Browsing by Author "GAUL, ROBERT"
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Collagen fibre characterisation in arterial tissue under load using SALS
GAUL, ROBERT; NOLAN, DAVID (2017)The collagen fibre architecture of arterial tissue is known to play a key role in its resultant mechanical behaviour, while maladaptive remodelling of this architecture may be linked to disease. Many of the techniques ... -
Degradation of arterial collagen with applied strain: critical influence of matrix content and collagen crimp
GAUL, ROBERT; NOLAN, DAVID; LALLY, CAITRIONA (2018) -
Fundamental Insights into Arterial Remodelling; Strain-Mediated Degradation of Arterial Collagen
GAUL, ROBERT (Trinity College Dublin. School of Engineering. Discipline of Mechanical & Manuf. Eng, 2019)Maladaptive remodelling of structurally significant collagen fibres in the arterial wall is believed to play a critical role in the development and progression of degenerative arterial disease. A greater understanding of ... -
Investigation of Collagen Fibre Orientation in Bovine Pericardium
WHELAN, ALISON; LALLY, CAITRIONA; GAUL, ROBERT (2017) -
Quantification of extracellular matrix components in arterial tissue using high-resolution micro diffusion tensor imaging
SHAHID, SYED; KERSKENS, CHRISTIAN; LALLY, CAITRIONA; GAUL, ROBERT (2017) -
Quantifying the ultrastructure of carotid artery using high-resolution micro-diffusion tensor imaging ? Comparison of intact vs. open cut tissue
GAUL, ROBERT; Kerskens, Christian; Lally, Caitriona (2017) -
Strain Mediated Arterial Degradation is Critically Influenced by Matrix Content and Collagen Crimp
GAUL, ROBERT; NOLAN, DAVID (2018) -
Strain mediated Enzymatic Degradation of arterial tissue: Insights into the role of the non-collagenous tissue matrix and collagen crimp
GAUL, ROBERT; Nolan, David; Lally, Caitriona (2018) -
The use of small angle light scattering in assessing strain induced collagen degradation in arterial tissue ex vivo
GAUL, ROBERT; Lally, Caitriona; Nolan, David (2018)Collagen is the predominant load bearing component in many soft tissues including arterial tissue and is therefore critical in determining the mechanical integrity of such tissues. Degradation of collagen fibres is ...