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Research
Latest papers
The Contributions of Extracellular Matrix and Sarcomere Properties to Passive Muscle Stiffness in Cerebral Palsy.
Frontiers in physiology · 2021
The Energy of Muscle Contraction. III. Kinetic Energy During Cyclic Contractions.
Frontiers in physiology · 2021
Modelling extracellular matrix and cellular contributions to whole muscle mechanics.
PloS one · 2021
Latest funding
- $245,072
Muscle design for optimal movement
SSHRC · 2023 · Co-investigator
- $252,000
Numerical analysis and high-accuracy algorithms for scattering, spectra, and interdisciplinary applications.
NSERC · 2019 · Principal investigator
- $210,000
""Fast and accurate structure-preserving algorithms in computational scattering, and interdisciplinary modeling and simulation""
NSERC · 2012 · Principal investigator
9 publications.
The Contributions of Extracellular Matrix and Sarcomere Properties to Passive Muscle Stiffness in Cerebral Palsy.
Konno RN, Nigam N, Wakeling JM, Ross SA
The Energy of Muscle Contraction. III. Kinetic Energy During Cyclic Contractions.
Ross SA, Domínguez S, Nigam N, Wakeling JM
Modelling extracellular matrix and cellular contributions to whole muscle mechanics.
Konno RN, Nigam N, Wakeling JM
The Energy of Muscle Contraction. II. Transverse Compression and Work.
Ryan DS, Domínguez S, Ross SA, Nigam N, Wakeling JM
The Energy of Muscle Contraction. I. Tissue Force and Deformation During Fixed-End Contractions.
Wakeling JM, Ross SA, Ryan DS, Bolsterlee B, Konno R, Domínguez S, Nigam N
Size, History-Dependent, Activation and Three-Dimensional Effects on the Work and Power Produced During Cyclic Muscle Contractions.
Ross SA, Ryan DS, Dominguez S, Nigam N, Wakeling JM
A modelling approach for exploring muscle dynamics during cyclic contractions.
Ross SA, Nigam N, Wakeling JM
The effect of intramuscular fat on skeletal muscle mechanics: implications for the elderly and obese.
Rahemi H, Nigam N, Wakeling JM
Regionalizing muscle activity causes changes to the magnitude and direction of the force from whole muscles-a modeling study.
Rahemi H, Nigam N, Wakeling JM
Muscle design for optimal movement
Principal investigators: Wakeling, James
Numerical analysis and high-accuracy algorithms for scattering, spectra, and interdisciplinary applications.
Principal investigators: Nigam, Nilima
Keywords: boundary integral methods; computational scattering; eigenvalue problems; finite element methods; muscle mechanics; spectral geometry; spectral optimization; structure-preserving discretizations
""Fast and accurate structure-preserving algorithms in computational scattering, and interdisciplinary modeling and simulation""
Principal investigators: Nigam, Nilima
WAVES 2011
Principal investigators: Nigam, Nilima
Canada Research Chair in Applied Mathematics
Principal investigators: Nigam, Nilima
Keywords: CRC
Fast algorithms in computational scattering, and interdisciplinary modeling and simulation
Principal investigators: Nigam, Nilima
Fast algorithms in computational scattering, and interdisciplinary modeling and simulation
Principal investigators: Nigam, Nilima
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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