论文标题

大脑区域和病例之间神经元的结构多样性

Structural diverseness of neurons between brain areas and between cases

论文作者

Mizutani, Ryuta, Saiga, Rino, Yamamoto, Yoshiro, Uesugi, Masayuki, Takeuchi, Akihisa, Uesugi, Kentaro, Terada, Yasuko, Suzuki, Yoshio, De Andrade, Vincent, De Carlo, Francesco, Takekoshi, Susumu, Inomoto, Chie, Nakamura, Naoya, Torii, Youta, Kushima, Itaru, Iritani, Shuji, Ozaki, Norio, Oshima, Kenichi, Itokawa, Masanari, Arai, Makoto

论文摘要

大脑皮层由多种具有多种大脑功能的皮质区域组成。尽管人脑神经元在遗传和人际镶嵌上是摩西元,但尚未描绘出不同脑区域或不同个体神经元之间神经元之间的三维结构差异。在这里,我们通过使用同步加速器辐射纳米摄影仪报告了4个精神分裂症和4个对照病例的上颞回的脑组织的纳米尺度几何分析。分析的结果以及与前扣带回皮层的结果的比较表明,1)神经元结构在大脑区域之间不同,并且2)随着情况的不同之处。结构多样性主要是根据与神经突和棘的直径成反比的神经突曲率观察到的。该分析还揭示了精神分裂症和对照病例的神经元之间的几何差异,这表明神经元结构与脑功能有关。神经元结构的区域依赖性及其在个体之间的多样性应代表大脑功能的个性。

The cerebral cortex is composed of multiple cortical areas that exert a wide variety of brain functions. Although human brain neurons are genetically and areally mosaic, the three-dimensional structural differences between neurons in different brain areas or between the neurons of different individuals have not been delineated. Here, we report a nanometer-scale geometric analysis of brain tissues of the superior temporal gyrus of 4 schizophrenia and 4 control cases by using synchrotron radiation nanotomography. The results of the analysis and a comparison with results for the anterior cingulate cortex indicated that 1) neuron structures are dissimilar between brain areas and that 2) the dissimilarity varies from case to case. The structural diverseness was mainly observed in terms of the neurite curvature that inversely correlates with the diameters of the neurites and spines. The analysis also revealed the geometric differences between the neurons of the schizophrenia and control cases, suggesting that neuron structure is associated with brain function. The area dependency of the neuron structure and its diverseness between individuals should represent the individuality of brain functions.

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