Zhao Yunmei, Siri Saeed, Feng Bin, Pierce David M
Department of Biomedical Engineering, University of Connecticut, Storrs, CT 06269, USA.
Department of Mechanical Engineering, University of Connecticut, Storrs, CT 06269, USA.
Bioengineering (Basel). 2020 Nov 25;7(4):152. doi: 10.3390/bioengineering7040152.
Abnormal colorectal biomechanics and mechanotransduction associate with an array of gastrointestinal diseases, including inflammatory bowel disease, irritable bowel syndrome, diverticula disease, anorectal disorders, ileus, and chronic constipation. Visceral pain, principally evoked from mechanical distension, has a unique biomechanical component that plays a critical role in mechanotransduction, the process of encoding mechanical stimuli to the colorectum by sensory afferents. To fully understand the underlying mechanisms of visceral mechanical neural encoding demands focused attention on the macro- and micro-mechanics of colon tissue. Motivated by biomechanical experiments on the colon and rectum, increasing efforts focus on developing constitutive frameworks to interpret and predict the anisotropic and nonlinear biomechanical behaviors of the multilayered colorectum. We will review the current literature on computational modeling of the colon and rectum as well as the mechanical neural encoding by stretch sensitive afferent endings, and then highlight our recent advances in these areas. Current models provide insight into organ- and tissue-level biomechanics as well as the stretch-sensitive afferent endings of colorectal tissues yet an important challenge in modeling theory remains. The research community has not connected the biomechanical models to those of mechanosensitive nerve endings to create a cohesive multiscale framework for predicting mechanotransduction from organ-level biomechanics.
异常的结直肠生物力学和机械转导与一系列胃肠道疾病相关,包括炎症性肠病、肠易激综合征、憩室病、肛肠疾病、肠梗阻和慢性便秘。内脏痛主要由机械扩张引起,具有独特的生物力学成分,在机械转导中起关键作用,机械转导是感觉传入神经将机械刺激编码到结直肠的过程。要全面理解内脏机械神经编码的潜在机制,需要重点关注结肠组织的宏观和微观力学。受结肠和直肠生物力学实验的推动,越来越多的努力集中在开发本构框架,以解释和预测多层结直肠的各向异性和非线性生物力学行为。我们将回顾关于结肠和直肠计算建模以及拉伸敏感传入末梢的机械神经编码的当前文献,然后突出我们在这些领域的最新进展。当前模型提供了对器官和组织水平生物力学以及结直肠组织拉伸敏感传入末梢的见解,但建模理论中仍存在一个重要挑战。研究界尚未将生物力学模型与机械敏感神经末梢的模型联系起来,以创建一个连贯的多尺度框架,用于从器官水平生物力学预测机械转导。