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A Rapid and Reliable Method of Counting Neurons and Other Cells in Brain Tissue: A Comparison of Flow Cytometry and Manual Counting Methods

机译:一种快速可靠的脑组织中神经元和其他细胞计数方法:流式细胞术和手动计数方法的比较

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摘要

It is of critical importance to understand the numbers and distributions of neurons and non-neurons in the cerebral cortex because cell numbers are reduced with normal aging and by diseases of the CNS. The isotropic fractionator method provides a faster way of estimating numbers of total cells and neurons in whole brains and dissected brain parts. Several comparative studies have illustrated the accuracy and utility of the isotropic fractionator method, yet it is a relatively new methodology, and there is opportunity to adjust procedures to optimize its efficiency and minimize error. In the present study, we use 142 samples from a dissected baboon cortical hemisphere to evaluate if isotropic fractionator counts using a Neubauer counting chamber and fluorescence microscopy could be accurately reproduced using flow cytometry methods. We find greater repeatability in flow cytometry counts, and no evidence of constant or proportional bias when comparing microscopy to flow cytometry counts. We conclude that cell number estimation using a flow cytometer is more efficient and more precise than comparable counts using a Neubauer chamber on a fluorescence microscope. This method for higher throughput, precise estimation of cell numbers has the potential to rapidly advance research in post-mortem human brains and vastly improve our understanding of cortical and subcortical structures in normal, injured, aged, and diseased brains.
机译:了解大脑皮层中神经元和非神经元的数量和分布至关重要,因为正常衰老和中枢神经系统疾病会导致细胞数量减少。各向同性分馏器方法提供了一种更快的方法来估计整个大脑和解剖的大脑部分中的总细胞和神经元的数量。多项比较研究已经说明了各向同性分馏器方法的准确性和实用性,但这是一个相对较新的方法,并且有机会调整程序以优化其效率并使误差最小化。在本研究中,我们使用来自解剖的狒狒皮层半球的142个样本来评估使用Neubauer计数室进行的各向同性分馏器计数,以及使用流式细胞仪方法可以准确再现荧光显微镜。我们发现流式细胞仪计数具有更高的可重复性,并且在将显微镜与流式细胞仪计数进行比较时,没有证据显示恒定或成比例的偏差。我们得出的结论是,与使用荧光显微镜上的Neubauer室进行的可比计数相比,使用流式细胞仪进行的细胞数估计更有效,更精确。这种用于更高通量,精确估计细胞数量的方法可能会迅速推动死后人类大脑的研究,并极大地增进我们对正常,受伤,衰老和患病大脑的皮质和皮质下结构的了解。

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