Design and testing of a percutaneously implantable fetal pacemaker GE Loeb, L Zhou, K Zheng, A Nicholson, RA Peck, A Krishnan, M Silka, ... Annals of biomedical engineering 41, 17-27, 2013 | 32 | 2013 |
Accelerated life-test methods and results for implantable electronic devices with adhesive encapsulation X Huang, PM Denprasert, L Zhou, AN Vest, S Kohan, GE Loeb Biomedical Microdevices 19, 1-12, 2017 | 29 | 2017 |
Preclinical testing and optimization of a novel fetal micropacemaker Y Bar-Cohen, GE Loeb, JD Pruetz, MJ Silka, C Guerra, AN Vest, L Zhou, ... Heart Rhythm 12 (7), 1683-1690, 2015 | 26 | 2015 |
Design and testing of a transcutaneous RF recharging system for a fetal micropacemaker AN Vest, L Zhou, X Huang, V Norekyan, Y Bar-Cohen, RH Chmait, ... IEEE transactions on biomedical circuits and systems 11 (2), 336-346, 2017 | 21 | 2017 |
Epicardial lead design Y Bar-Cohen, G Loeb, L Zhou, R Peck, S Nutt US Patent 11,020,588, 2021 | 16 | 2021 |
Minimally invasive implantation of a micropacemaker into the pericardial space Y Bar-Cohen, MJ Silka, AC Hill, JD Pruetz, RH Chmait, L Zhou, SM Rabin, ... Circulation: Arrhythmia and Electrophysiology 11 (7), e006307, 2018 | 16 | 2018 |
A percutaneously implantable fetal pacemaker L Zhou, AN Vest, RH Chmait, Y Bar-Cohen, J Pruetz, M Silka, K Zheng, ... 2014 36th Annual International Conference of the IEEE Engineering in …, 2014 | 13 | 2014 |
Minimally invasive implantable fetal micropacemaker: mechanical testing and technical refinements GEL Zhou, Li, Adriana Nicholson Vest, Raymond A. Peck, Jonathan P. Sredl ... Medical & biological engineering & computing, 1-12, 2016 | 8* | 2016 |
Percutaneously injectable fetal pacemaker: electrodes, mechanical design and implantation L Zhou, R Chmait, Y Bar-Cohen, RA Peck, GE Loeb 2012 Annual International Conference of the IEEE Engineering in Medicine and …, 2012 | 7 | 2012 |
Analytical modeling for computing lead stress in a novel epicardial micropacemaker L Zhou, Y Bar-Cohen, RA Peck, GV Chirikian, B Harwin, RH Chmait, ... Cardiovascular engineering and technology 8, 96-105, 2017 | 4 | 2017 |
Glucose sensor identification using electrical parameters E Gee, F Piccinini, L Zhou, CA Tran, F Batmanghelich, L Nava-Guerra, ... US Patent App. 17/365,803, 2023 | 1 | 2023 |
Miniaturized noninvasive glucose sensor and continuous glucose monitoring system L Zhou, RM Russell, P Schultz US Patent App. 17/734,245, 2022 | 1 | 2022 |
Miniaturized noninvasive glucose sensor and continuous glucose monitoring system L Zhou, RM Russell, P Schultz, AM Patel, C Chen, R Malekmadani, L To, ... US Patent App. 16/942,719, 2020 | 1 | 2020 |
Miniaturized noninvasive glucose sensor and continuous glucose monitoring system L Zhou, RM Russell, P Schultz US Patent App. 16/274,082, 2020 | 1 | 2020 |
A novel method to estimate safety factor of capture by a fetal micropacemaker AN Vest, L Zhou, Y Bar-Cohen, GE Loeb Physiological measurement 37 (7), 1172, 2016 | 1 | 2016 |
Miniaturized noninvasive glucose sensor and continuous glucose monitoring system L Zhou, RM Russell, P Schultz, AM Patel, C Chen, R Malekmadani, L To, ... US Patent 12,082,910, 2024 | | 2024 |
Epicardial lead design Y Bar-Cohen, G Loeb, L Zhou, R Peck, S Nutt US Patent App. 18/234,269, 2024 | | 2024 |
Epicardial lead design Y Bar-Cohen, G Loeb, L Zhou, R Peck, S Nutt US Patent 11,724,104, 2023 | | 2023 |
Implanted electrical lead for pacemaker Y Bar-Cohen, G Loeb, L Zhou, X Yun US Patent 11,376,424, 2022 | | 2022 |
Implanted electrical lead for pacemaker Y Bar-Cohen, G Loeb, L Zhou, YUN Xiao | | 2016 |