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Variational attenuation correction in two-view confocal microscopy

机译:两视图共聚焦显微镜的变分衰减校正

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Background Absorption and refraction induced signal attenuation can seriously hinder the extraction of quantitative information from confocal microscopic data. This signal attenuation can be estimated and corrected by algorithms that use physical image formation models. Especially in thick heterogeneous samples, current single view based models are unable to solve the underdetermined problem of estimating the attenuation-free intensities. Results We present a variational approach to estimate both, the real intensities and the spatially variant attenuation from two views of the same sample from opposite sides. Assuming noise-free measurements throughout the whole volume and pure absorption, this would in theory allow a perfect reconstruction without further assumptions. To cope with real world data, our approach respects photon noise, estimates apparent bleaching between the two recordings, and constrains the attenuation field to be smooth and sparse to avoid spurious attenuation estimates in regions lacking valid measurements. Conclusions We quantify the reconstruction quality on simulated data and compare it to the state-of-the art two-view approach and commonly used one-factor-per-slice approaches like the exponential decay model. Additionally we show its real-world applicability on model organisms from zoology (zebrafish) and botany (Arabidopsis). The results from these experiments show that the proposed approach improves the quantification of confocal microscopic data of thick specimen.
机译:背景吸收和折射引起的信号衰减会严重阻碍从共聚焦显微数据中提取定量信息。可以通过使用物理图像形成模型的算法来估计和纠正此信号衰减。特别是在厚的异质样本中,当前基于单视图的模型无法解决估计无衰减强度的不确定问题。结果我们提出了一种变分方法,可以从同一侧的两个侧面的两个视图估计真实强度和空间变差衰减。假设在整个体积和纯吸收范围内均无噪声,则理论上无需进一步假设即可实现完美重建。为了处理现实世界的数据,我们的方法考虑了光子噪声,估计了两次记录之间的明显漂白,并限制了衰减场的平滑性和稀疏性,以避免在缺乏有效测量值的区域进行虚假衰减估计。结论我们量化了模拟数据的重建质量,并将其与最新的两视图方法以及常用的每切片一因子方法(例如指数衰减模型)进行比较。此外,我们还展示了其在动物学(斑马鱼)和植物学(拟南芥)的模型生物上的现实适用性。这些实验的结果表明,所提出的方法改进了厚样品的共聚焦显微镜数据的定量。

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