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在活体大鼠模型中使用 1505nm 激光辐射进行迷走神经束刺激。

Vagus nerve bundle stimulation using 1505-nm laser irradiation in an in-vivo rat model.

机构信息

Izmir Biomedicine and Genome Center, Izmir, Turkey.

Izmir International Biomedicine and Genome Institute, Dokuz Eylul University, Izmir, Turkey.

出版信息

J Biophotonics. 2022 Jan;15(1):e202100197. doi: 10.1002/jbio.202100197. Epub 2021 Sep 26.

Abstract

Laser nerve stimulation using near-infrared laser irradiation has recently been studied in the peripheral nervous system as an alternative method to conventional electrical nerve stimulation. Bringing this method to the vagus nerve model could leverage this emerging stimulation approach to be tested in broader preclinical applications. Here, we report the capability of the laser nerve stimulation method on the rat vagus nerve bundle with a 1505-nm diode laser operated in continuous-wave mode. Studies of the stimulation threshold and laser-induced acute thermal injury to the nerve bundle were also performed to determine a temperature window for safe, reliable and reproducible laser stimulation of the rat vagus nerve bundle. The results show that laser stimulation of the vagus nerve bundle provides reliable and reproducible nerve stimulation in a rat model. These results also confirm a threshold temperature of >42°C with acute nerve damage observed above 46°C. A strong correlation was obtained between the laser time required to raise the nerve temperature above the stimulation threshold and the mean arterial pressure response. Advantages of the method such as non-contact delivery of external stimulus signals at mm scaled distance in air, enhanced spatial selectivity and electrical artefact-free measurements may indicate its potential to counteract the side effects of conventional electrical vagus nerve stimulation.

摘要

使用近红外激光辐照的激光神经刺激最近在周围神经系统中作为传统电神经刺激的替代方法进行了研究。将这种方法应用于迷走神经模型,可以利用这种新兴的刺激方法在更广泛的临床前应用中进行测试。在这里,我们报告了在连续波模式下工作的 1505nm 二极管激光对大鼠迷走神经束进行激光神经刺激的方法的能力。还进行了刺激阈值和激光诱导的神经束急性热损伤的研究,以确定安全、可靠和可重复的大鼠迷走神经束激光刺激的温度窗口。结果表明,激光刺激迷走神经束在大鼠模型中提供可靠和可重复的神经刺激。这些结果还证实了 42°C 以上的急性神经损伤观察到的阈值温度>42°C。在神经温度超过刺激阈值所需的激光时间与平均动脉压反应之间获得了很强的相关性。该方法的优点是可以在空气中以毫米级的距离非接触式传输外部刺激信号,具有增强的空间选择性和无电伪迹测量,这可能表明它有潜力对抗传统电迷走神经刺激的副作用。

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