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Robert Gaul
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Collagen fibre orientation and dispersion govern ultimate tensile strength, stiffness and the fatigue performance of bovine pericardium
A Whelan, J Duffy, RT Gaul, D O’reilly, DR Nolan, P Gunning, C Lally
Journal of the mechanical behavior of biomedical materials 90, 54-60, 2019
682019
Collagen fibre characterisation in arterial tissue under load using SALS
RT Gaul, DR Nolan, C Lally
Journal of the mechanical behavior of biomedical materials 75, 359-368, 2017
462017
An investigation into the critical role of fibre orientation in the ultimate tensile strength and stiffness of human carotid plaque caps
RD Johnston, RT Gaul, C Lally
Acta Biomaterialia 124, 291-300, 2021
342021
Changes in inferior vena cava area represent a more sensitive metric than changes in filling pressures during experimental manipulation of intravascular volume and tone
JB Ivey‐Miranda, F Wetterling, R Gaul, S Sheridan, JL Asher, VS Rao, ...
European journal of heart failure 24 (3), 455-462, 2022
242022
Strain mediated enzymatic degradation of arterial tissue: insights into the role of the non-collagenous tissue matrix and collagen crimp
RT Gaul, DR Nolan, T Ristori, CVC Bouten, S Loerakker, C Lally
Acta Biomaterialia 77, 301-310, 2018
222018
Quantifying the ultrastructure of carotid arteries using high-resolution micro-diffusion tensor imaging—Comparison of intact versus open cut tissue
SS Shahid, RT Gaul, C Kerskens, V Flamini, C Lally
Physics in Medicine & Biology 62 (23), 8850, 2017
192017
Safety and performance of a novel implantable sensor in the inferior vena cava under acute and chronic intravascular volume modulation
WS Sheridan, F Wetterling, JM Testani, BA Borlaug, M Fudim, K Damman, ...
European Journal of Heart Failure 25 (5), 754-763, 2023
142023
Mechanical characterization and modeling of the porcine cerebral meninges
B Pierrat, L Carroll, F Merle, DB MacManus, R Gaul, C Lally, MD Gilchrist, ...
Frontiers in Bioengineering and Biotechnology 8, 801, 2020
132020
The use of small angle light scattering in assessing strain induced collagen degradation in arterial tissue ex vivo
RT Gaul, DR Nolan, C Lally
Journal of Biomechanics 81, 155-160, 2018
112018
Pressure-induced collagen degradation in arterial tissue as a potential mechanism for degenerative arterial disease progression
RT Gaul, DR Nolan, T Ristori, CVC Bouten, S Loerakker, C Lally
Journal of the Mechanical Behavior of Biomedical Materials 109, 103771, 2020
102020
Exploring arterial tissue microstructural organization using non-Gaussian diffusion magnetic resonance schemes
SS Shahid, RD Johnston, C Smekens, C Kerskens, R Gaul, B Tornifoglio, ...
Scientific Reports 11 (1), 22247, 2021
72021
Strain Mediated Enzyme Degradation of Arterial Tissue; Implications in Disease and Medical Device Design
R Gaul, C Lally
Summer Biomechanics, Bioengineering and Biotransport Conference, 2017
22017
Ex-vivo arterial collagen fibre tractography using micro diffusion tensor imaging
SS Shahid, C Kerskens, R Gaul, V Flamini, C Lally
ESMRMB 2016, 33rd Annual Scientific Meeting, Vienna, AT, September 29 …, 2016
22016
Fundamental Insights Into Arterial Remodelling; Strain-Mediated Degradation of Arterial Collagen
RT Gaul
Ph. D. thesis, 2019
12019
Multistranded Conductors Adapted To Dynamic In Vivo Environments
G Robert, F Sweeney, S Sheridan, A Hughes, J Tucker, S Quinlan
US Patent App. 18/698,255, 2024
2024
A short-term decellularisation technique for porcine carotid arteries that conveys a structural stimulus to cells
E Fitzpatrick, R Gaul, C Smekens, P Mathieu, B Meehan, B Tornifoglio, ...
bioRxiv, 2022.06. 28.497956, 2022
2022
Ex-Vivo Arterial Collagen Fibre Tractography Using Micro-diffusion Tensor Imaging (µ-DTI)
SS Shahid, C Kerskens, R Gaul, V Flamini, C Lally
Degradation of arterial collagen with applied strain: critical influence of matrix content and collagen crimp
R Gaul, D Nolan, T Ristori, S Loerakker, C Bouten
THE AUTOMATED CHARACTERISATION OF COLLAGEN FIBRE ORIENTATION IN ARTERIES USING SMALL ANGLE LIGHT SCATTERING
R Gaul, T Sinnott, C Lally
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
Artículos 1–19