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Neuroprotection at the Nanolevel-Part I Introduction to Nanoneurosurgery

机译:纳米水平的神经保护-第一部分纳米神经外科导论

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Nanoneurosurgery demands a departure from the traditional "excise what you can see and touch" role of neurosurgeons. Moreover, there is a conceptual leap necessary for neuroscientists as well as neurosurgeons in developing and applying nanotechniques to neuro-surgery at the nanolevel. After introducing the realm of nanotechnology and some unique properties of nanomaterials, I review several of the nanotechniques in development that are most likely to affect neuroprotection at the nanolevel. These techniques include quantum dot "nano-barcode" labeling of cellular and subcellular entities, as well as nanotechniques for following enzymatic reactions in real time. Nanoscaffolds offer mechanical enhancement of neurorepair; carbon nanotube electrode arrays can provide nanolevel electrical and chemical enhancement. Even traditional "cut and sew" surgery is being taken down to the micron, if not nano, level for single axon repair, and the technology can use capillaries to deliver therapeutics to virtually any portion of the nervous system with greater than pinpoint accuracy. In this report, I use these nanotechniques to introduce the multiplex nanodevices under development.
机译:纳米神经外科手术要求摆脱神经外科医师的传统“精确的可视化和触觉”角色。而且,对于神经科学家和神经外科医生来说,在纳米水平上开发和应用纳米技术到神经外科方面,在概念上有必要飞跃。在介绍了纳米技术的领域和纳米材料的一些独特特性之后,我回顾了正在开发的几种最有可能影响纳米级神经保护作用的纳米技术。这些技术包括细胞和亚细胞实体的量子点“纳米条形码”标记,以及用于实时跟踪酶促反应的纳米技术。纳米支架提供了神经修复的机械增强。碳纳米管电极阵列可以提供纳米级的电和化学增强。即使是传统的“切割和缝合”手术,也要进行微米级甚至是纳米级的单轴突修复,该技术可以使用毛细血管向神经系统的几乎任何部位提供治疗,且精确度更高。在本报告中,我将使用这些纳米技术来介绍正在开发的多重纳米器件。

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