有穿透和产生有关不透明介质的信息的能力,该信息远远超出了常规光学成像的范围。由于这种能力,波长为1064 nm的Q开关Nd:YAG激光器已广泛用于人类牙齿中,以研究激光辐射的表面下沉积。龋而不是正常区域的高吸收系数会升高其温度,从而产生由高分辨率热像仪捕获的IR热辐射。更改激光脉冲的脉冲重复频率会影响激光的穿透深度,从而可以在任意平面中提供三维(3D)图像,并允许在实体组织内进行深部成像。

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