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3D near-infrared imaging based on a single-photon avalanche diode array sensor

机译:基于单光子雪崩二极管阵列传感器的3D近红外成像

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Near-infrared light can be used to determine the optical properties (absorption and scattering) of human tissue. Optical tomography uses this principle to image the internal structure of parts of the body by measuring the light that is scattered in the tissue. An imager for optical tomography was designed based on a detector with 128x128 single photon pixels that included a bank of 32 time-to-digital converters. Due to the high spatial resolution and the possibility of performing time resolved measurements, a new contactless setup has been conceived. The setup has a resolution of 97ps and operates with a laser source with an average power of 3mW. This new setup generated an high amount of data that could not be processed by established methods, therefore new concepts and algorithms were developed to take advantage of it. Simulations show that the potential resolution of the new setup would be much higher than previous designs. Measurements have been performed showing its potential. Images derived from the measurements showed that it is possible to reach a resolution of at least 5mm.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:近红外光可用于确定人体组织的光学特性(吸收和散射)。光学体层摄影术通过测量在组织中散射的光,使用此原理对身体各部分的内部结构成像。用于光学层析成像的成像仪是基于具有128x128个单光子像素的检测器设计的,该检测器包括一组32个时间数字转换器。由于高空间分辨率和执行时间分辨测量的可能性,因此构想了一种新的非接触式设置。该设置的分辨率为97ps,并使用平均功率为3mW的激光源进行操作。这种新设置产生了大量无法通过既定方法处理的数据,因此开发了新的概念和算法来利用它。仿真表明,新设置的潜在分辨率将比以前的设计高得多。已经进行了测量以显示其潜力。从测量得出的图像表明,可以达到至少5mm的分辨率。©(2012)版权所有,美国光电仪器工程师学会(SPIE)。摘要的下载仅允许个人使用。

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