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Local elasticity imaging of vascular tissues using a tactile mapping system

机译:使用触觉映射系统对血管组织进行局部弹性成像

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摘要

This study aimed to map the elasticity of a natural artery at the micron level by using a tactile mapping system (TMS) that was recently developed for characterization of the stiffness of tissue slices. The sample used was a circumferential section (thickness, approximately 1 mm) of a small-caliber porcine artery (diameter, approximately 3 mm). Elasticity was measured with a probe of diameter 1 μm and a spatial resolution of 2 μm at a rate of 0.3 s per point, without significant sample invasion. Topographical measurements were also performed simultaneously. Wavy regions of high elasticity, layered in the circumferential direction, were measured at the tunica media, which was identified as an elastin-rich region. The Young’s modulus of the elastin-rich region in the media was 50.8 ± 13.8 kPa, and that of the elastin-rich region of the lamina elastica interna was 69.0 ± 12.8 kPa. Both these values were higher than the Young’s modulus of the other regions in the media, including smooth muscle cells and collagen fibrils (17.0 ± 9.0 kPa). TMS is simple and inexpensive to perform and allows observation of the distribution of the surface elastic modulus at the extracellular matrix level in vascular tissue. TMS is expected to be a powerful tool in evaluation of the maturation and degree of reconstruction in the development of tissue-engineered or artificial tissues and organs.
机译:这项研究旨在通过使用最近开发用于表征组织切片刚度的触觉标测系统(TMS)在微米水平上绘制自然动脉的弹性。所使用的样品是小口径猪动脉(直径,约3 mm)的圆周截面(厚度,约1 mm)。使用直径为1μm且空间分辨率为2μm的探针以每点0.3 s的速率测量弹性,而没有明显的样品侵入。地形测量也同时进行。在被确认为弹性蛋白丰富的区域的中膜介质上测量了沿周向分层的高弹性波浪状区域。培养基中富含弹性蛋白的区域的杨氏模量为50.8±13.8 kPa,内部弹力层的富含弹性蛋白的区域的杨氏模量为69.0±12.8 kPa。这两个值均高于培养基中其他区域的杨氏模量,包括平滑肌细胞和胶原纤维(17.0±9.0 kPa)。 TMS操作简单且成本低廉,并且可以观察血管组织中细胞外基质水平的表面弹性模量的分布。在组织工程或人工组织和器官的发育中,TMS有望成为评估成熟度和重建程度的有力工具。

著录项

  • 来源
    《Journal of Artificial Organs》 |2009年第1期|40-46|共7页
  • 作者单位

    Department of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Research Institute 5-7-1 Fujishiro-dai Suita Osaka 565-8565 Japan;

    College of Engineering Nihon University Fukushima Japan;

    College of Engineering Nihon University Fukushima Japan;

    College of Engineering Nihon University Fukushima Japan;

    College of Engineering Nihon University Fukushima Japan;

    Department of Cardiovascular Surgery Kyoto Prefectural University of Medicine Kyoto Japan;

    Department of Cardiovascular Surgery Kyoto Prefectural University of Medicine Kyoto Japan;

    Department of Bioengineering Advanced Medical Engineering Center National Cardiovascular Center Research Institute 5-7-1 Fujishiro-dai Suita Osaka 565-8565 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tactile mapping system; Elasticity; Vascular tissue; Mapping; Extracellular matrix;

    机译:触觉测绘系统;弹性;血管组织;映射;细胞外基质;

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