Lecturer
- About
-
- Email Address
- w.zhan@abdn.ac.uk
- Office Address
R353, Fraser Noble Building
School of Engineering
King's College
University of Aberdeen
Aberdeen AB24 3UE, UK
- School/Department
- School of Engineering
Biography
Wenbo Zhan is a Lecturer in Biomedical Engineering in the School of Engineering. He received his undergraduate degrees from Xi’an Jiaotong University in 2008 and a master degree from Harbin Institute of Technology in 2010. He graduated from Imperial College London with his PhD degree in 2014 and then worked as a project consultant at Imperial College London and a postdoctoral research fellow at the National University of Singapore until 2016. Prior to joining the University of Aberdeen in 2019, he was a research associate at Imperial College London.
Qualifications
- PhD Chemical Engineering2014 - Imperial College London
- MSc Thermal Energy and Power Engineering2010 - Harbin Institute of Technology
- BEng Thermal Energy and Power Engineering2008 - Xi'an Jiaotong University
- BEc Finance2008 - Xi'an Jiaotong Univerisity
External Memberships
- Editorial Board member of Scientific Reports, 07/2026-present
- Editorial Advisory Board member of Pharmaceutical Research, 12/2022-present
- Member of European Society of Biomechanics
- Research
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Research Overview
Dr Zhan's research centres on biomedical engineering. He develops multiphysics and AI-enabled models to study fluid and tissue mechanics and transport processes in biological and physiological systems, with an emphasis on revealing the biophysical mechanisms underlying disease progression and on developing personalised medicine and precision therapy.
- Mass transfer in biological systems, focusing on advanced drug delivery systems and modalities
- Biofluid mechanics, including haemodynamics and fluid transport in tissues
- Tissue mechanics, with applications to soft biological tissues and disease modelling
- Image-based modelling, integrating medical imaging with physics-based modelling approaches
Funding and Grants
- Injectable thermosensitive hydrogel for controlled drug release targeting resected glioblastoma, The Royal Society, PI (01/10/2024-30/09/2026)
- HyWay: Hydrogen production from waste, European Union & EPSRC, Co-I (15/04/2024-14/04/2028)
- Evaluation and optimisation of thermosensitive hydrogel for controllable drug delivery against brain tumour, The Royal Society of Edinburgh, PI (01/02/2023-30/09/2023)
- Image-based modelling and optimisation of convection-enhanced delivery for combination therapy against heterogeneous human brain tumour, The Royal Society, PI (12/08/2022-11/08/2024)
- Gender differences in sex hormone transport in abdominal aortic aneurysm, The Royal Society, PI (31/03/2022-30/03/2024)
- Optimisation of infusion catheter posture for improving convection-enhanced drug delivery to brain cancer, Children with Cancer UK – Children's Brain Tumour Drug Delivery Consortium, PI (01/03/2022-30/09/2022)
- Porescale modelling of drug transport in brain tumours, University of Aberdeen School of Engineering PhD studentship, PI (01/09/2021-31/08/2024)
- Nanoparticle-embedded membranes for long-term bioactive SARS-CoV2 prevention, Grampian University Hospitals NHS Trust, Co-I (01/04/2021-31/03/2023)
- Multifunctional liquid crystals stabilised by hydrogen-bonding and their integration in new devices for energy harvesting, conversion and storage, The Royal Society of Edinburgh, Co-I (23/10/2020-30/12/2021)
- Teaching
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Teaching Responsibilities
Module coordinator
- EG20H7 - Fluid Mechanics 1
- EG30H3 - Fluid Mechanics 2
- EG555L - Modelling of Biological Systems
Module contributor
- EG55M1/6E - Finite Element Methods
Previously delivered modules
- EG504Q - Introduction to Engineering for Life Scientists
- EG555J - Research Methods for Bioengineers
- EG4578 - BEng Group Design Project (Chemical Engineering)
- EG5565 - MEng Group Design Project (Chemical & Mechanical Engineering)
- Publications
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Page 3 of 10 Results 21 to 30 of 99
A Computational Framework for Mechanically Controlled Brain Drug Delivery
Contributions to Conferences: Oral PresentationsA novel regional-minima image segmentation method for fluid transport simulations in unresolved rock images
Water Resources Research, vol. 60, no. 6, e2023WR036855Contributions to Journals: ArticlesPore-Scale Analysis of Fluid Transport in Different Grades of Brain Tumours Considering the Effect of Extracellular Matrix
Interpore2024Contributions to Conferences: Posters- [ONLINE] Book of abstracts
Pore-Scale Modelling of Non-Linear Rock Deformation under Low Stress Ranges
Contributions to Conferences: Oral Presentations- [ONLINE] Book of Abstracts
Numerical simulation of transdermal delivery of drug nanocarriers using solid microneedles and medicated adhesive patch
International Journal of Heat and Mass Transfer, vol. 223, 125291Contributions to Journals: ArticlesInvestigating Charged Nanoparticles Diffusion in Brain Tumour Microstructures at Pore Scale
Contributions to Conferences: Oral Presentations- [ONLINE] Conference programme
Elucidating the Effect of Zeta Potential and Particle Size on Nanoparticle Diffusion in Brain Tumours
29th Congress of the European Society of BiomechanicsContributions to Conferences: PostersRadiopharmaceutical transport in solid tumors via a 3-dimensional image-based spatiotemporal model
npj Systems Biology and Applications, vol. 10, 39Contributions to Journals: Articles- [ONLINE] DOI: https://doi.org/10.1038/s41540-024-00362-4
- [OPEN ACCESS] http://aura.abdn.ac.uk/bitstreams/d7cb5ec9-29d1-4416-9434-23f3228ae331/download
- [ONLINE] View publication in Scopus
Decoding the effect of different tumor heterogeneities on thermosensitive liposome drug delivery during radiofrequency ablation: A novel heat and mass transfer perspective
International Communications in Heat and Mass Transfer, vol. 153, 107390Contributions to Journals: Articles- [ONLINE] DOI: https://doi.org/10.1016/j.icheatmasstransfer.2024.107390
Mathematical modelling of microneedle-mediated transdermal delivery of drug nanocarriers into skin tissue and circulatory system
Journal of Controlled Release, vol. 360, pp. 447-467Contributions to Journals: Articles