...
首页> 外文期刊>Biomechanics and modeling in mechanobiology >Contraction of collecting lymphatics: organization of pressure-dependent rate for multiple lymphangions
【24h】

Contraction of collecting lymphatics: organization of pressure-dependent rate for multiple lymphangions

机译:收集淋巴管的收缩:组织多淋巴管的压力依赖性率

获取原文
获取原文并翻译 | 示例
           

摘要

The paper describes the extension of a previously developed model of pressure-dependent contraction rate to the case of multiple lymphangions. Mechanical factors are key modulators of active lymphatic pumping. As part of the evolution of our lumped-parameter model to match experimental findings, we have designed an algorithm whereby the time until the next contraction depends on lymphangion transmural pressure in the contraction just completed. The functional dependence of frequency on pressure is quantitatively matched to isobaric contraction experiments on isolated lymphatic segments. When each of several lymphangions is given this ability, a scheme for their coordination must be instituted to match the observed synchronization. Accordingly, and in line with an experiment on an isolated lymphatic vessel segment in which we measured contraction sequence and conduction delay, we took the fundamental principle to be that local timing can be overridden by signals to initiate contraction that start in adjacent lymphangions, conducted with a short delay. The scheme leads to retrograde conduction when the lymphangion chain is pumping against an adverse pressure difference, but antegrade conduction when contractions occur with no or a favourable pressure difference. Abolition of these conducted signals leads to chaotic variation of cycle-mean flow-rate from the chain, diastolic duration in each lymphangion, and inter-lymphangion delays. Chaotic rhythm is also seen under other circumstances. Because the model responds to increasing adverse pressure difference by increasing the repetition rate of contractions, it maintains time-average output flow-rate better than one with fixed repetition rate.
机译:本文描述了先前开发的压力依赖性收缩率模型的扩展到多个淋巴管的情况。机械因素是有源淋巴泵的主要调节剂。作为我们的集合参数模型的演变的一部分,以匹配实验结果,我们设计了一种算法,即在接下来的收缩取决于刚刚完成的收缩中的淋巴压透气压力的时间。频率对压力的功能依赖性与分离的淋巴结的异常收缩实验定量匹配。当赋予这种能力的每个淋巴结时,必须提出一个协调的方案以匹配观察到的同步。因此,并符合我们测量收缩序列和传导延迟的分离淋巴血管段的实验,我们采取了基本原理,成为当地时机可以被信号覆盖,以启动从相邻淋巴结的收缩开始短暂的延迟。当淋巴压链泵抵抗不利的压力差时,该方案导致逆行传导,但是当收缩发生时或良好的压力差时,方便传导。取消这些传导信号导致从链条,每个淋巴管中的链条,舒张压持续时间的循环平均流量的混沌变化,以及淋巴压间延迟。在其他情况下也看到了混沌节奏。因为模型通过增加收缩率的重复率来响应增加不利的压力差,所以它保持时间平均输出流量比具有固定重复率的时间平均输出流速。

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