J Brandon Dixon

Affiliations: 
Mechanical Engineering Georgia Institute of Technology, Atlanta, GA 
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Cribb MT, Sestito LF, Rockson SG, et al. (2021) The Kinetics of Lymphatic Dysfunction and Leukocyte Expansion in the Draining Lymph Node during LTB Antagonism in a Mouse Model of Lymphedema. International Journal of Molecular Sciences. 22
Razavi MS, Leonard-Duke J, Hardie B, et al. (2020) Axial stretch regulates rat tail collecting lymphatic vessel contractions. Scientific Reports. 10: 5918
Nelson TS, Nepiyushchikh Z, Hooks JST, et al. (2019) Lymphatic remodelling in response to lymphatic injury in the hind limbs of sheep. Nature Biomedical Engineering
Weiler MJ, Cribb MT, Nepiyushchikh Z, et al. (2019) A novel mouse tail lymphedema model for observing lymphatic pump failure during lymphedema development. Scientific Reports. 9: 10405
Hooks JST, Clement CC, Nguyen HD, et al. (2018) In-vitro model reveals a role for mechanical stretch in the remodeling response of lymphatic muscle cells. Microcirculation (New York, N.Y. : 1994). e12512
Ballard M, Wolf KT, Nepiyushchikh Z, et al. (2018) Probing the effect of morphology on lymphatic valve dynamic function. Biomechanics and Modeling in Mechanobiology
Tian W, Rockson SG, Jiang X, et al. (2017) Leukotriene B4 antagonism ameliorates experimental lymphedema. Science Translational Medicine. 9
Srinivasan S, Su M, Ravishankar S, et al. (2017) TLR-exosomes exhibit distinct kinetics and effector function. Scientific Reports. 7: 41623
Srinivasan S, Vannberg FO, Dixon JB. (2016) Lymphatic transport of exosomes as a rapid route of information dissemination to the lymph node. Scientific Reports. 6: 24436
Caulk AW, Dixon JB, Gleason RL. (2016) A lumped parameter model of mechanically mediated acute and long-term adaptations of contractility and geometry in lymphatics for characterization of lymphedema. Biomechanics and Modeling in Mechanobiology
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