Optimization of pulse train duration for the electrical stimulation of a skeletal muscle ventricle in the dog

Author:

Badylak Stephen F.,Wessale Jerry E.,Geddes Leslie A.,Janas Wolfgang

Publisher

Springer Science and Business Media LLC

Subject

Biomedical Engineering

Reference34 articles.

1. Acker, M.A.; Hammond, R.L.; Mannion, J.D.; Salmons, S.; Stephenson, L.W. An autologous biologic pump motor. J. Thorac. Cardiovasc. Surg. 92:733–746; 1986.

2. Armenti, F.; Bitto, T.; Macoviak, J.A.; et al. Transformation of canine diaphragm to fatigue-resistant muscle by phrenic nerve stimulation. Surgical Forum 35:258–260; 1984.

3. Badylak, S.F.; Stevens, L.; Janas, W.; et al. Cardiac assistance with electrically stimulated skeletal muscle. Med. Biol. Eng. Comput. 27:159–162; 1989.

4. Badylak, S.F.; Hinds, M.; Geddes, L.A. Comparison of three methods of electrical stimulation for converting skeletal muscle to a fatigue resistant power source suitable for cardiac assistance. Ann. Biomed. Eng. 18(3):239–250; 1990.

5. Bitto, T.; Armenti, F.; Hoffman, R.K.; Stephenson, L.W.; Macoviak, J.A. Time course of transformation of dog diaphragm muscle with continuous low frequency stimulation at 10 Hz and 2 Hz Proceedings of Second Vienna Muscle Symposium, Vienna, Austria; pp. 175–179; 1985.

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