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Sri Kamal Kandala
Sri Kamal Kandala
Associate, McKinsey & Co.
Verified email at mdanderson.org
Title
Cited by
Cited by
Year
Magnetic nanoparticle hyperthermia enhances radiation therapy: A study in mouse models of human prostate cancer
A Attaluri, SK Kandala, M Wabler, H Zhou, C Cornejo, M Armour, ...
International Journal of Hyperthermia 31 (4), 359-374, 2015
1422015
Nanoparticle interactions with immune cells dominate tumor retention and induce T cell–mediated tumor suppression in models of breast cancer
P Korangath, JD Barnett, A Sharma, ET Henderson, J Stewart, SH Yu, ...
Science advances 6 (13), eaay1601, 2020
1302020
Experimental estimation and analysis of variance of the measured loss power of magnetic nanoparticles
F Soetaert, SK Kandala, A Bakuzis, R Ivkov
Scientific reports 7 (1), 6661, 2017
842017
Temperature-controlled power modulation compensates for heterogeneous nanoparticle distributions: a computational optimization analysis for magnetic hyperthermia
SK Kandala, E Liapi, LL Whitcomb, A Attaluri, R Ivkov
International Journal of Hyperthermia, 2018
442018
Magnetic nanoparticle hyperthermia for treating locally advanced unresectable and borderline resectable pancreatic cancers: The role of tumor size and eddy-current heating
A Attaluri, SK Kandala, H Zhou, M Wabler, TL DeWeese, R Ivkov
International Journal of Hyperthermia 37 (3), 108-119, 2020
302020
Increased uptake of doxorubicin by cells undergoing heat stress does not explain its synergistic cytotoxicity with hyperthermia
A Sharma, S Özayral, JS Caserto, R Ten Cate, NM Anders, JD Barnett, ...
International Journal of Hyperthermia 36 (1), 711-719, 2019
232019
Design and construction of a Maxwell-type induction coil for magnetic nanoparticle hyperthermia
A Attaluri, J Jackowski, A Sharma, SK Kandala, V Nemkov, C Yakey, ...
International journal of hyperthermia 37 (1), 1-14, 2020
212020
Validation of a coupled electromagnetic and thermal model for estimating temperatures during magnetic nanoparticle hyperthermia
SK Kandala, A Sharma, S Mirpour, E Liapi, R Ivkov, A Attaluri
International Journal of Hyperthermia 38 (1), 611-622, 2021
182021
Simulation of discrete blood vessel effects on the thermal signature of a melanoma lesion
SK Kandala, D Deng, C Herman
ASME International Mechanical Engineering Congress and Exposition 56222 …, 2013
92013
A compressed sensing approach to immobilized nanoparticle localization for superparamagnetic relaxometry
SL Thrower, SK Kandala, D Fuentes, W Stefan, N Sowko, M Huang, ...
Physics in Medicine & Biology 64 (19), 194001, 2019
22019
A preprocessing filter to improve superparamagnetic relaxometry (SPMR)-based early tumor detection
M Baqri, S Kandala, D Fuentes
CANCER RESEARCH 80 (11), 70-70, 2020
2020
Abstract B31: A preprocessing filter to improve superparamagnetic relaxometry (SPMR)-based early tumor detection
M Baqri, S Kandala, D Fuentes
Cancer Research 80 (11_Supplement), B31-B31, 2020
2020
Comparison of Two Reconstruction Methods for Bound-Nanoparticle Detection Using Superparamagnetic Relaxometry
S Thrower, S Kandala, D Fuentes, K Mathieu, W Stefan, A Kulp, J Hazle
MEDICAL PHYSICS 45 (6), E371-E371, 2018
2018
Simulation Based Strategies for Clinical Translation of Magnetic Nanoparticle Hyperthermia
SK Kandala
The Johns Hopkins University, 2017
2017
Simulation of magnetic nanoparticle hyperthermia in prostate tumor models
SK Kandala, A Attaluri, J Wang, M Wabler, M Armour, H Zhou, C Cornejo, ...
32nd Annual Meeting of the Society for Thermal Medicine, FRI 24, 2015
2015
Experimental analysis of amplitude-and frequency-dependent specific loss power measurements of magnetic nanoparticles
F Soetaert, SK Kandala, G Crevecoeur, L Dupré, R Ivkov
32nd Annual Meeting of the Society for Thermal Medicine, 2015
2015
SU‐E‐J‐34: Influence of Prone versus Supine Patient Position on Localization with Image Guided Radiotherapy of Prostate Cancer
N Sheth, S Kandala, Y Chen, C Yang
Medical Physics 39 (6Part6), 3660-3660, 2012
2012
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