宫颈管对精子液电渗力发展的行为反应

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2022-07-21 DOI:10.1051/mmnp/2022030
S. Abdelsalam, A. Z. Zaher
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引用次数: 39

摘要

本研究的目的是对电渗力对精子在整个宫颈管中游动的影响进行理论研究。为了模仿具有自推进精子的男性精液,使用双曲正切流体作为基础液体。游动的精子在有纤毛的宫颈管内移动,蠕动是由于有纤毛的壁而发生的。用摄动方法解析求解控制偏微分方程组。由于游泳者的自我推进和长波假设,整个溪流都采用了爬行流协议。流模式、速度分布和压力梯度(游泳板上方和下方)解决方案将与相关参数一起生成和显示。本文的结果表明,双曲正切流体的流变参数更适合于模拟和讨论宫颈液的运动。此外,粘液速度的运动性更适用于推进精子上层的幂律指数n值较小的情况。此外,随着电渗参数和Helmholtz-Smoluchowski速度的增加,两个区域(游泳板的上部和下部区域)的粘液速度都会增加。
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On Behavioral Response of Ciliated Cervical Canal on the Development of Electroosmotic Forces in Spermatic Fluid
The goal of this research is to conduct a theoretical investigation about the effect of the electroosmotic forces on the swimming of sperms throughout the cervical canal. To imitate male semen with self-propulsive spermatozoa, a hyperbolic tangent fluid is used as the base liquid. Swimming sperms move inside a ciliated cervical canal and peristalsis occurs due to the ciliated walls. The perturbation method is used to solve the controlling partial differential set of equations analytically. Due to self-propulsion of swimmers and long wavelength assumption, a creeping flow protocol is used throughout the stream. The stream pattern, velocity distribution, and pressure gradient (above and below the swimming sheet) solutions are produced and displayed with the relevant parameters. The outcomes of this manuscript show that the rheological parameters of hyperbolic tangent fluid are more appropriate to simulate and discuss the motility of cervical fluid. Moreover, the motility of mucus velocity is more applicable for small values of power law index n at the upper swimming sheet of propulsive spermatozoa. In addition, the mucus velocity increases in both region (upper and lower region of swimming sheet) with an increase of the electroosmotic parameter  and Helmholtz-Smoluchowski velocity .
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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