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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Modeling the influence of acute changes in bladder elasticity on pressure and wall tension during filling
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Modeling the influence of acute changes in bladder elasticity on pressure and wall tension during filling

机译:建模膀胱弹性对填充过程中压力和墙张力的影响

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摘要

Tension-sensitive nerves in the bladder wall are responsible for providing bladder sensation. Bladder wall tension, and therefore nerve output, is a function of bladder pressure, volume, geometry and material properties. The elastic modulus of the bladder is acutely adjustable, and this material property is responsible for adjustable preload tension exhibited in human and rabbit detrusor muscle strips and dynamic elasticity revealed during comparative-fill urodynamics in humans. A finite deformation model of the bladder was previously used to predict filling pressure and wall tension using uniaxial tension test data and the results showed that wall tension can increase significantly during filling with relatively little pressure change. In the present study, published uniaxial rabbit detrusor data were used to quantify regulated changes in the elastic modulus, and the finite deformation model was expanded to illustrate the potential effects of elasticity changes on pressure and wall tension during filling. The model demonstrates a shift between relatively flat pressure-volume filling curves, which is consistent with a recent human urodynamics study, and also predicts that dynamic elasticity would produce significant changes in wall tension during filling. The model results support the conclusion that acute regulation of bladder elasticity could contribute to significant changes in wall tension for a given volume that could lead to urgency, and that a single urodynamic fill may be insufficient to characterize bladder biomechanics. The model illustrates the potential value of quantifying wall tension in addition to pressure during urodynamics.
机译:膀胱壁中的张力敏感神经负责提供膀胱感。膀胱壁张力,因此神经输出,是膀胱压力,体积,几何形状和材料特性的函数。膀胱的弹性模量是急性调节的,并且该材料属性负责人体​​和兔肉肉肌肉条的可调节预加载张力和人类的比较填充尿动力学期间显示的动态弹性。囊的有限变形模型以前使用使用单轴张力试验数据来预测填充压力和壁张力,结果表明,在填充时,壁张力可以显着增加,在填充相对较小的压力变化期间。在本研究中,公布的单轴兔逼尿管数据用于量化弹性模量的调节变化,并且扩展有限变形模型以说明弹性变化在填充过程中的压力和壁张力的潜在影响。该模型演示了相对扁平的压力体积填充曲线之间的偏移,这与最近的人借氧动力学研究一致,并且还预测动态弹性在填充过程中会产生显着的壁张力变化。模型结果支持膀胱弹性的急性调节可能导致可能导致紧迫性的给定体积的壁张力的显着变化,并且单一尿动力学填充物可能不足以表征膀胱生物力学。该模型除了在尿动力学期间的压力之外,该模型还示出了量化壁张力的潜在值。

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