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Original Research
Alireza Sharifi*, Mohammad Charjouei Moghadam
Bioimpacts. 2016;6(1): 41-47. doi: 10.15171/bi.2016.06
PMCID: PMC4916545     PMID: 27340623     Scopus ID: 84977137837    
Original Research
Zahra Hajati ORCID, Farhad Sadegh Moghanlou* ORCID, Mohammad Vajdi ORCID, Seyed Esmail Razavi, Somaieh Matin ORCID
Bioimpacts. 2020;10(3): 169-175. doi: 10.34172/bi.2020.21
PMCID: PMC7416012     PMID: 32793439     Scopus ID: 85078309726    
The blood flow around a venous valve was investigated numerically. The leaflets were considered as hyperelastic material. The simulation gives detailed information about the blood and leaflets behavior which can be used in treatment of vein diseases.
Original Research
Seyed Mehdi Kamali Shahri ORCID, Christian Contarino, Francesco Chifari, Morteza Mahmoudi*, Simon Gelman* ORCID
BioImpacts. 2021;11(2): 157-164. doi: 10.34172/bi.2021.13
PMCID: PMC8022231     PMID: 33842286     Scopus ID: 85106926234    
The behavior of vasculature was mathematically examined in conditions of eliminated cardiac function. Results show vein responses slower than artery in simulated cardiac arrest due to different intrinsic characteristics. Additionally, the stretch-recoil capability of the vein found important in blood displacement.


As a peer-reviewed international open-access journal, BioImpacts publishes articles on basic and translational aspects of pharmaceutical and biomedical sciences. 
Acceptance rate: 24% 
Publication fee: Free of charge