Avinash G. Patwardhan
University of Illinois at Chicago
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Featured researches published by Avinash G. Patwardhan.
Journal of Biomechanics | 1995
Siping Li; Avinash G. Patwardhan; Farid M.L. Amirouche; Robert M. Havey; Kevin P. Meade
The purpose of this study was to answer the following questions: (1) Can the standard linear solid model for viscoelastic material simulate the influence of disc level and degeneration on the ability of a disc to withstand prolonged loading and low-frequency vibration? (2) How well does the SLS model explain the relationship between the ability of a disc to resist prolonged loading and its ability to resist dynamic loads and dissipate energy when subjected to low-frequency vibration? Responses of human thoracic and lumbar discs were measured in axial compression under a constant load, and for cyclic deformations at three frequencies. Parameters of the SLS model for each disc were determined by a least-squares fit to the experimental creep response. The model was subsequently used to predict the discs response to cyclic deformations. The SLS model was able to qualitatively simulate the effects of disc level and degeneration on the ability of an intervertebral disc to resist both prolonged loading and low-frequency vibration. However, the model underestimated the stress relaxation, dynamic modulus and hysteresis of thoracic and lumbar discs subjected to low-frequency vibration. The SLS model was unable to explain the relationship between the ability of a disc to resist prolonged loading and its ability to resist dynamic loads and dissipate energy when subjected to low-frequency vibration. Although in the lumbar discs the steady-state predictions of the SLS model were significantly correlated to the experimental response, the strength of model predictions decreased with increasing frequency, particularly for hysteresis.
Archive | 1997
Maruti R. Gudavalli; James M. Cox; James A. Baker; Gregory D. Cramer; Avinash G. Patwardhan
Archive | 1998
Maruti R. Gudavalli; James M. Cox; Gregory D. Cramer; James A. Baker; Avinash G. Patwardhan
2001 ASME International Mechanical Engineering Congress and Exposition | 2001
Avinash G. Patwardhan; James Simonds; Alexander J. Ghanayem; Leonard I. Voronov; Arif Ali; Scott D. Hodges; Odysseas Paxinos; Robert M. Havey; Frank M. Phillips; Thomas M. Gavin; Kevin P. Meade
Archive | 2015
Maruti R. Gudavalli; Robert D. Vining; Stacie A. Salsbury; Lance Corber; Cynthia R. Long; Avinash G. Patwardhan; Christine Goertz
Archive | 2012
Peter A. Robertson; Parmenion P. Tsitsopoulos; Leonard I. Voronov; Robert M. Havey; Avinash G. Patwardhan
Archive | 2005
Michael Nicolakis; Mark Lorenz; Leonard I. Voronov; Michael R. Zindrick; Alexander J. Ghanayem; Robert M. Havey; Gerard Carandang; Mark Sartori; Ioannis N. Gaitanis; Stanley Fronczak; Avinash G. Patwardhan
Proceedings of the 2001 Bioengineering Conference | 2001
Avinash G. Patwardhan; Gerard Carandang; Alexander J. Ghanayem; Leonard I. Voronov; Robert M. Havey; Frank M. Phillips; Ben Cunningham; James Simonds; Kevin P. Meade; Tae Hong Lim; Thomas M. Gavin; Michael R. Zindrick
Advances in Bioengineering - 1999 (The ASME International Mechanical Engineering Congress and Exposition) | 1999
Robert M. Havey; Thomas M. Gavin; Avinash G. Patwardhan; Steven Pawelczak; Kamal Ibrahim
Advances in Bioengineering - 1999 (The ASME International Mechanical Engineering Congress and Exposition) | 1999
Maruti R. Gudavalli; Jerrilyn A. Backman; Steven J. Kirstukas; Anant V. Kadiyala; Avinash G. Patwardhan; Alexander J. Ghanayem