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首页> 外文期刊>BioSystems >Ferritin and neuromelanin “quantum dot” array structures in dopamine neurons of the substantia nigra pars compacta and norepinephrine neurons of the locus coeruleus
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Ferritin and neuromelanin “quantum dot” array structures in dopamine neurons of the substantia nigra pars compacta and norepinephrine neurons of the locus coeruleus

机译:铁蛋白和神经瘤素“量子点”阵列结构在体积nigra pars comparaa 斜视神经元的 locus coeruleus

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摘要

In this review, the author shows that ferritin has documented quantum dot material properties that have been reported in numerous independent studies, and can enable quantum mechanical electron transport over substantial distances. In addition, neuromelanin is a pi-conjugated polymer, and quantum dot/pi-conjugated polymer combinations have been reported in numerous independent studies to facilitate electron transport for solar photovoltaic and other applications. Both ferritin and neuromelanin are present in large quantities in the dopamine neurons of thesubstantia nigra pars compactaand the norepinephrine neurons of thelocus coeruleus. The unique structure of subgroups of these neurons that have a large number of axon branches and synapses may have evolved to take advantage of this electron transport mechanism, if it is present, such as to coordinate conscious action, or for other purposes. Independent clinical and laboratory studies are also reviewed that corroborate this theory of coordinated action in these neuron groups. Research to validate the theory using charge transport measurements, materials characterization, existing fluorescent probe material and reaction time testing is proposed.
机译:在该评价中,作者表明,铁蛋白已经记录了许多独立研究中报告的量子点材料特性,并且可以在大幅度上实现量子机械电子传输。此外,神经蛋白蛋白是一种PI缀合的聚合物,并且已经在许多独立研究中报道了量子点/ PI缀合的聚合物组合,以便于太阳能光伏等应用的电子传输。铁蛋白和神经隆蛋白的含量大量存在于Thysubstantia Nigra Pars Compacta和Thelocus Coeruleus的Norepinephrine神经元中的大量。具有大量轴突分支和突触的这些神经元的独特结构可能已经发展以利用这种电子传输机构,如果存在,例如用于协调意识动作,或用于其他目的。还审查了独立的临床和实验室研究,以证实这些神经元组的协调作用理论。使用电荷输送测量验证理论,提出了材料表征,现有的荧光探针材料和反应时间测试。

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