Prof. Sachin Goyal
Department of Mechanical Engineering
University of California, USA
Associate Professor
Email: [email protected]
Qualifications
2006 Ph.D., University
of Michigan, Mechanical Engineering and Scientific
Computing
1997 B.Sc., Banaras Hindu University, Mechanical
Engineering
Publications (Selected)
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N'Guessan, J. E., Ahmed, M. H., Leineweber, M., & Goyal, S. (2024). Piloting a Novel Computational Framework for Identifying Prosthesis‐Specific Contributions to Gait Deviations. International Journal for Numerical Methods in Biomedical Engineering, 40(12), e3876.
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Shah, V. V., Jadav, S., Goyal, S., & Palanthandalam-Madapusi, H. J. (2023). A Machine-Learning-Based Method to Detect Degradation of Motor Control Stability with Implications to Diagnosis of Presymptomatic Parkinson’s Disease: A Simulation Study. Applied Sciences, 13(17), 9502.
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Escalona, J. L., Goyal, S., Serban, R., & Tai, W. C. (2022). Selected Papers From 2021 IDETC-CIE MSND Conference. Journal of Computational and Nonlinear Dynamics, 17(5), 050301.
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Mortazavi, M., Ayyaswamy, V., Gopinath, A., & Goyal, S. (2021, November). Fluid-structure interaction of slender biofilaments at low Reynolds numbers. In ASME International Mechanical Engineering Congress and Exposition (Vol. 85666, p. V010T10A043). American Society of Mechanical Engineers.
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Fatehiboroujeni, S., Gopinath, A., & Goyal, S. (2021). Three-dimensional nonlinear dynamics of prestressed active filaments: Flapping, swirling, and flipping. Physical Review E, 103(1), 013005.
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Fatehiboroujeni, S., Petra, N., & Goyal, S. (2020). Linearized Bayesian inference for Young’s modulus parameter field in an elastic model of slender structures. Proceedings of the Royal Society A, 476(2238), 20190476.
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Mishra, A., Hemeda, A., Torabi, M., Palko, J., Goyal, S., Li, D., & Ma, Y. (2019). A simple analytical model of complex wall in multibody dissipative particle dynamics. Journal of Computational Physics, 396, 416-426.
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Fatehiboroujeni, S., Gopinath, A., & Goyal, S. (2018). Nonlinear oscillations induced by follower forces in prestressed clamped rods subjected to drag. Journal of Computational and Nonlinear Dynamics, 13(12), 121005.
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Fatehiboroujeni, S., Palanthandalam-Madapusi, H. J., & Goyal, S. (2018). Computational rod model with user-defined nonlinear constitutive laws. Journal of Computational and Nonlinear Dynamics, 13(10), 101006.
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Sarkar-Banerjee, S., Goyal, S., Gao, N., Mack, J., Thompson, B., Dunlap, D., ... & Finzi, L. (2018). Specifically bound lambda repressor dimers promote adjacent non-specific binding. Plos one, 13(4), e0194930.
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Shah, V. V., Goyal, S., & Palanthandalam-Madapusi, H. J. (2017). A possible explanation of how high-frequency deep brain stimulation suppresses low-frequency tremors in Parkinson’s disease. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 25(12), 2498-2508.
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Shah, V. V., Goyal, S., & Palanthandalam-Madapusi, H. J. (2017). Clinical facts along with a feedback control perspective suggest that increased response time might be the cause of parkinsonian rest tremor. Journal of Computational and Nonlinear Dynamics, 12(1), 011007.
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Fatehiboroujeni, S., Petra, N., & Goyal, S. (2016, August). Towards adjoint-based inversion of the Lamé parameter field for slender structures with cantilever loading. In International Design Engineering Technical Conferences and Computers and Information in Engineering Conference (Vol. 50206, p. V008T10A031). American Society of Mechanical Engineers.
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Shah, V. V., Goyal, S., & Palanthandalam-Madapusi, H. J. (2016, January). A perspective on the use of high-frequency stimulation in deep brain stimulation for Parkinson's disease. In 2016 Indian Control Conference (ICC) (pp. 19-24). IEEE.
Profile Details
https://orcid.org/0000-0002-6490-7555
https://me.ucmerced.edu/content/sachin-goyal
https://scholar.google.com/citations?hl=en&user=quDdSegAAAAJ
https://www.researchgate.net/profile/Sachin-Goyal-10