首页> 外文期刊>Nature reviews. Gastroenterology & hepatology >Bioelectric neuromodulation for gastrointestinal disorders: effectiveness and mechanisms.
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Bioelectric neuromodulation for gastrointestinal disorders: effectiveness and mechanisms.

机译:胃肠疾病生物电性神经调节:有效性和机制。

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摘要

The gastrointestinal tract has extensive, surgically accessible nerve connections with the central nervous system. This provides the opportunity to exploit rapidly advancing methods of nerve stimulation to treat gastrointestinal disorders. Bioelectric neuromodulation technology has considerably advanced in the past decade, but sacral nerve stimulation for faecal incontinence currently remains the only neuromodulation protocol in general use for a gastrointestinal disorder. Treatment of other conditions, such as IBD, obesity, nausea and gastroparesis, has had variable success. That nerves modulate inflammation in the intestine is well established, but the anti-inflammatory effects of vagal nerve stimulation have only recently been discovered, and positive effects of this approach were seen in only some patients with Crohn's disease in a single trial. Pulses of high-frequency current applied to the vagus nerve have been used to block signalling from the stomach to the brain to reduce appetite with variable outcomes. Bioelectric neuromodulation has also been investigated for postoperative ileus, gastroparesis symptoms and constipation in animal models and some clinical trials. The clinical success of this bioelectric neuromodulation therapy might be enhanced through better knowledge of the targeted nerve pathways and their physiological and pathophysiological roles, optimizing stimulation protocols and determining which patients benefit most from this therapy.
机译:胃肠道具有广泛的,手术可接近的神经连接,中枢神经系统。这提供了利用迅速推进神经刺激方法来治疗胃肠道疾病的机会。在过去十年中,生物电性神经调节技术具有大幅提高,但对粪便失禁的骶神经刺激目前仍然是胃肠疾病的唯一用途的神经调节方案。治疗其他条件,如IBD,肥胖,恶心和胃病,都有变量成功。神经调节肠道中的炎症是很好的,但最近发现了迷失神经刺激的抗炎作用,并且在一次试验中只有一些克罗恩病的患者看到这种方法的积极作用。施加到迷走神经的高频电流的脉冲已被用于阻断从胃到大脑的信号传导,以减少具有可变结果的食欲。还研究了动物模型的术后肠梗阻,胃流血症状和便秘以及一些临床试验的生物电性神经调节。通过更好地了解靶心神经途径及其生理病理学和病理生理作用,优化刺激方案以及确定哪种患者受到这种治疗的益处,可以提高这种生物电神经调节治疗的临床成功。

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