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Unexpected anisotropic behavior of ultrasound attenuation after collagen cross-linking in porcine tendons

机译:胶原腱交联后超声衰减的意想不到的各向异性行为

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Progressive collagen cross-linking is a feature of many cardiovascular conditions (e.g., aging, diabetes, remodeling) and may contribute to impaired ventricular relaxation. However, it is not known whether cross-linking affects anisotropic tissue material properties more in one direction than another. We hypothesized that biological tissue comprising a highly ordered collagen matrix (porcine tendon) would manifest a directional dependence of the physical effects of cross-links that could be quantitatively delineated with ultrasound. Fresh porcine flexor tendons were sliced in 2-mm planes parallel (n=7) and perpendicular (n=7) to the tissue fiber axis for attenuation measurements (1-7 MHz). Tendons subjected to cross-linking treatment were immersed in 10% formalin, and control tendons in normal saline solution. Attenuation measurements were made immediately after immersion for both tendon groups at numerous intervals for 1 hr. The attenuation coefficient of the samples insonified perpendicular to the collagen fibers increased after formalin fixation over 1-hr period, while attenuation for parallel measurements decreased at selected frequencies during the first 20 mm and subsequently increased modestly by 1 hr. Although the molecular mechanism responsible for the unexpected decrease in attenuation in the parallel direction as compared with the increase in the perpendicular direction is not clear, it may reflect rapid alterations in directionally dependent viscous and/or elastic components that contribute to material properties of well-ordered biological tissues.
机译:进步胶原交联是许多心血管条件的特征(例如,老化,糖尿病,重塑)并且可能有助于室性弛豫受损。然而,尚不知道交联在一个方向上比另一个方向更加影响各向异性组织材料的特性。我们假设包含高度有序的胶原基质(猪肌腱)的生物组织将表现出可以用超声定量描绘的交联的交联物理效应的定向依赖性。将新鲜的猪屈曲肌腱在2mm平面平行(n = 7)中切割,并向组织纤维轴线垂直(n = 7)以进行衰减测量(1-7MHz)。对其进行交联处理的肌腱浸入10%福尔马林中,并在生理盐水溶液中的控制筋。在浸泡两种间隔后,立即进行衰减测量,以达到1小时。在福尔马林固定在1-HR期间,垂直于胶原纤维垂直于胶原纤维的衰减系数增加,而平行测量的衰减在前20mm期间在选定的频率下降低,随后均多为1小时。尽管与垂直方向的增加相比,负责在平行方向上衰减的意外降低的分子机制尚不清楚,但它可以反映有助于井的材料特性的定向依赖性粘性和/或弹性部件的快速改变有序的生物组织。

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