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Toward Elucidating the Physiological Impacts of Residual Stresses in the Colorectum
- Source :
- J Biomech Eng
- Publication Year :
- 2021
- Publisher :
- ASME International, 2021.
-
Abstract
- Irritable bowel syndrome afflicts 10–20% of the global population, causing visceral pain with increased sensitivity to colorectal distension and normal bowel movements. Understanding and predicting these biomechanics will further advance our understanding of visceral pain and complement the existing literature on visceral neurophysiology. We recently performed a series of experiments at three longitudinal segments (colonic, intermediate, and rectal) of the distal 30 mm of colorectums of mice. We also established and fitted constitutive models addressing mechanical heterogeneity in both the through-thickness and longitudinal directions of the colorectum. Afferent nerve endings, strategically located within the submucosa, are likely nociceptors that detect concentrations of mechanical stresses to evoke the perception of pain from the viscera. In this study, we aim to: (1) establish and validate a method for incorporating residual stresses into models of colorectums, (2) predict the effects of residual stresses on the intratissue mechanics within the colorectum, and (3) establish intratissue distributions of stretches and stresses within the colorectum in vivo. To these ends we developed two-layered, composite finite element models of the colorectum based on our experimental evidence and validated our approaches against independent experimental data. We included layer- and segment-specific residual stretches/stresses in our simulations via the prestrain algorithm built into the finite element software febio. Our models and modeling approaches allow researchers to predict both organ and intratissue biomechanics of the colorectum and may facilitate better understanding of the underlying mechanical mechanisms of visceral pain.
- Subjects :
- Colon
Finite element software
business.industry
Rectum
Biomedical Engineering
Biomechanics
Visceral pain
Visceral Pain
Neurophysiology
Research Papers
digestive system diseases
Biomechanical Phenomena
Mice
Mechanobiology
Global population
Residual stress
Physiology (medical)
medicine
Animals
Stress, Mechanical
medicine.symptom
business
Neuroscience
Colorectal distension
Subjects
Details
- ISSN :
- 15288951 and 01480731
- Volume :
- 144
- Database :
- OpenAIRE
- Journal :
- Journal of Biomechanical Engineering
- Accession number :
- edsair.doi.dedup.....7092df88e0d5b8b8ed994a8db522a03b