首页> 外文期刊>Journal of Biomechanics >Vagal nerve stimulation reduces anterior mitral valve leaflet stiffness in the beating ovine heart
【24h】

Vagal nerve stimulation reduces anterior mitral valve leaflet stiffness in the beating ovine heart

机译:迷走神经刺激降低了跳动的绵羊心脏中的二尖瓣前小叶的硬度

获取原文
获取原文并翻译 | 示例
           

摘要

Aim: The functional significance of the autonomic nerves in the anterior mitral valve leaflet (AML) is unknown. We tested the hypothesis that remote stimulation of the vagus nerve (VNS) reduces AML stiffness in the beating heart. Methods: Forty-eight radiopaque-markers were implanted into eleven ovine hearts to delineate left ventricular and mitral anatomy, including an AML array. The anesthetized animals were then taken to the catheterization laboratory and 4-D marker coordinates obtained from biplane videofluoroscopy before and after VNS. Circumferential (E circ) and radial (E rad) stiffness values for three separate AML regions, Annulus, Belly and Edge, were obtained from inverse finite element analysis of AML displacements in response to trans-leaflet pressure changes during isovolumic contraction (IVC) and isovolumic relaxation (IVR). Results: VNS reduced heart rate: 94±9 vs. 82±10min -1, (mean±SD, p0.001). Circumferential AML stiffness was significantly reduced in all three regions during IVC and IVR (all p0.05). Radial AML stiffness was reduced from control in the annular and belly regions at both IVC and IVR (P0.05), while the reduction did not reach significance at the AML edge. Conclusion: These observations suggest that one potential functional role for the parasympathetic nerves in the AML is to alter leaflet stiffness. Neural control of the contractile tissue in the AML could be part of a central control system capable of altering valve stiffness to adapt to changing hemodynamic demands.
机译:目的:自主神经在二尖瓣前叶(AML)中的功能意义尚不清楚。我们测试了假说,迷走神经(VNS)的远程刺激会降低跳动的心脏中的AML僵硬度。方法:将48个不透射线的标记物植入11个绵羊心脏,以描绘包括AML阵列的左心室和二尖瓣解剖结构。然后将麻醉的动物送至导管室,并在VNS之前和之后从双平面荧光透视获得4-D标记坐标。通过对等容容积收缩(IVC)和跨腔收缩期间反跨瓣压力变化的AML位移的反有限元分析,获得了三个独立的AML区域,环面,腹部和边缘的周向(E circ)和径向(E rad)刚度值。等容松弛(IVR)。结果:VNS降低的心率:94±9 vs. 82±10min -1,(平均值±SD,p <0.001)。在IVC和IVR期间,所有三个区域的周向AML硬度均显着降低(所有p <0.05)。在IVC和IVR处,环形和腹部区域的径向AML刚度均较对照降低(P <0.05),而在AML边缘未达到显着降低。结论:这些观察结果表明,副交感神经在AML中的一种潜在功能是改变小叶的硬度。 AML中对收缩组织的神经控制可能是中央控制系统的一部分,该系统能够更改瓣膜刚度以适应不断变化的血液动力学需求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号