Suppr超能文献

电动平滑肌括约肌:新型猪人工平滑肌括约肌在新型体外造口模拟器中的发育及生物力学评估

Electrodynamic smooth muscle sphincter: development and biomechanical evaluation of a novel porcine artificial smooth muscle sphincter in a new in vitro stoma simulator.

作者信息

Schrag H J, Karwath D, Grub C, Fragoza Padilla F, Noack T, Hopt U T

机构信息

Department of General and Visceral Surgery, University of Freiburg, Hospital, Hugstetter Strasse 55, 79106 Freiburg, Germany.

出版信息

Int J Colorectal Dis. 2005 Jul;20(4):321-7. doi: 10.1007/s00384-004-0655-8. Epub 2004 Nov 13.

Abstract

AIM

Many authors have suggested that the activity of the enteric inhibitory nerves is important in regulating normal gastrointestinal motility and inducing smooth muscle relaxation. Hitherto, no experimental or clinical models exist that transfer these physiological aspects to creating an autologous artificial sphincter for the treatment of major incontinence. Therefore, this study was performed to determine the contractile and relaxant capacity of gastrointestinal muscle types and to investigate the efficiency of a novel smooth muscle sphincter, based on the non-adrenergic, non-cholinergic (NANC) receptive relaxation under electrical field stimulation (EFS).

METHODS

For the first step, the isometric tension from isolated circular porcine fundus and colon muscle strips was recorded during pharmacological stimulation (TTX, L-NNA and atropine) and EFS. As a result, a continent electrodynamic smooth muscle sphincter (ESMS) was created by wrapping a fundus muscle flap around an isolated segment of porcine distal colon. The EFS of the free nerve fibers of the flap was realized using a circular platinum wire electrode. Parameters such as threshold of continence, intra/preluminal pressure and fluid passage were analyzed in a newly designed in vitro stoma simulator.

RESULTS

Electrical field stimulation produced a maximal and voltage-dependent fundus relaxation to --12.4 mN/mm(2) (frequency of 40 Hz, pulse duration, train duration and voltage of 5 ms, 1 s and 60 mA respectively), which were abolished by N-nitro-L -arginine (L-NNA; 10(-4) M) in a dose-dependent manner, confirming that relaxant responses were mediated by NANC nerves. The results of eight ESMS showed that circular electrical stimulation of the muscle flap caused muscle relaxation with a concomitant and effective reduction in the occlusion pressure.

CONCLUSION

The NANC-induced relaxation mechanism of porcine fundus preparations could be transferred to an efficient smooth muscle sphincter with a high threshold of continence and electrically controlled defecation.

摘要

目的

许多作者认为,肠道抑制神经的活动在调节正常胃肠蠕动和诱导平滑肌松弛方面很重要。迄今为止,尚无将这些生理特性转化为用于治疗大便失禁的自体人工括约肌的实验或临床模型。因此,本研究旨在确定胃肠肌肉类型的收缩和舒张能力,并基于电场刺激(EFS)下的非肾上腺素能、非胆碱能(NANC)感受性舒张来研究新型平滑肌括约肌的效能。

方法

第一步,在药理学刺激(TTX、L-NNA和阿托品)和EFS期间记录分离的猪胃底和结肠肌条的等长张力。结果,通过将胃底肌瓣包裹在猪远端结肠的分离段周围,制作了一个可控性电动平滑肌括约肌(ESMS)。使用圆形铂丝电极对肌瓣的游离神经纤维进行EFS。在新设计的体外造口模拟器中分析诸如节制阈值、腔内/腔前压力和液体通过等参数。

结果

电场刺激使胃底产生最大且依赖电压的舒张,至-12.4 mN/mm(2)(频率40 Hz,脉冲持续时间、串持续时间和电压分别为5 ms、1 s和60 mA),N-硝基-L-精氨酸(L-NNA;10(-4) M)以剂量依赖方式消除了这种舒张,证实舒张反应由NANC神经介导。八个ESMS的结果表明,对肌瓣进行环形电刺激会导致肌肉舒张,同时有效降低闭塞压力。

结论

猪胃底制剂中NANC诱导的舒张机制可转化为具有高节制阈值和电控排便功能的高效平滑肌括约肌。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验