Francesco Amato | Ingegneria Biomedica | Best Researcher Award

Prof. Francesco Amato | Ingegneria Biomedica | Best Researcher Award

Professore Ordinario, Università di Napoli Federico II, Italy

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Strengths for the Award:

Francesco Amato is a highly accomplished researcher in the field of bioengineering and automatic control, with an extensive and distinguished academic career. His contributions to these fields are well-recognized, evidenced by his prolific publication record of around 370 papers in international journals and conference proceedings, along with three monographs published by respected publishers like Springer Verlag and Wiley. His leadership roles, including serving as the Dean of the School of Biomedical Engineering and the Director of the Biomechatronics Laboratory, demonstrate his ability to guide significant research initiatives and mentor the next generation of scholars. His expertise is further validated by his role as a reviewer for leading journals and his participation in evaluating research projects at both national and international levels. These achievements underscore his deep impact on the field and his dedication to advancing knowledge and innovation in bioengineering and control theory.

Areas for Improvement:

While Francesco Amato’s research output is undeniably impressive, there is always room for growth, especially in fostering interdisciplinary collaboration. Given the evolving nature of research in bioengineering, enhancing partnerships across diverse scientific domains could broaden the applicability and impact of his work. Additionally, while his leadership roles within academic institutions are commendable, expanding his influence to include more active involvement in global research networks or international conferences could further elevate his profile and foster wider recognition of his contributions. Such involvement might also open new avenues for collaborative research and funding opportunities, further enriching his academic and scientific pursuits.

Publications Top Notes

  • Singular finite horizon full information H∞ control via reduced order Riccati equation
    • 📚 Kybernetika, Vol. 31, pp. 601–611, December 1995.
    • Authors: F. Amato, A. Pironti
  • Necessary and sufficient conditions for quadratic stability and stabilizability of uncertain linear time-varying systems
    • 📚 IEEE Transactions on Automatic Control, Vol. 41 (1), pp. 125–128, January 1996.
    • Authors: F. Amato, A. Pironti, S. Scala
  • Design and Robustness Analysis of Gain Scheduled Control system for Parabolic Flight
    • 📚 Journal of Guidance Control and Dynamics, Vol. 19, pp. 430–437, March-April 1996.
    • Authors: F. Amato, G. Ambrosino, M. Mattei, L. Verde
  • Quadratic stabilization with an H∞ performance bound of uncertain linear time-varying systems
    • 📚 Systems & Control Letters, Vol. 28, pp. 103–114, June 1996.
    • Authors: F. Amato, A. Pironti
  • A multivariable stability margin in presence of time-varying, bounded rate gains
    • 📚 International Journal of Robust and Nonlinear Control, Vol. 7, pp. 127–143, February 1997.
    • Authors: F. Amato, M. Corless, M. Mattei, R. Setola

Conclusion:

Francesco Amato’s exceptional contributions to bioengineering and automatic control make him a strong candidate for the “Best Researcher Award.” His extensive publication record, leadership in academic institutions, and role in advancing critical areas of research underscore his qualifications. While there are opportunities for further interdisciplinary collaboration and global engagement, his current achievements and impact on the field are noteworthy and deserving of recognition.

Yung-Kang Shen | Scaffold | Best Researcher Award

Prof Dr. Yung-Kang Shen | scaffold | Best Researcher Award

Chairman, School of Dental Technology/Taipei Medical University, Taiwan

Congratulations to Prof Dr. Yung-Kang Shen on receiving the prestigious Best Researcher Award for his outstanding contributions in the field of scaffold technology! 🎉 As Chairman of the School of Dental Technology at Taipei Medical University in Taiwan, Dr. Shen has demonstrated unparalleled dedication and expertise in advancing scaffold research, revolutionizing dental care and beyond. His innovative work has not only enhanced our understanding of scaffold materials but also paved the way for groundbreaking applications in regenerative medicine and tissue engineering. This well-deserved recognition underscores Dr. Shen’s unwavering commitment to excellence and his significant impact on the scientific community. 🏆

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Citations

Based on the provided citation metrics:

Professor Yung-Kang Shen has received a total of 1,101 citations from 955 documents.

He has authored or co-authored 123 documents.

His h-index, which measures both the productivity and citation impact of a scientist’s publications, is not explicitly provided but can be inferred to be at least 19 based on the available data.

Publications Top Notes

“An innovative three-dimensional printed titanium implant with a biomimetic structure design for promoting osseointegration potential” – 2024

“The Influence of Dental Virtualization, Restoration Types, and Placement Angles on the Trueness and Contact Space in 3D-Printed Crowns: A Comprehensive Exploration” – 2024

“Characteristics of the 3D-printed composite material in different raster orientations under thermal effects” – 2024

“Applying machine learning to assess the morphology of sculpted teeth” – 2024

“Cell detachment rates and confluence of fibroblast and osteoblast cell culture using different washing solutions | Taxas de desprendimento celular e confluência de cultura celular de fibroblastos e osteoblastos a partir de diferentes soluções de lavagem” – 2024

“An innovative bioactive surface with potential hemocompatibility performance for enhancing osseointegration at early-stage implantation” – 2023

“An Innovative Biofunctional Composite Hydrogel with Enhanced Printability, Rheological Properties, and Structural Integrity for Cell Scaffold Applications” – 2023

“PCL/Graphene Scaffolds for the Osteogenesis Process” – 2023

“New Insight of Scaffold Based on Hydroxyapatite (HAp)/Bacteria’s Nanocellulose (BN) for Dental Tissue Engineering” – 2023

“An innovative biomimetic porous bioceramic to facilitate bone tissue regeneration: Microstructural characteristics, biocompatibility, and in vivo rabbit model evaluation” – 2023