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instantaneous and equilibrium responses of the brain tissue by stress relaxation and quasi-linear viscoelasticity theory
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نویسنده
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hosseini-farid m. ,rezaei a. ,eslaminejad a. ,ramzanpour m. ,ziejewski m. ,karami g.
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منبع
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scientia iranica - 2019 - دوره : 26 - شماره : 4-A - صفحه:2047 -2056
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چکیده
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Human brain and brainstem tissues have viscoelastic characteristics and their behaviours are functions of strains, as well as strain rates. determination of the equilibrium and instantaneous stresses happening at low and high strain rates provide insights into a better understanding of the behaviour of such tissues. in this manuscript we present the results of a series of stress relaxation tests, at six different values of strains conducted on porcine brainstem tissue samples to indirectly measure the equilibrium and instantaneous stresses. the equilibrium stresses at low strain rates are measured from longterm responses of the stress relaxation test. the instantaneous stresses at high strain rates are determined using quasilinear viscoelasticity (qlv) theory at six strains. the results show that the instantaneous stresses are much larger (almost 11 times) than the equilibrium stresses and across all the strains. it can be concluded that the instantaneous response can be reasonably estimated from the longterm response which can be easily measured experimentally. the experimental results also show that the reduced relaxation moduli, estimated from the qlv theory, vary for the six strains tested.
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کلیدواژه
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quasi-linear viscoelasticity theory ,brain response ,brainstem tissue ,stress relaxation test ,instantaneous response ,long term stress
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آدرس
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north dakota state university, department of mechanical engineering, usa, mayo clinic, department of physiology and biomedical engineering, usa, north dakota state university, department of mechanical engineering, usa, north dakota state university, department of mechanical engineering, usa, north dakota state university, department of mechanical engineering, usa, north dakota state university, department of mechanical engineering, usa
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پست الکترونیکی
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g.karami@ndsu.edu
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Authors
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