Vicky Subhash Telang Research Scholar | Additive Manufacturing and Biomedical Engineering I am a dedicated research sholar with a diverse background and a passion for advancing the fields of additive manufacturing, biomedical engineering, and computational studies. My work focuses on the intersection of materials science, biomedical devices, and cutting-edge technology to address challenges in medical applications and sustainable materials. Additive Manufacturing Expertise: My expertise lies in the additive manufacturing of metal, polymer, and ceramic materials. I have conducted extensive research in optimizing the additive manufacturing processes for these materials, with a keen interest in achieving high-quality and functional end-products. My work spans the exploration of novel materials, process parameter optimization, and the development of advanced fabrication techniques. Biomedical Implants and Biodegradation: A significant portion of my research is dedicated to the design and development of biomedical implants. I am particularly interested in the biodegradation of these implants, studying their degradation behavior over time and its impact on the body. My work in this area contributes to the development of safer and more effective implant materials, enhancing patient outcomes. Computational Studies and Analysis of Biomedical Devices: I employ computational tools to analyze and model the behavior of biomedical devices. Through simulations and analyses, I investigate the mechanical properties, durability, and performance of implants and medical devices under various conditions. This computational approach guides the design and optimization of devices, ensuring their reliability in real-world scenarios. Machine Learning-Enabled Biodegradation Studies: I am at the forefront of integrating machine learning techniques into biodegradation studies. By harnessing the power of data-driven analysis, I am able to predict and understand the degradation behavior of materials and implants more comprehensively. This innovative approach opens new avenues for personalized medicine and tailored implant design. I hold Master of Technology and pursuing Ph.D. in mechanical engineering have published extensively in reputable journals, contributing to the dissemination of knowledge in the fields of additive manufacturing, biomedical engineering, and computational studies. I am deeply committed to advancing these fields through collaborative research, innovative approaches, and the application of emerging technologies.