class='kwd-title'>Method name: Tensile testing f'/> Development of tensile strength methodology for murine skin wound healing
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Development of tensile strength methodology for murine skin wound healing

机译:拉伸强度方法在小鼠皮肤伤口愈合中的发展

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摘要

class="kwd-title">Method name: Tensile testing for murine skin wound class="kwd-title">Keywords: Tensile strength, Wound repair, Murine skin, Biomechanical test class="head no_bottom_margin" id="abs0010title">AbstractIn this study, a methodology was evaluated and improved to quickly measure the tensile strength of murine skin in a biomechanical assay for an incisional wound healing model. The aim was to streamline and enhance the wound model, skin specimen preparation, and tensile test so that large numbers of fresh tissue could be tested reliably and rapidly. Linear incisions of 25-mm length were made in the dorsal skin of mice along the spine and metallic staples were used to close the wound. After 20 days, the mice were sacrificed, and a square-shaped section of skin containing the linear incision was excised. Two metallic punches were fabricated and used to punch 15-mm long strips of skin of 2 mm width whose length was orthogonal to the direction of incision. The tensiometer configuration was modified to expedite tensile measurements on fresh skin, and load-to-failure was measured for each strip of skin from the cephalad to the caudal region. We evaluated sources of error in the animal model and the testing protocol and developed procedures to maximize speed and reproducibility in tensile strength measurements. This report provides guidance for efficient and reproducible tensile strength measurement of large numbers of skin specimens from freshly sacrificed animals. class="first-line-outdent" id="lis0005">
  • • Tattoo placement to identify the two ends of the healing incisional wound assisted in decreasing error in the position and orientation of tensile strips.
  • • Custom-made punches to prepare skin strips for tensile testing helped conduct tensile tests of fresh tissue rapidly.
  • • Alteration of the manual grips of the tensile tester enabled specimens to be gripped rapidly to significantly accelerate testing for each skin strip.
  • 机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>方法名称:鼠类皮肤伤口的拉伸测试 class =“ kwd-title”>关键字:抗张强度,伤口修复,小鼠皮肤,生物力学测试 class =“ head no_bottom_margin” id =“ abs0010title”>摘要在这项研究中,评估并改进了一种方法,可快速测量鼠的抗张强度皮肤进行生物力学测定以建立切口伤口愈合模型。目的是简化和增强伤口模型,皮肤样本制备和拉伸测试,以便可以可靠,快速地测试大量新鲜组织。沿着脊柱在小鼠的背部皮肤上切成25毫米长的线性切口,并使用金属钉闭合伤口。 20天后,处死小鼠,并切下包含线性切口的皮肤的矩形部分。制造了两个金属冲头,用于冲制15mm长,宽度为2 mm的皮肤条,其长度与切口方向正交。修改了张力计的配置,以加快对新鲜皮肤的拉伸测量,并测量了从头足到尾巴区域的每条皮肤的断裂载荷。我们评估了动物模型和测试规程中的误差源,并开发了程序以最大化拉伸强度测量的速度和可重复性。这份报告为有效,可重复地测量来自新鲜处死动物的大量皮肤样本的拉伸强度提供了指导。 class =“ first-line-outdent” id =“ lis0005”> <!-list-behavior = simple prefix- word = mark-type = none max-label-size = 9->
  • •纹身放置以识别切开愈合的伤口的两端,有助于减少拉伸条的位置和方向的误差
  • •定制冲头以准备用于拉伸测试的皮条有助于快速进行新鲜组织的拉伸测试。
  • •手动握紧拉力测试仪可快速抓取标本,从而显着加快每个皮条的测试速度。
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