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使用红外光选择性抑制小直径轴突。

Selective inhibition of small-diameter axons using infrared light.

机构信息

Department of Pediatrics, Case Western Reserve University, Cleveland, OH, USA.

Department of Biology, Case Western Reserve University, Cleveland, OH, USA.

出版信息

Sci Rep. 2017 Jun 12;7(1):3275. doi: 10.1038/s41598-017-03374-9.

Abstract

Novel clinical treatments to target peripheral nerves are being developed which primarily use electrical current. Recently, infrared (IR) light was shown to inhibit peripheral nerves with high spatial and temporal specificity. Here, for the first time, we demonstrate that IR can selectively and reversibly inhibit small-diameter axons at lower radiant exposures than large-diameter axons. We provide a mathematical rationale, and then demonstrate it experimentally in individual axons of identified neurons in the marine mollusk Aplysia californica, and in axons within the vagus nerve of a mammal, the musk shrew Suncus murinus. The ability to selectively, rapidly, and reversibly control small-diameter sensory fibers may have many applications, both for the analysis of physiology, and for treating diseases of the peripheral nervous system, such as chronic nausea, vomiting, pain, and hypertension. Moreover, the mathematical analysis of how IR affects the nerve could apply to other techniques for controlling peripheral nerve signaling.

摘要

正在开发针对外周神经的新型临床治疗方法,这些方法主要利用电流。最近,红外(IR)光已被证明可以具有高空间和时间特异性地抑制外周神经。在这里,我们首次证明,IR 可以选择性地和可逆地抑制小直径轴突,而所需的辐射暴露低于大直径轴突。我们提供了一个数学原理,然后在海洋软体动物加利福尼亚海兔的已识别神经元的单个轴突中,以及在哺乳动物麝香鼩的迷走神经中的轴突中进行了实验验证。选择性,快速和可逆地控制小直径感觉纤维的能力可能具有许多应用,既可以用于生理学分析,也可以用于治疗周围神经系统疾病,例如慢性恶心,呕吐,疼痛和高血压。此外,IR 如何影响神经的数学分析也可以应用于其他控制周围神经信号的技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96c1/5468240/3f98a5f480cc/41598_2017_3374_Fig1_HTML.jpg

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