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A model of the oscillatory mechanical forces in the conventional outflow pathway

机译:传统流出路径中的振荡机械力模型

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摘要

Intraocular pressure is regulated by mechanosensitive cells within the conventional outflow pathway, the primary route of aqueous humour drainage from the eye. However, the characteristics of the forces acting on those cells are poorly understood. We develop a model that describes flow through the conventional outflow pathway, including the trabecular meshwork (TM) and Schlemm’s canal (SC). Accounting for the ocular pulse, we estimate the time-varying shear stress on SC endothelium and strain on the TM. We consider a range of outflow resistances spanning normotensive to hypertensive conditions. Over this range, the SC shear stress increases significantly and becomes highly oscillatory. TM strain also increases, but with negligible oscillations. Interestingly, TM strain responds more to changes in outflow resistance around physiological values, while SC shear stress responds more to elevated levels of resistance. A modest increase in TM stiffness, as observed in glaucoma, suppresses TM strain and practically eliminates the influence of outflow resistance on SC shear stress. As SC and TM cells respond to mechanical stimulation by secreting factors that modulate outflow resistance, our model provides insight regarding the potential role of SC shear and TM strain as mechanosensory cues for homeostatic regulation of outflow resistance and hence intraocular pressure.
机译:眼内压由常规流出途径内的机械敏感细胞调节,这是眼房水排出的主要途径。但是,人们对作用在这些细胞上的力的特性了解得很少。我们开发了一个模型,用于描述通过传统的流出路径(包括小梁网(TM)和施莱姆运河(SC))的流量。考虑到眼动脉冲,我们估计了SC内皮的时变剪切应力和TM的应变。我们考虑了从正常血压到高血压病的一系列流出阻力。在此范围内,SC剪切应力会显着增加并变得高度振荡。 TM应变也增加,但振荡可忽略不计。有趣的是,TM应变对生理值附近的流出阻力变化的响应更大,而SC剪切应力对阻力水平升高的响应更大。如在青光眼中观察到的那样,TM刚度的适度增加抑制了TM应变,并实际上消除了流出阻力对SC剪切应力的影响。由于SC和TM细胞通过调节流出阻力的分泌因子对机械刺激作出反应,因此我们的模型提供了有关SC剪切和TM应变作为力学感应线索的潜在作用的见解,从而可以动态调节流出阻力并从而调节眼内压。

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