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Ferdinando A. Mussa-Ivaldi
ResearcherPublications, citations & collaboration network
Ferdinando A. Mussa-Ivaldi is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 198 works, 10,068 citations, an h-index of 47 and an i10-index of 113.
198
Works
10,068
Citations
47
h-index
113
i10-index
IDs:OpenAlex
How has Ferdinando A. Mussa-Ivaldi's publication output changed over time?
ScholarIQpublication output · 1991–2010
Output grew0% over the shown period — from 1 works in 1991 to 1 in 2010.
1
1
1
1
1
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1
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1
1991199219941996199720002001200420052010
What are the most-cited papers on Ferdinando A. Mussa-Ivaldi?
ScholarIQmost cited works
Computations Underlying the Execution of Movement: A Biological Perspective
Emilio Bizzi, Ferdinando A. Mussa-Ivaldi, Simon F. Giszter
Science. 1991691 Citations
Motor learning by field approximation.
F. Gandolfo, Ferdinando A. Mussa-Ivaldi, Emilio Bizzi
Proceedings of the National Academy of Sciences. 1996502 CitationsOPEN ACCESS
Evaluation of robotic training forces that either enhance or reduce error in chronic hemiparetic stroke survivors
James L. Patton, Mary Ellen Stoykov, Mark Kovic, Ferdinando A. Mussa-Ivaldi
S45281609. 2005471 Citations
Does the nervous system use equilibrium-point control to guide single and multiple joint movements?
Emilio Bizzi, N. Hogan, Ferdinando A. Mussa-Ivaldi, Simon F. Giszter
S59628311. 1992466 Citations
Linear combinations of primitives in vertebrate motor control.
Ferdinando A. Mussa-Ivaldi, S.F. Giszter, Emilio Bizzi
Proceedings of the National Academy of Sciences. 1994446 CitationsOPEN ACCESS
Related on ScholarIQ
Northwestern University
Institution
Computations Underlying the Execution of Movement: A Biological Perspective
Paper
Motor learning by field approximation.
Paper
Evaluation of robotic training forces that either enhance or reduce error in chronic hemiparetic stroke survivors
Paper
Does the nervous system use equilibrium-point control to guide single and multiple joint movements?
Paper
Linear combinations of primitives in vertebrate motor control.
Paper