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A multi-view time-domain non-contact diffuse optical tomography scanner with dual wavelength detection for intrinsic and fluorescence small animal imaging

机译:具有双波长检测功能的多视角时域非接触式漫射光学层析成像扫描仪,用于内在和荧光小动物成像

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摘要

We present a non-contact diffuse optical tomography (DOT) scanner with multi-view detection (over 360°) for localizing fluorescent markers in scattering and absorbing media, in particular small animals. It relies on time-domain detection after short pulse laser excitation. Ultrafast time-correlated single photon counting and photomultiplier tubes are used for time-domain measurements. For light collection, seven free-space optics non-contact dual wavelength detection channels comprising 14 detectors overall are placed around the subject, allowing the measurement of time point-spread functions at both excitation and fluorescence wavelengths. The scanner is endowed with a stereo camera pair for measuring the outer shape of the subject in 3D. Surface and DOT measurements are acquired simultaneously with the same laser beam. The hardware and software architecture of the scanner are discussed. Phantoms are used to validate the instrument. Results on the localization of fluorescent point-like inclusions immersed in a scattering and absorbing object are presented. The localization algorithm relies on distance ranging based on the measurement of early photons arrival times at different positions around the subject. This requires exquisite timing accuracy from the scanner. Further exploiting this capability, we show results on the effect of a scattering hetereogenity on the arrival time of early photons. These results demonstrate that our scanner provides all that is necessary for reconstructing images of small animals using full tomographic reconstruction algorithms, which will be the next step. Through its free-space optics design and the short pulse laser used, our scanner shows unprecedented timing resolution compared to other multi-view time-domain scanners.
机译:我们提出了一种非接触式漫射光学层析成像(DOT)扫描仪,具有多视图检测功能(超过360°),用于将荧光标记物定位在散射和吸收介质(特别是小动物)中。它依靠短脉冲激光激发后的时域检测。与时间相关的超快单光子计数管和光电倍增管用于时域测量。为了进行光收集,将七个总体上由14个检测器组成的自由空间光学非接触式双波长检测通道放置在对象周围,从而可以测量激发和荧光波长下的时间点扩展函数。扫描仪配有一对立体相机,用于测量3D物体的外形。使用相同的激光束同时获取表面和DOT测量值。讨论了扫描仪的硬件和软件架构。幻影用于验证仪器。给出了浸没在散射和吸收物体中的荧光点状夹杂物的定位结果。定位算法基于距离测距,该距离基于在对象周围不同位置的早期光子到达时间的测量。这要求扫描仪具有出色的定时精度。进一步利用此功能,我们显示了散射异质性对早期光子到达时间的影响的结果。这些结果表明,我们的扫描仪将提供使用完整的层析重建算法重建小动物图像所需的一切,这将是下一步。通过其自由空间光学设计和所使用的短脉冲激光,与其他多视图时域扫描仪相比,我们的扫描仪显示出前所未有的定时分辨率。

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