Biomedical Engineering Reference
In-Depth Information
———. 1993a. Novel applications of ionic polymeric gels as smart materials and artificial
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———. 1993b. Microelectro-mechanics of ionic polymeric gels as artificial muscles for
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———. 1993c. Nonhomogenous large deformation theory of ionic polymeric gels in electric
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———. 1993d. Electro-mechanics of bending of ionic polymeric gels as synthetic muscles
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———. 1994a. Micro-electro-mechanics of ionic polymeric gels as electrically controllable
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———. 1994b. Electro-mechanics of resilient contractile fiber bundles with applications to
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———. 1994c. Design and modeling of a novel spring-loaded ionic polymeric gel actuator.
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———. 1994d. Microelectro-mechanics of ionic polymeric gel as synthetic robotic muscles.
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———. 1994e. Continuum electromechanics of ionic polymeric gels as artificial muscles for
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———. 1994f. Micro-electro-mechanics of ionic polymeric gels as electrically controlled
synthetic muscles. In Biomedical engineering recent advances , vol 1, ed. J. Vossoughi.
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———. 1995a. A new effect in ionic polymeric gels: The ionic flexogelectric effect. In
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———. 1995b. Active polyelectrolyte gels as electrically controllable artificial muscles an
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———. 1995c. Spring-loaded ionic polymeric gel linear actuator. Owner: U.S. Department
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———. 1995d. Design, modeling and fabrication of micro-robotic actuators with ionic
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———. 1995e. Micro-electro-mechanics of ionic polymeric gels as electrically controllable
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———. 1995f. Design and development of micro-actuators using ionic polymeric micro-
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———. 1996a. Intelligent materials and structures revisited. In Proceedings of SPIE confer-
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———. 1996b. Ionic polymeric gels as artificial muscles for robotic and medical applications.
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