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Balakrishnan Sivaraman
Balakrishnan Sivaraman
Abbott MCS (formerly Thoratec)
Verified email at thoratec.com - Homepage
Title
Cited by
Cited by
Year
The relationship between platelet adhesion on surfaces and the structure versus the amount of adsorbed fibrinogen
B Sivaraman, RA Latour
Biomaterials 31 (5), 832-839, 2010
3502010
Investigation of the effects of surface chemistry and solution concentration on the conformation of adsorbed proteins using an improved circular dichroism method
B Sivaraman, KP Fears, RA Latour
Langmuir 25 (5), 3050-3056, 2009
1582009
The adherence of platelets to adsorbed albumin by receptor-mediated recognition of binding sites exposed by adsorption-induced unfolding
B Sivaraman, RA Latour
Biomaterials 31 (6), 1036-1044, 2010
1492010
Multifunctional nanoparticles for doxycycline delivery towards localized elastic matrix stabilization and regenerative repair
B Sivaraman, A Ramamurthi
Acta biomaterialia 9 (5), 6511-6525, 2013
742013
Delineating the roles of the GPIIb/IIIa and GP-Ib-IX-V platelet receptors in mediating platelet adhesion to adsorbed fibrinogen and albumin
B Sivaraman, RA Latour
Biomaterials 32 (23), 5365-5370, 2011
722011
Probing the conformation and orientation of adsorbed enzymes using side-chain modification
KP Fears, B Sivaraman, GL Powell, Y Wu, RA Latour
Langmuir 25 (16), 9319-9327, 2009
662009
Time-dependent conformational changes in adsorbed albumin and its effect on platelet adhesion
B Sivaraman, RA Latour
Langmuir 28 (5), 2745-2752, 2012
602012
Advances in biomimetic regeneration of elastic matrix structures
B Sivaraman, CA Bashur, A Ramamurthi
Drug Delivery and Translational Research 2 (5), 323-350, 2012
442012
Magnetically-responsive, multifunctional drug delivery nanoparticles for elastic matrix regenerative repair
B Sivaraman, G Swaminathan, L Moore, J Fox, D Seshadri, S Dahal, ...
Acta Biomaterialia 52, 171-186, 2017
412017
Nanoparticles for localized delivery of hyaluronan oligomers towards regenerative repair of elastic matrix
A Sylvester, B Sivaraman, P Deb, A Ramamurthi
Acta biomaterialia 9 (12), 9292-9302, 2013
372013
Nanoparticulate delivery of agents for induced elastogenesis in three‐dimensional collagenous matrices
L Venkataraman, B Sivaraman, P Vaidya, A Ramamurthi
Journal of tissue engineering and regenerative medicine 10 (12), 1041-1056, 2016
202016
Ultrasonic processing of single-walled carbon nanotube–glucose oxidase conjugates: interrelation of bioactivity and structure
A Guiseppi-Elie, SH Choi, KE Geckeler, B Sivaraman, RA Latour
NanoBiotechnology 4, 9-17, 2008
152008
Magnetically responsive bone marrow mesenchymal stem cell-derived smooth muscle cells maintain their benefits to augmenting elastic matrix neoassembly
G Swaminathan, B Sivaraman, L Moore, M Zborowski, A Ramamurthi
Tissue Engineering Part C: Methods 22 (4), 301-311, 2016
132016
Fibrinolytic PLGA nanoparticles for slow clot lysis within abdominal aortic aneurysms attenuate proteolytic loss of vascular elastic matrix
B Sivaraman, A Sylvester, A Ramamurthi
Materials Science and Engineering: C 59, 145-156, 2016
112016
Mathematical and Computational Modeling: Towards the Development and Application of Nanodevices for Drug Delivery
JP Sinek, HB Frieboes, B Sivaraman, S Sanga, V Cristini
Nanotechnologies for the Life Sciences, 2, 2006
102006
Growth Factor Delivery Matrices for Cardiovascular Regeneration
B Sivaraman, A Ramamurthi
Biomaterials for Cardiac Regeneration, 159-214, 2014
22014
Localized therapeutic delivery from multifunctional magnetic nanoparticles for elastic matrix stabilization and repair
B Sivaraman, G Howard, A Ramamurthi
Society for Biomaterials, Abstract 613, 2014
22014
Biomolecular Regulation of Elastic Matrix Regeneration and Repair
G Swaminathan, B Sivaraman, A Ramamurthi
Elastic Fiber Matrices: Biomimetic Approaches to Regeneration and Repair …, 2016
12016
Probing the mechanisms of platelet adhesion to adsorbed plasma proteins
B Sivaraman
Clemson University, 2010
12010
Nanoparticles for stimulating elastogenesis
A Ramamurthi, B Sivaraman
US Patent App. 16/411,927, 2019
2019
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