student at Department of biomedical engineering, Science and research branch , islamic azad university, Tehran iran.
Melika Mirghaffari 🇮🇷 is a Biomedical Engineering student at Islamic Azad University, Science and Research Branch, Tehran (2020–2025). Her expertise includes biomedical materials, tissue engineering, and piezoelectric scaffolds 🧬. She has co-authored several research articles on bone and skin tissue regeneration 🦴 and nanofibrous scaffolds. Melika is a Research Assistant at ZhinoGene Research Services Co. and a Gamma Camera SPECT Technician Assistant at Sana Nuclear Medicine Center. Proficient in Python, AI, Biorender, and lab techniques, she is fluent in Persian, Azerbaijani, and English 🌍. Her interests include painting, mountaineering, and horseback riding 🎨🏔️.
Publication Profile
Orcid
🎓 Education Background
Melika Mirghaffari is currently pursuing a Bachelor of Science in Biomedical Engineering (2020–2025) at Islamic Azad University, Science and Research Branch, Tehran 🏛️. She previously obtained a High School Diploma in Mathematics and Physics (2019–2020) from Farzanegan 6 High School, Tehran 📐. Before that, she studied Natural Sciences at Farzanegan 6 High School, Tehran (2018–2019) and Farzanegan High School, Marand (2017–2018) 🔬. Her strong academic foundation in science and engineering has fueled her passion for biomedical research, focusing on tissue engineering and regenerative medicine 🧬.
🦴 Research Focus
Melika Mirghaffari specializes in biomedical engineering, focusing on tissue engineering, regenerative medicine, and biomaterials 🧬. Her research explores electro-spun piezoelectric PLLA smart composites for bone fracture healing, leveraging biodegradable scaffolds to enhance tissue regeneration 🦴🔬. She investigates piezoelectric nanomaterials, 3D-printed scaffolds, and self-powered electrical stimulation for bone and skin tissue repair ⚡. Her work integrates biomechanics, material science, and medical imaging, contributing to next-generation regenerative therapies. Her studies aim to advance biodegradable and biocompatible implants for orthopedic and soft tissue engineering, promoting faster recovery and improved patient outcomes 🏥.
Publication Top Notes
- “Electro-spun Piezoelectric PLLA Smart Composites as a Scaffold on Bone Fracture: A Review” – Regenerative Therapy (🗓️ 2025) | 📑
- “Enhancing Skin Tissue Regeneration: Ultrasound-Activated Piezoelectric PLLA Scaffolds for Self-Powered Electrical Stimulation” – (Revised, 2025) | 📑
- “Polycaprolactone/Barium Titanate 3D-Printed Scaffolds: Enhancing Bone Regeneration through Biodegradable Piezoelectric Composite Structures – A Review” – IMAT (🗓️ 2024) | 📑
- “Alginate–PVA Based Electrospun Piezoelectric Nanofibrous Scaffolds with BaTiO3 in Tissue Engineering: A Review” – (In preparation) | 📑
- “Advances in Hydrophilic Coating Technologies for Angiography Guide Wires: Implications for Enhanced Performance” – (In preparation) | 📑