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Thiranja P Babarenda Gamage

Explore the profile of Thiranja P Babarenda Gamage including associated specialties, affiliations and a list of published articles. Areas
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Recent Articles
1.
Situ J, Buissink P, Mu A, Chung D, Finnegan R, Gamage T, et al.
Cancer Imaging . 2024 Jul; 24(1):97. PMID: 39080795
Background: The identification and assessment of sentinel lymph nodes (SLNs) in breast cancer is important for optimised patient management. The aim of this study was to develop an interactive 3D...
2.
Pan F, Khoo K, Maso Talou G, Song F, McGhee D, Doyle A, et al.
Clin Biomech (Bristol) . 2023 Dec; 111:106157. PMID: 38103526
Background: Predicting breast tissue motion using biomechanical models can provide navigational guidance during breast cancer treatment procedures. These models typically do not account for changes in posture between procedures. Difference...
3.
Gamage T, Elsayed A, Lin C, Wu A, Feng Y, Yu J, et al.
Annu Int Conf IEEE Eng Med Biol Soc . 2023 Dec; 2023:1-4. PMID: 38083471
Clinical translation of personalised computational physiology workflows and digital twins can revolutionise healthcare by providing a better understanding of an individual's physiological processes and any changes that could lead to...
4.
Dixon A, Richardson S, Suami H, Gamage T, Nielsen P, Reynolds H
Annu Int Conf IEEE Eng Med Biol Soc . 2023 Dec; 2023:1-4. PMID: 38082759
Lymphoedema is a debilitating disease that results in chronic swelling of a body region due to a dysfunctional lymphatic system. Since a cure is yet to be identified for this...
5.
Zhao D, Ferdian E, Maso Talou G, Quill G, Gilbert K, Wang V, et al.
Front Cardiovasc Med . 2023 Jan; 9:1016703. PMID: 36704465
Segmentation of the left ventricle (LV) in echocardiography is an important task for the quantification of volume and mass in heart disease. Continuing advances in echocardiography have extended imaging capabilities...
6.
Argus F, Zhao D, Gamage T, Nash M, Maso Talou G
Front Physiol . 2022 Nov; 13:1018134. PMID: 36439250
Computational physiological models continue to increase in complexity, however, the task of efficiently calibrating the model to available clinical data remains a significant challenge. One part of this challenge is...
7.
Kuruppu S, Cheng L, Nielsen P, Gamage T, Avci R, Angeli T, et al.
IEEE Trans Biomed Eng . 2021 Dec; 69(6):2077-2086. PMID: 34910629
Objective: To develop a method to quantify strain fields from in vivo intestinal motility recordings that mitigate accumulation of tracking error. Methods: The deforming geometry of the intestine in video...
8.
Maso Talou G, Gamage T, Nash M
Front Physiol . 2021 Nov; 12:732351. PMID: 34721062
The onset and progression of pathological heart conditions, such as cardiomyopathy or heart failure, affect its mechanical behaviour due to the remodelling of the myocardial tissues to preserve its functional...
9.
Wang Z, Wang V, Gamage T, Rajagopal V, Cao J, Nielsen P, et al.
Int J Numer Method Biomed Eng . 2020 Jan; 36(3):e3313. PMID: 31955509
Models of cardiac mechanics require a well-defined reference geometry from which deformations and hence myocardial strain and stress can be calculated. In the in vivo beating heart, the load-free (LF)...
10.
Parker M, Gamage T, HajiRassouliha A, Taberner A, Nash M, Nielsen P
Biomech Model Mechanobiol . 2019 Feb; 18(4):1031-1045. PMID: 30778884
Many computer vision algorithms have been presented to track surface deformations, but few have provided a direct comparison of measurements with other stereoscopic approaches and physics-based models. We have previously...