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兔阴道与腹部手术伤口愈合的生物力学特征

Biomechanical characterization of vaginal versus abdominal surgical wound healing in the rabbit.

作者信息

Abramov Yoram, Webb Antonio R, Miller Jay-James R, Alshahrour Adeeb, Botros Sylvia M, Goldberg Roger P, Ameer Guillermo A, Sand Peter K

机构信息

Division of Urogynecology, Evanston Continence Center, Evanston, IL 60201, USA.

出版信息

Am J Obstet Gynecol. 2006 May;194(5):1472-7. doi: 10.1016/j.ajog.2006.01.063.

Abstract

OBJECTIVE

The objective of the study was to compare biomechanical properties of vaginal versus abdominal surgical wound healing in the rabbit.

STUDY DESIGN

Bilateral 6-mm full-thickness circular segments were excised from the vagina and abdominal skin in 38 New Zealand White female rabbits. Animals were killed 0, 4, 7, 10, 14, 21, 28, and 35 days after wounding, and the wounds were assessed for surface area and tensile properties.

RESULTS

Wound closure and scar contraction were significantly faster in the vagina than the abdomen (P = .001). Baseline tensile strength (P = .05), modulus (P = .001), and tensile energy to break (P = .18) were higher in the abdomen, whereas maximal tissue elongation was higher in the vagina (P = .13). After wounding, a drop in tensile strength, modulus, and tensile energy to break was observed in both tissues through postwounding day 4, followed by a progressive recovery of these properties. A progressive loss of elasticity was noted in both tissues after wounding.

CONCLUSION

The surgical wound closes and contracts faster in the rabbit vagina than in its abdomen. Although these tissues have different biomechanical properties at baseline, they regenerate their tensile strength and lose their elasticity at a similar rate.

摘要

目的

本研究的目的是比较兔阴道与腹部手术伤口愈合的生物力学特性。

研究设计

从38只新西兰白兔的阴道和腹部皮肤切除双侧6毫米全层圆形组织块。在受伤后0、4、7、10、14、21、28和35天处死动物,并评估伤口的表面积和拉伸特性。

结果

阴道伤口的闭合和瘢痕收缩明显比腹部快(P = .001)。腹部的基线抗张强度(P = .05)、模量(P = .001)和断裂拉伸能量(P = .18)较高,而阴道的最大组织伸长率较高(P = .13)。受伤后,两种组织在伤后第4天均观察到抗张强度、模量和断裂拉伸能量下降,随后这些特性逐渐恢复。受伤后两种组织均出现弹性逐渐丧失。

结论

兔阴道手术伤口的闭合和收缩比腹部快。虽然这些组织在基线时具有不同的生物力学特性,但它们以相似的速率恢复抗张强度并丧失弹性。

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