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人类子宫的生物力学

Biomechanics of the human uterus.

作者信息

Myers Kristin M, Elad David

机构信息

Department of Mechanical Engineering, Columbia University, New York, NY, USA.

Department of Biomedical Engineering, Tel Aviv University, Tel Aviv, Israel.

出版信息

Wiley Interdiscip Rev Syst Biol Med. 2017 Sep;9(5). doi: 10.1002/wsbm.1388. Epub 2017 May 12.

Abstract

The appropriate biomechanical function of the uterus is required for the execution of human reproduction. These functions range from aiding the transport of the embryo to the implantation site, to remodeling its tissue walls to host the placenta, to protecting the fetus during gestation, to contracting forcefully for a safe parturition and postpartum, to remodeling back to its nonpregnant condition to renew the cycle of menstruation. To serve these remarkably diverse functions, the uterus is optimally geared with evolving and contractile muscle and tissue layers that are cued by chemical, hormonal, electrical, and mechanical signals. The relationship between these highly active biological signaling mechanisms and uterine biomechanical function is not completely understood for normal reproductive processes and pathological conditions such as adenomyosis, endometriosis, infertility and preterm labor. Animal studies have illuminated the rich structural function of the uterus, particularly in pregnancy. In humans, medical imaging techniques in ultrasound and magnetic resonance have been combined with computational engineering techniques to characterize the uterus in vivo, and advanced experimental techniques have explored uterine function using ex vivo tissue samples. The collective evidence presented in this review gives an overall perspective on uterine biomechanics related to both its nonpregnant and pregnant function, highlighting open research topics in the field. Additionally, uterine disease and infertility are discussed in the context of tissue injury and repair processes and the role of computational modeling in uncovering etiologies of disease. WIREs Syst Biol Med 2017, 9:e1388. doi: 10.1002/wsbm.1388 For further resources related to this article, please visit the WIREs website.

摘要

人类生殖过程需要子宫具备适当的生物力学功能。这些功能包括协助将胚胎输送至着床部位、重塑子宫组织壁以容纳胎盘、在妊娠期保护胎儿、在分娩和产后有力收缩以确保安全、重塑回非妊娠状态以重启月经周期。为实现这些极为多样的功能,子宫具备由化学、激素、电和机械信号调控的、不断进化且具有收缩功能的肌肉和组织层。对于正常生殖过程以及诸如子宫腺肌病、子宫内膜异位症、不孕症和早产等病理状况而言,这些高度活跃的生物信号传导机制与子宫生物力学功能之间的关系尚未完全明确。动物研究揭示了子宫丰富的结构功能,尤其是在妊娠期间。在人类中,超声和磁共振等医学成像技术已与计算工程技术相结合,以在体内对子宫进行表征,先进的实验技术已使用离体组织样本探究子宫功能。本综述中呈现的综合证据给出了与子宫非妊娠和妊娠功能相关的子宫生物力学的整体观点,突出了该领域尚未解决的研究课题。此外,还在组织损伤和修复过程以及计算建模在揭示疾病病因中的作用的背景下讨论了子宫疾病和不孕症。《WIREs系统生物学与医学》2017年,9:e1388。doi:10.1002/wsbm.1388 有关本文的更多资源,请访问WIREs网站。

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