首页> 外文期刊>International Journal of Neural Systems >Influence of Cholecystokinin-8 on Compound Nerve Action Potentials from Ventral Gastric Vagus in Rats
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Influence of Cholecystokinin-8 on Compound Nerve Action Potentials from Ventral Gastric Vagus in Rats

机译:胆囊蛋白-8对大鼠腹侧胃迷走病的复合神经动作电位的影响

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摘要

Objective: Vagus Nerve Stimulation (VNS) has shown great promise as a potential therapy for a number of conditions, such as epilepsy, depression and for Neurometabolic Therapies, especially for treating obesity. The objective of this study was to characterize the left ventral subdiaphragmatic gastric trunk of vagus nerve (SubDiaGVN) and to analyze the influence of intravenous injection of gut hormone cholecystokinin octapeptide (CCK-8) on compound nerve action potential (CNAP) observed on the same branch, with the aim of understanding the impact of hormones on VNS and incorporating the methods and results into closed loop implant design. Methods: The cervical region of the left vagus nerve (CerVN) of male Wistar rats was stimulated with electric current and the elicited CNAPs were recorded on the SubDiaGVN under four different conditions: Control (no injection), Saline, CCK1 (100pmol/kg) and CCK2 (1000pmol/kg) injections. Results: We identified the presence of Aδ, B, C1, C2, C3 and C4 fibers with their respective velocity ranges. Intravenous administration of CCK in vivo results in selective, statistically significant reduction of CNAP components originating from A and B fibers, but with no discernible effect on the C fibers in n = 7 animals. The affected CNAP components exhibit statistically significant (pSaline?CCK1 = 0.02 and pSaline?CCK2 = 0.007) higher normalized stimulation thresholds. Conclusion: This approach of characterizing the vagus nerve can be used in closed loop systems to determine when to initiate VNS and also to tune the stimulation dose, which is patient-specific and changes over time.
机译:目的:迷走神经刺激(VNS)表现出对许多病症的潜在治疗,例如癫痫,抑郁和神经疗法疗法,特别是用于治疗肥胖症的潜在治疗。本研究的目的是表征迷走神经(Subdiagvn)的左侧腹部副骨颈胃躯干,并分析在相同的复合神经动作电位(CCK-8)上观察到的静脉内注射肠道胆结构胆囊酮蛋白寡糖(CCK-8)的影响分支机构,目的是了解激素对VNS的影响,并将方法和结果纳入闭环植入物设计。方法:用电流刺激阳性Wistar大鼠左迷走神经(Cervn)的宫颈区域,并在四种不同条件下记录在子地血清中的引起的CNAP:对照(无注射),盐水,CCK1(100pmol / kg)和CCK2(1000pmol / kg)注射。结果:我们鉴定了具有它们各自的速度范围的Aδ,B,C1,C2,C3和C4纤维的存在。体内CCK的静脉内施用导致源自A和B纤维的CNAP成分的选择性,统计显着降低,但在N = 7只动物中没有对C纤维的可辨别效果。受影响的CNAP组件表现出统计学上显着的(诗篇?CCK1 = 0.02和诗篇?CCK2 = 0.007)较高的归一化刺激阈值。结论:这种表征迷走神经的方法可用于闭环系统,以确定何时启动VNS,也可以调整刺激剂量,这是特定于患者的和随时间的变化。

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    *Institute of Biomedical Engineering Department of Electrical and Electronic Engineering Imperial College London SW7 2AZ UK;

    *Institute of Biomedical Engineering Department of Electrical and Electronic Engineering Imperial College London SW7 2AZ UK;

    *Institute of Biomedical Engineering Department of Electrical and Electronic Engineering Imperial College London SW7 2AZ UK;

    *Institute of Biomedical Engineering Department of Electrical and Electronic Engineering Imperial College London SW7 2AZ UK;

    *Institute of Biomedical Engineering Department of Electrical and Electronic Engineering Imperial College London SW7 2AZ UK;

    ?Division of Diabetes Endocrinology and Metabolism Section of Endocrinology and Investigative Medicine Imperial College London W12 0NN UK;

    *Institute of Biomedical Engineering Department of Electrical and Electronic Engineering Imperial College London SW7 2AZ UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经生理学;
  • 关键词

    Compound nerve action potentials; subdiaphragmatic vagus nerve; vagus nerve stimulation; closed loop system;

    机译:复合神经动作潜力;子椎管迷走神经;迷走神经刺激;闭环系统;

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