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首页> 外文期刊>Annals of the New York Academy of Sciences >In Vivo Characterization of the Mechanics of Human Uterine Cervices
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In Vivo Characterization of the Mechanics of Human Uterine Cervices

机译:人类子宫服务力学的体内表征

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摘要

The uterine cervix has to provide mechanical resistance to ensure a normal development of the fetus. This is guaranteed by the composition of its extracellular matrix, which functions as a fiber-reinforced composite. At term a complex remodeling process allows the cervical canal to open for birth. This remodeling is achieved by changes in the quality and quantity of collagen fibers and ground substance and their interplay, which influences the biomechanical behavior of the cervix but also contributes to pathologic conditions such as cervical incompetence (CI). We start by reviewing the anatomy and histological composition of the human cervix, and discuss its physiologic function and pathologic condition in pregnancy including biomechanical aspects. Established diagnostic methods on the cervix (palpation, endovaginal ultrasound) used in clinics as well as methods for assessment of cervical consistency (light-induced fluorescence, electrical current, and impedance) are discussed. We show the first clinical application of an aspiration device, which allows in vivo testing of the biomechanical properties of the cervix with the aim to establish the physiological biomechanical changes throughout gestation and to detect pregnant women at risk for CI. In a pilot study on nonpregnant cervices before and after hysterectomy we found no considerable difference in the biomechanical response between in vivo and ex vivo. An outlook on further clinical applications during pregnancy is presented.
机译:子宫颈必须提供机械抵抗力以确保胎儿的正常发育。这是通过其细胞外基质的组成来保证的,它起着纤维增强复合材料的作用。在学期中,复杂的重塑过程可使宫颈管开放供出生。这种重塑是通过改变胶原纤维和地面物质的质量和数量以及它们之间的相互作用来实现的,这不仅影响子宫颈的生物力学行为,而且还有助于改善诸如宫颈功能不全(CI)等病理状况。我们首先回顾人类子宫颈的解剖结构和组织学组成,并讨论其在怀孕期间的生理功能和病理状况,包括生物力学方面。讨论了已建立的临床上用于宫颈的诊断方法(触诊,阴道超声)以及评估宫颈一致性(光诱导的荧光,电流和阻抗)的方法。我们展示了抽吸装置的首次临床应用,该装置可对子宫颈的生物力学特性进行体内测试,目的是建立整个妊娠期的生理生物力学变化并检测有CI风险的孕妇。在子宫切除术前后非妊娠子宫颈的初步研究中,我们发现体内和离体之间的生物力学反应没有显着差异。提出了在怀孕期间进一步临床应用的前景。

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