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In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise
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S. Bozkurt And U. E. Ayten, "In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise," MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING , vol.60, no.7, pp.1863-1879, 2022

Bozkurt, S. And Ayten, U. E. 2022. In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise. MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING , vol.60, no.7 , 1863-1879.

Bozkurt, S., & Ayten, U. E., (2022). In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise. MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING , vol.60, no.7, 1863-1879.

Bozkurt, Surhan, And Umut Engin AYTEN. "In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise," MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING , vol.60, no.7, 1863-1879, 2022

Bozkurt, Surhan And Ayten, Umut E. . "In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise." MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING , vol.60, no.7, pp.1863-1879, 2022

Bozkurt, S. And Ayten, U. E. (2022) . "In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise." MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING , vol.60, no.7, pp.1863-1879.

@article{article, author={Surhan Bozkurt And author={Umut Engin AYTEN}, title={In silico simulation of the interaction among autoregulatory mechanisms regulating cerebral blood flow rate in the healthy and systolic heart failure conditions during exercise}, journal={MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING}, year=2022, pages={1863-1879} }