The entire list of publications of Prof. Basu is available on Google Scholar at this link. Selected publications are given below. Citation profile, as per Google Scholar is > 21127 citations with H-index of 82.
Biomaterials and regenerative strategies for healthcare applications
Biophysical insights into the impact of lateral electric field stimulation to cellular microenvironment: Implications for Bioelectronic medicine applications.
Bikramjit Basu, Dhanush Aditya, V Kumaran, K Ravikumar
Biomaterials (2025) 123132.
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Asymmetric Mechanical Behavior and pre-osteoblast differentiation in Ti-6Al-4V Minimal-Surface Bone-Analogues: The Role of Pore Topology.
Bijay Kumar Karali, Suresh Suthar, Sushant Banerji, and Bikramjit Basu.
Acta Biomaterialia 207 (2025) 633-652. |  |
Implementing Machine Learning approaches for accelerated prediction of bone strain in acetabulum of a hip joint.
Gowtham Nimmal Haribabu, and Bikramjit Basu
Journal of the Mechanical Behavior of Biomedical Materials 153 (2024) 106495
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Three-Dimensional Extrusion Printed Urinary Specific Grafts: Mechanistic Insights into Buildability and Biophysical Properties.
Sulob Roy Chowdhury, Garga Mondal, Praneeth Ratnayake, and Bikramjit Basu.
ACS Biomaterials Science & Engineering 10[2] (2024) 1040-1061. |  |
Osteogenesis, hemocompatibility, and foreign body response of polyvinylidene difluoride-based composite reinforced with carbonaceous filler and higher volume of piezoelectric ceramic phase.
Nitu Bhaskar and Bikramjit Basu.
Biomaterials 297 (2023) 122100 |  |
Electrical stimulation waveform‐dependent osteogenesis on PVDF/BaTiO3 composite using a customized and programmable cell stimulator.
Asish Kumar Panda, V. S. N. T. Sitaramgupta, Hardik J. Pandya, and Bikramjit Basu.
Biotechnology and Bioengineering 119 [6] (2022) 1578-1597. |  |
Biomaterialomics: Data Science-driven Pathways to develop fourth-generation Biomaterials and Implants.
Bikramjit Basu, N. H. Gowtham, Y. Xiao, S. R. Kalidindi and Kam W. Leong.
Acta Biomaterialia, 143 (2022) 1-25. |  |
Tuneable substrate functionalities direct stem cell fate towards electrophysiologically distinguishable neuron-like and glial-like cells
Asish Kumar Panda, Ravikumar K, Amanuel Gebrekrstos, Suryasarathi Bose, Yogananda S. Markandeya, Bhupesh Mehta, and Bikramjit Basu
ACS Applied Materials & Interfaces 13[1] (2021) 164-185 |  |
Dynamically crosslinked polydimethylsiloxane-based polyurethanes with contact-killing antimicrobial properties as implantable alloplasts for urological reconstruction.
Swati Sharma, Anil Mandhani, Suryasarathi Bose, Bikramjit Basu.
Acta Biomaterialia (2021). |  |
Neurogenesis-on-Chip: Electric field modulated transdifferentiation of human mesenchymal stem cell and mouse muscle precursor cell coculture
Sharmistha Naskar, Viswanathan Kumaran, Yogananda Markadeya, Bhupesh Mehta, Bikramjit Basu.
Biomaterials 226 (2020) 119522. |  |
Electrically driven intracellular and extracellular nanomanipulators evoke neurogenic/cardiomyogenic differentiation in human mesenchymal stem cells.
Greeshma Thrivikraman, Giridhar Madras, Bikramjit Basu.
Biomaterials 77 (2016) 26-43.
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Strength reliability and in vitro degradation of three-dimensional powder printed strontium-substituted magnesium phosphate scaffolds.
Susanne Meininger, Sourav Mandal, Alok Kumar, Jurgen Groll, Bikramjit Basu, Uwe Gbureck.
Acta Biomaterialia 31 (2016) 401-411. |  |