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Signal enhancement in optical projection tomography via virtual high dynamic range imaging of single exposure

机译:通过单次曝光的虚拟高动态范围成像在光学投影层析成像中增强信号

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Optical projection tomography (OPT) is a mesoscopic scale optical imaging technique for specimens between 1mm and 10mm. OPT has been proven to be immensely useful in a wide variety of biological applications, such as developmental biology and pathology, but its shortcomings in imaging specimens containing widely differing contrast elements are obvious. The longer exposure for high intensity tissues may lead to over saturation of other areas, whereas a relatively short exposure may cause similarity with surrounding background. In this paper, we propose an approach to make a trade-off between capturing weak signals and revealing more details for OPT imaging. This approach consists of three steps. Firstly, the specimens are merely scanned in 360 degrees above a normal exposure but non-overexposure to acquire the projection data. This reduces the photo bleaching and pre-registration computation compared with multiple different exposures in conventional high dynamic range (HDR) imaging method. Secondly, three virtual channels are produced for each projection image based on the histogram distribution to simulate the low, normal and high exposure images used in the traditional HDR technology in photography. Finally, each virtual channel is normalized to the full gray scale range and three channels are recombined into one image using weighting coefficients optimized by a standard eigen-decomposition method. After applying our approach on the projection data, filtered back projection (FBP) algorithm is carried out for 3-dimentional reconstruction. The neonatal wild-type mouse paw has been scanned to verify this approach. Results demonstrated the effectiveness of the proposed approach.
机译:光学投影层析成像(OPT)是一种介观尺度的光学成像技术,适用于1mm至10mm的标本。 OPT已被证明在多种生物学应用(例如发育生物学和病理学)中非常有用,但是它在包含差异很大的对比元素的成像标本中的缺点是显而易见的。高强度组织的长时间曝光可能会导致其他区域过度饱和,而相对短的曝光可能会导致与周围背景相似。在本文中,我们提出了一种在微弱信号的捕获与揭示OPT成像更多细节之间进行权衡的方法。此方法包括三个步骤。首先,仅在正常曝光以上360度扫描样本,但不进行过度曝光以获取投影数据。与传统的高动态范围(HDR)成像方法中的多次不同曝光相比,这减少了照片漂白和预注册计算。其次,基于直方图分布为每个投影图像生成三个虚拟通道,以模拟传统HDR技术在摄影中使用的低,正常和高曝光图像。最后,将每个虚拟通道归一化为整个灰度范围,并使用通过标准特征分解方法优化的加权系数将三个通道重新组合为一张图像。在将我们的方法应用于投影数据后,对3维重建进行了滤波反投影(FBP)算法。新生儿野生型小鼠爪已被扫描以验证这种方法。结果证明了该方法的有效性。

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