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首页> 外文期刊>American Journal of Physiology >Lymphatic vessels transition to state of summation above a critical contraction frequency.
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Lymphatic vessels transition to state of summation above a critical contraction frequency.

机译:淋巴管在临界收缩频率以上过渡到求和状态。

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摘要

Although behavior of lymphatic vessels is analogous to that of ventricles, which completely relax between contractions, and blood vessels, which maintain a tonic constriction, the mixture of contractile properties can yield behavior unique to lymphatic vessels. In particular, because of their limited refractory period and slow rate of relaxation, lymphatic vessels lack the contractile properties that minimize summation in ventricles. We, therefore, hypothesized that lymphatic vessels transition to a state of summation when lymphatic vessel contraction frequency exceeds a critical value. We used an isovolumic, controlled-flow preparation to compare the time required for full relaxation with the time available to relax during diastole. We measured transmural pressure and diameter on segments of spontaneously contracting bovine mesenteric lymphatic vessels during 10 isovolumic volume steps. We found that beat-to-beat period (frequency(-1)) decreased with increases in diameter and that total contraction time was constant or slightly increased with diameter. We further found that the convergence of beat-to-beat period and contraction cycle duration predicted a critical transition value, beyond which the vessel does not have time to fully relax. This incomplete relaxation and resulting mechanical summation significantly increase active tension in diastole. Because this transition occurs within a physiological range, contraction summation may represent a fundamental feature of lymphatic vessel function.
机译:尽管淋巴管的行为类似于在收缩之间完全放松的心室和维持滋补收缩的血管的行为,但是收缩特性的混合可以产生淋巴管独有的行为。特别是,由于其有限的不应期和缓慢的放松速度,淋巴管缺乏使心室总和最小化的收缩特性。因此,我们假设当淋巴管的收缩频率超过临界值时,淋巴管会转变为累加状态。我们使用了等容,控流制剂,将完全放松所需的时间与舒张期可放松的时间进行了比较。我们在10个等容体积步中测量了自发收缩的牛肠系膜淋巴管段的透壁压力和直径。我们发现搏动周期(频率(-1))随着直径的增加而减小,总收缩时间随着直径的增加而恒定或略有增加。我们进一步发现,心跳周期和收缩周期持续时间的收敛预测了一个关键的过渡值,超过此值血管就没有时间完全放松。这种不完全的松弛和由此产生的机械累加显着增加了舒张期的主动张力。因为这种转变发生在生理范围内,所以收缩总和可能代表淋巴管功能的基本特征。

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