Papers

10

Total Citations

261

H-Index

6

About

Manisha Singh is a trailblazer at the intersection of soft robotics, biomedical engineering, and mechanoresponsive therapeutics. Her research focuses on developing biohybrid and implantable robotic systems that mimic, support, and repair dynamic cardiac and respiratory function. Singh’s most-cited work includes a flexible, tissue-adherent hybrid hydrogel actuator for mechanoresponsive drug delivery (56 citations), an organosynthetic dynamic heart model guided by cardiac diffusion tensor imaging (55 citations), and an implantable soft robotic ventilator that augments inspiration in a porcine model of respiratory insufficiency (47 citations). These contributions demonstrate her ability to translate complex physiological mechanics into high-fidelity benchtop simulators and therapeutic devices. Her soft robotic sleeve modeling left ventricular pressure overload (41 citations) and robotic right ventricle platform (27 citations) provide unprecedented tools for studying cardiovascular pathophysiology and testing interventions. Singh’s work has been published in top venues like *Advanced Materials* and *Nature Biomedical Engineering*, and her biorobotic hybrid heart simulator for mitral valve testing (24 citations) exemplifies her commitment to bridging engineering and clinical medicine. With over 260 cumulative citations and a rapidly growing portfolio, Singh is shaping the future of soft robotic medicine—offering transformative solutions for drug delivery, cardiac simulation, and respiratory support.

Research Focus

Key Achievements

6
H-Index
10
Papers
261
Total Citations
26
Avg Citations/Paper
🏆 Most Cited Paper
Mechanoresponsive Drug Release from a Flexible, Tissue‐Adherent, Hybrid Hydrogel Actuator
56 citations · 2023
📈 Most Prolific Year: 2023 (2 Papers)
🤝 Key Collaborators: 58
🏛 Institutions: Massachusetts Institute of Technology, Nanyang Technological University, Roche (United States)

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago