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Biomechanics and Biotransport Commons™
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- Adhesion strength (1)
- Ankle braces (1)
- Biaxial-stretching (1)
- Blebbistatin (1)
- Cell-cell contacts (1)
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- Contractility Inhibition (1)
- DNA sequencing (1)
- Electrokinetic transport (1)
- Finite Element modeling (1)
- Joint instability (1)
- Laminotomy (1)
- Lateral ligiment injury (1)
- Lumbar Spine Biomechanics (1)
- Myosin II (1)
- Nanofluidic devices (1)
- Spinal ligamentd (1)
- Subtalar joint (1)
- Translocation (1)
- Viscoelasticity (1)
Articles 1 - 5 of 5
Full-Text Articles in Biomechanics and Biotransport
Effect Of Moderate Decrease In Contractility On Epithelial Cell-Cell Contacts Under External Stretch, Saika Sharmin
Effect Of Moderate Decrease In Contractility On Epithelial Cell-Cell Contacts Under External Stretch, Saika Sharmin
Mechanical & Aerospace Engineering Theses & Dissertations
Epithelial tissues are characterized by extensive cell–cell contacts and often subject to stretch during normal function. Cell-cell contact adhesion strength maintains mechanical continuity from cell to cell. Mechanical forces exerted by cells via actomyosin contractility are known to strengthen cell-cell adhesions to a certain extent. While it is known that a large decrease in contractility causes cell-cell contact rupture due to weakened adhesions, it is unclear how a moderate reduction in contractility affects cell-cell junction stability. Here, we studied how a moderate inhibition of non-muscle myosin II (NMII) affects the integrity of epithelial cell-cell contacts, especially when subject to the …
Towards Improving Computational Modeling Of The Lumbar Spine - Impact Of Material Properties And Laminotomy On Spinal Biomechanics, Isaac K. Kumi
Towards Improving Computational Modeling Of The Lumbar Spine - Impact Of Material Properties And Laminotomy On Spinal Biomechanics, Isaac K. Kumi
Mechanical & Aerospace Engineering Theses & Dissertations
Spinal ligaments play a crucial role in maintaining the mechanical stability of the lumbar spine. These dense, collagenous tissues not only resist excessive motion but also distribute loads between spinal components to protect neural structures. Traditionally, the mechanical response of ligaments has been modeled using linear elastic assumptions, which treat the tissue as having a constant stiffness regardless of loading history. While this simplifies analysis, it fails to capture the time-dependent behaviors, such as creep, stress relaxation, and hysteresis, that are characteristic of biological tissues.
Viscoelastic modeling may provide a more physiologically accurate representation by incorporating both elastic and viscous …
Epithelial Sheet Response To External Stimuli, Yashar Bashirzadeh
Epithelial Sheet Response To External Stimuli, Yashar Bashirzadeh
Mechanical & Aerospace Engineering Theses & Dissertations
Mechanical communication of adherent cells with their micro-environment is mediated by cytoskeletal and adhesion proteins. These mechanical links aid tissues in maintaining their coherence in the context of the surrounding extra cellular matrix (ECM). Epithelial tissues exert force on the ECM through integrin-based junctions and maintain their coherency through E-cadherin-based cell-cell junctions while dynamically undergoing collective migration. Such a complex network of communication involving the cell cytoskeleton and adhesion proteins modulates the tissue's response to external cues. Two distinct forms of such external stimuli are those of electrical and mechanical origin.
Epithelial tissues quickly respond to physiologically relevant electric fields …
Subtalar Joint Instability: Diagnosis And Conservative Treatment, Julie Choisne
Subtalar Joint Instability: Diagnosis And Conservative Treatment, Julie Choisne
Mechanical & Aerospace Engineering Theses & Dissertations
Subtalar instability may be caused by various ligamentous injuries. Combined instability at the ankle and subtalar joint is not adequately diagnosed. Further, isolated subtalar instability is usually misdiagnosed which may lead to long term damage to the joint. Developing a non-invasive and clinically practical tool to diagnose subtalar joint instability would be an important asset. The ability of an ankle brace, a common treatment for hindfoot instability, to promote stability for the subtalar joint was not well established. The purposes of this study were to 1) assess the kinematics of the subtalar, ankle, and hindfoot in the presence of isolated …
Electrokinetic Transport Phenomena In Nanofluidic Devices, Mingkan Zhang
Electrokinetic Transport Phenomena In Nanofluidic Devices, Mingkan Zhang
Mechanical & Aerospace Engineering Theses & Dissertations
Nanofluidic devices have wide potential applications in biology, chemistry and medicine, and have been proven to be very valuable in sensing biological particles (e.g., DNA and proteins) due to their efficiency, sensitivity and portability. Electrokinetic control of ion, fluid, and particle transport by using only electric field is the most popular method employed in nanofluidic devices. A comprehensive understanding of the electrokinetic ion, fluid, and particle transport in nanofluidics is essential for developing nanofluidic devices for the detection of single molecules, such as the next generation nanopore-based DNA sequencing technology. This research explored numerical simulation of electrokinetic ion and fluid …