Bhandari, AjayMukharjee, SiddharthaKumar, AnandSingh, AnupZhan, Wenbo2024-03-092024-03-092023-07Bhandari, A, Mukharjee, S, Kumar, A, Singh, A & Zhan, W 2023, 'Highlighting the effect of heterogeneous blood perfusion on radio-frequency ablation of human brain tumors : An image-based numerical investigation', International Journal of Thermal Sciences, vol. 189, 108283. https://doi.org/10.1016/j.ijthermalsci.2023.1082831290-0729ORCID: /0000-0003-0268-5042/work/132961268https://hdl.handle.net/2164/22945Ajay Bhandari would like to acknowledge the support received by a grant from the Science and Engineering Research Board (Grant Number: SRG/2021/000053). Wenbo Zhan acknowledges the support received from the Royal Society of Edinburgh (Grant Number: SAPHIRE-2999). Both authors would like to acknowledge the support received from the Royal Society (Grant Number: IES\R1\221015). Anup Singh acknowledges the support received from Science and Engineering Research Board (Grant Number: CRG/2019/005032).243682199engSDG 3 - Good Health and Well-beingRFAHeterogeneous blood perfusionDCE-MRIAblation VolumeHuman TumorsR MedicineOtherSAPHIRE-2999IES\R1\221015RHighlighting the effect of heterogeneous blood perfusion on radio-frequency ablation of human brain tumors : An image-based numerical investigationJournal article10.1016/j.ijthermalsci.2023.108283189