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Optimisation and validation of hydrogel-based brain tissue clearing shows uniform expansion across anatomical regions and spatial scales

机译:基于水凝胶的脑组织清除的优化和验证显示了在解剖区域和空间尺度上的均匀扩展

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摘要

Imaging of fixed tissue is routine in experimental neuroscience, but is limited by the depth of tissue that can be imaged using conventional methods. Optical clearing of brain tissue using hydrogel-based methods (e.g. CLARITY) allows imaging of large volumes of tissue and is rapidly becoming commonplace in the field. However, these methods suffer from a lack of standardized protocols and validation of the effect they have upon tissue morphology. We present a simple and reliable protocol for tissue clearing along with a quantitative assessment of the effect of tissue clearing upon morphology. Tissue clearing caused tissue swelling (compared to conventional methods), but this swelling was shown to be similar across spatial scales and the variation was within limits acceptable to the field. The results of many studies rely upon an assumption of uniformity in tissue swelling, and by demonstrating this quantitatively, research using these methods can be interpreted more reliably.
机译:固定组织的成像在实验神经科学中是常规的,但是受可以使用常规方法成像的组织深度的限制。使用基于水凝胶的方法(例如CLARITY)对脑组织进行光学清除可以成像大量组织,并且在该领域迅速普及。然而,这些方法缺乏标准化的方案以及它们对组织形态的影响的验证。我们提出了一种简单而可靠的组织清除协议,并对组织清除对形态的影响进行了定量评估。组织清除导致组织肿胀(与传统方法相比),但是这种肿胀在空间尺度上表现出相似性,并且变化在现场可接受的范围内。许多研究的结果依赖于组织肿胀均匀性的假设,并且通过定量证明这一点,可以更可靠地解释使用这些方法的研究。

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