首页> 外文期刊>The Journal of Physiology >Lymphatic anatomy and biomechanics.
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Lymphatic anatomy and biomechanics.

机译:淋巴解剖学和生物力学。

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摘要

Abstract Lymph formation is driven by hydraulic pressure gradients developing between the interstitial tissue and the lumen of initial lymphatics. While in vessels equipped with lymphatic smooth muscle cells these gradients are determined by well-synchronized spontaneous contractions of vessel segments, initial lymphatics devoid of smooth muscles rely on tissue motion to form lymph and propel it along the network. Lymphatics supplying highly moving tissues, such as skeletal muscle, diaphragm or thoracic tissues, undergo cyclic compression and expansion of their lumen imposed by local stresses arising in the tissue as a consequence of cardiac and respiratory activities. Active muscle contraction and not passive tissue displacement is required to support an efficient lymphatic drainage, as suggested by the fact that the respiratory activity promotes lymph formation during spontaneous, but not mechanical ventilation. The mechanical properties of the lymphatic wall and of the surrounding tissue also play an important role in lymphatic function. Modelling of stress distribution in the lymphatic wall suggests that compliant vessels behave as reservoirs accommodating absorbed interstitial fluid, while lymphatics with stiffer walls, taking advantage of a more efficient transmission of tissue stresses to the lymphatic lumen, propel fluid through the lumen of the lymphatic circuit.
机译:摘要淋巴的形成是由间质组织和初始淋巴管腔之间形成的液压梯度驱动的。在配备淋巴平滑肌细胞的血管中,这些梯度是由血管节段的自发同步收缩决定的,而缺乏平滑肌的初始淋巴管则依靠组织运动形成淋巴并沿网络推进。供给高度运动的组织(例如骨骼肌,diaphragm肌或胸腔组织)的淋巴管会由于心脏和呼吸活动而在组织中产生局部压力,从而承受管腔的周期性压缩和扩张。要支持有效的淋巴引流,需要主动的肌肉收缩而不是被动的组织移位,这是由以下事实表明的:在自发通气期间,呼吸活动促进了淋巴的形成,但机械通气却没有。淋巴壁和周围组织的机械特性在淋巴功能中也起着重要作用。淋巴管壁应力分布的模型表明,顺应性血管的行为就像是容纳吸收的组织液的储层,而壁较硬的淋巴管细胞利用组织应力向淋巴管腔的更有效传递,推动流体通过淋巴回路的管腔。

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