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Richard R. Neptune

ResearcherPublications, citations & collaboration network

Richard R. Neptune is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 236 works, 17,042 citations, an h-index of 75 and an i10-index of 159.

236
Works
17,042
Citations
75
h-index
159
i10-index

How has Richard R. Neptune's publication output changed over time?

ScholarIQpublication output · 2000–2009

Output grew100% over the shown period — from 1 works in 2000 to 2 in 2009.

1
1
1
2
1
1
3
2
20002001200220032006200720082009

What are the most-cited papers on Richard R. Neptune?

ScholarIQmost cited works
Contributions of the individual ankle plantar flexors to support, forward progression and swing initiation during walking
Richard R. Neptune, Steven A. Kautz, Felix E. Zajac
Journal of Biomechanics. 20011,125 Citations
Merging of Healthy Motor Modules Predicts Reduced Locomotor Performance and Muscle Coordination Complexity Post-Stroke
David J. Clark, Lena H. Ting, Felix E. Zajac, Richard R. Neptune, Steven A. Kautz
S142952003. 2009896 Citations
Biomechanics and muscle coordination of human walking
Felix E. Zajac, Richard R. Neptune, Steven A. Kautz
S156006901. 2002621 Citations
Relationship Between Step Length Asymmetry and Walking Performance in Subjects With Chronic Hemiparesis
Chitralakshmi K. Balasubramanian, Mark G. Bowden, Richard R. Neptune, Steven A. Kautz
Archives of Physical Medicine and Rehabilitation. 2007459 Citations
Modular control of human walking: A simulation study
Richard R. Neptune, David J. Clark, Steven A. Kautz
Journal of Biomechanics. 2009420 CitationsOPEN ACCESS

Related on ScholarIQ

Walker (United States)
Institution
Contributions of the individual ankle plantar flexors to support, forward progression and swing initiation during walking
Paper
Merging of Healthy Motor Modules Predicts Reduced Locomotor Performance and Muscle Coordination Complexity Post-Stroke
Paper
Biomechanics and muscle coordination of human walking
Paper
Relationship Between Step Length Asymmetry and Walking Performance in Subjects With Chronic Hemiparesis
Paper
Modular control of human walking: A simulation study
Paper
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