Bradley J. Nelson
Affiliations: | 1995-1998 | University of Illinois at Chicago, Chicago, IL, United States | |
1998-2002 | University of Minnesota, Twin Cities, Minneapolis, MN | ||
2002- | Mechanical and Process Engineering | Eidgenössische Technische Hochschule Zürich, Zürich, ZH, Switzerland |
Area:
Robotics and Intelligent SystemsWebsite:
https://www.ethz.ch/en/utils/search.html?persid=108136&pagetype=people&search=Brad+nelsonGoogle:
"Bradley Nelson"Bio:
https://www.mavt.ethz.ch/the-department/people/person-detail.html?persid=108136
http://www.msrl.ethz.ch/the-lab/team/Brad_Nelson.html
https://ch.linkedin.com/pub/brad-nelson/11/625/983
http://www.ri.cmu.edu/ri_alumni.html?menu_id=258&grad_year=1995&program_type=1
Bradley Nelson, Object Schemas and Port-based Agents for Assimilating Disparate Sensory Feedback, doctoral dissertation, tech. report , , Carnegie Mellon University, August, 1995
Mean distance: 14.69
Cross-listing: Robotree
Parents
Sign in to add mentorPradeep K. Khosla | grad student | 1995 | Carnegie Mellon | |
(Object Schemas and Port-based Agents for Assimilating Disparate Sensory Feedback) |
Children
Sign in to add traineeBarmeshwar Vikramaditya | grad student | 2001 | UMN |
Yu Sun | grad student | 2003 | UMN |
Kemal B. Yesin | grad student | 2003 | UMN |
Shan Guan | grad student | 2004 | UMN |
Ge Yang | grad student | 2004 | UMN |
Michael A. Greminger | grad student | 2005 | UMN |
Ahmet S. Sezen | grad student | 2006 | UMN |
Karl E. Vollmers | grad student | 2008 | UMN |
Michael Flueckiger | grad student | 2004-2009 | (Robotree) |
Zoltan Nagy | grad student | 2006-2011 | ETH Zürich (Robotree) |
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Publications
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Terzopoulou A, Wang X, Chen XZ, et al. (2020) Biodegradable Metal-Organic Framework-Based Microrobots (MOFBOTs). Advanced Healthcare Materials. e2001031 |
Hong A, Petruska A, Zemmar A, et al. (2020) Magnetic Control of a Flexible Needle in Neurosurgery. Ieee Transactions On Bio-Medical Engineering |
Charreyron SL, Boehler Q, Danun A, et al. (2020) A Magnetically Navigated Microcannula for Subretinal Injections. Ieee Transactions On Bio-Medical Engineering |
Burri JT, Munglani G, Nelson BJ, et al. (2020) Quantification of Mechanical Forces and Physiological Processes Involved in Pollen Tube Growth Using Microfluidics and Microrobotics. Methods in Molecular Biology (Clifton, N.J.). 2160: 275-292 |
Gu H, Boehler Q, Cui H, et al. (2020) Magnetic cilia carpets with programmable metachronal waves. Nature Communications. 11: 2637 |
Krenger R, Burri JT, Lehnert T, et al. (2020) Force microscopy of the embryonic eggshell. Microsystems & Nanoengineering. 6: 29 |
Bonilla-Brunner A, Llorente García I, Jang B, et al. (2020) Polymeric microellipsoids with programmed magnetic anisotropy for controlled rotation using low (≈10 mT) magnetic fields Applied Materials Today. 18: 100511 |
Cui J, Huang TY, Luo Z, et al. (2019) Nanomagnetic encoding of shape-morphing micromachines. Nature. 575: 164-168 |
Puigmarti-Luis J, Terzopoulou A, Hoop M, et al. (2019) Mineralization-inspired synthesis of magnetic zeolitic imidazole framework composites. Angewandte Chemie (International Ed. in English) |
Iacovacci V, Blanc A, Huang H, et al. (2019) High-Resolution SPECT Imaging of Stimuli-Responsive Soft Microrobots. Small (Weinheim An Der Bergstrasse, Germany). e1900709 |