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On Biomedical Applications of Additive Manufacturing Bibliometric Analysis

Yıl 2025, Cilt: 6 Sayı: 1, 124 - 134, 30.04.2025
https://doi.org/10.52795/mateca.1593022

Öz

This study aims to provide a comprehensive bibliometric analysis of the literature on the applications of additive manufacturing in the biomedical field. The analysis examines data from a total of 1130 studies published in the Web of Science (WoS) database up to August 19, 2024. VOSviewer software was used for data visualization and analysis. The findings indicate that the first study on biomedical applications of additive manufacturing was published in 2012, and a total of 1130 studies were conducted between 2012 and 2024. Among these studies, the year 2023 was identified as the most prolific publication period, with 193 studies. The majority of the analyzed works were found to be research articles. Furthermore, it was determined that these studies were conducted with contributions from 5249 different authors across 78 countries. The unique contribution of this study lies in its comprehensive examination of trends in additive manufacturing within the biomedical field, offering insights and recommendations for future research. In addition to presenting numerical data, the study provides a detailed analysis and comparison with the existing literature. In conclusion, this study is expected to serve as a valuable resource for researchers and academics planning to conduct studies on the biomedical applications of additive manufacturing.

Kaynakça

  • D. Dirik, İ. Eryılmaz, T. Erhan, Post-truth kavramı üzerine yapılan çalışmaların VOSviewer ile bibliyometrik Analizi, Sosyal Mucit Academic Review, 4(2), 2023, 164-188.
  • J. Tuomi, K-S. Paloheimo, J. Vehviläinen, A novel classification and online platform for planning and documentation of medical applications of additive manufacturing, Surgical Innovation, 21(6), 2014, 553-559.
  • C. Aumund-Kopp, A. Riou., 3rd ed., EPMA Introduction to Additive Manufacturing. European Powder Metallurgy Association, Shrewsbury, 2019.
  • H. Yang, P. Rao, T. Simpson, Y. Lu, P. Witherell, A. R. Nassar, E. Reutzel, S. Kumara, Six-sigma quality management of additive manufacturing, Proceedings of the IEEE, Institute of Electrical and Electronics Engineers. 109(4), 2021, 347–376.
  • D. Gu, X. Shi, R. Poprawe, D. L. Bourell, R. Setchi, J. Zhu, Material-structure-performance integrated laser-metal additive manufacturing, Science, 372, 2021, 6545.
  • A. Vafadar, F. Guzzomi, A. Rassau, K. Hayward, Advances in metal additive manufacturing: a review of common processes, ındustrial applications, and current challenges, Appl. Sci., 11(3), 2021, 1213.
  • Y.Lakhdara, C.Tucka, J.Binnerc, A.Terryb, R.Goodridge, Additive manufacturing of advanced ceramic materials, Progress in Materials Science 116, 2021, 10073.
  • L. J. Tan, W. Zhu, K. Zhou, Recent progress on polymer materials for additive manufacturing, Adv. Funct. Mater. 30, 2020, 2003062.
  • D. Chimene, R. Kaunas, A. K. Gaharwar, Hydrogel bioink reinforcement for additive manufacturing: a focused review of emerging strategies, Advanced Materials, 1902026, 2020.
  • M.I. Mohammed, J. Tatineni, B. Cadd, G. Peart, I. Gibson, Applications of 3D topography scanning and multi-material additive manufacturing for facial prosthesis development and production, in: Proceedings of the 2016 International Solid Freeform Fabrication Symposium, University of Texas at Austin, 2016.
  • M.E. Prendergast, J.A. Burdick, Recent advances in enabling technologies in 3D printing for precision medicine, Advanced Materials, 32 (13), 2020.
  • E. Guzzi and M. Tibbitt, Additive manufacturing of precision biomaterials, Advanced materials, 32 (13), 2020.
  • S. Bose, D. Ke, H. Sahasrabudhe, A. Bandyopadhyay, Additive manufacturing of biomaterials, Progress in materials science, 93, 2018, 45–111.
  • M. Javaid, A. Haleem, 3D printed tissue and organ using additive manufacturing: an overview, Clinical Epidemiology and Global Health, 8(2), 2020, 586-594.
  • I. Tasneem, A. Ariz, D. Bharti, A. Haleem, M. Javaid, S. Bahl, 3D printing technology and its significant applications in the context of healthcare education, Journal of Industrial Integration and Management, 8(01), 2023, 113-130.
  • S. He, J. Zhu, Y. Jing, S. Long, L. Tang, L. Cheng, Z. Shi, Effect of 3D-printed porous titanium alloy pore structure on bone regeneration: A review, Coatings, 14(3), 2024, 253.
  • T.D. Ngo, A. Kashani, G. Imbalzano, K.T. Nguyen, D. Hui, Additive manufacturing (3D printing): A review of materials, methods, applications and challenges, Composites Part B: Engineering, 143, 2018, 172-196.
  • D. Chimene, R. Kaunas, A.K. Gaharwar. Hydrogel bioink reinforcement for additive manufacturing: a focused review of emerging strategies, Advanced materials, 1902026, 2020.

Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz

Yıl 2025, Cilt: 6 Sayı: 1, 124 - 134, 30.04.2025
https://doi.org/10.52795/mateca.1593022

Öz

Bu çalışma, eklemeli imalatın biyomedikal alanındaki uygulamalarına ilişkin literatürün kapsamlı bir bibliyometrik analizini sunmayı amaçlamaktadır. Analiz kapsamında, Web of Science (WoS) veri tabanında 19 Ağustos 2024 tarihine kadar yayınlanan toplam 1130 çalışmaya ait veriler incelenmiştir. Verilerin görselleştirilmesi ve analizi için VOSviewer yazılımı kullanılmıştır. Elde edilen bulgular, eklemeli imalatın biyomedikal uygulamaları üzerine ilk çalışmanın 2012 yılında yayınlandığını ve 2012-2024 yılları arasında toplam 1130 çalışma gerçekleştirildiğini göstermektedir. Bu çalışmalar arasında, 2023 yılının 193 çalışma ile en yoğun yayın dönemi olduğu belirlenmiştir. İncelenen çalışmaların büyük çoğunluğunun makale türünde olduğu tespit edilmiştir. Ayrıca, bu çalışmaların 5249 farklı yazar tarafından, 78 ülkeden katkı sağlanarak gerçekleştirildiği belirlenmiştir. Bu çalışmanın özgün katkısı, eklemeli imalatın biyomedikal alanındaki yaklaşımlarını kapsamlı bir şekilde ortaya koyarak gelecek araştırmalara yönelik öneriler sunmasıdır. Araştırmada, sadece sayısal veriler sunulmamış, bunlar detaylı bir şekilde analiz edilerek literatürdeki mevcut durumla karşılaştırılmıştır. Sonuç olarak, bu çalışmanın eklemeli imalatın biyomedikal uygulamaları üzerine araştırma yapmayı planlayan bilim insanları ve akademisyenler için değerli bir kaynak oluşturacaktır.

Kaynakça

  • D. Dirik, İ. Eryılmaz, T. Erhan, Post-truth kavramı üzerine yapılan çalışmaların VOSviewer ile bibliyometrik Analizi, Sosyal Mucit Academic Review, 4(2), 2023, 164-188.
  • J. Tuomi, K-S. Paloheimo, J. Vehviläinen, A novel classification and online platform for planning and documentation of medical applications of additive manufacturing, Surgical Innovation, 21(6), 2014, 553-559.
  • C. Aumund-Kopp, A. Riou., 3rd ed., EPMA Introduction to Additive Manufacturing. European Powder Metallurgy Association, Shrewsbury, 2019.
  • H. Yang, P. Rao, T. Simpson, Y. Lu, P. Witherell, A. R. Nassar, E. Reutzel, S. Kumara, Six-sigma quality management of additive manufacturing, Proceedings of the IEEE, Institute of Electrical and Electronics Engineers. 109(4), 2021, 347–376.
  • D. Gu, X. Shi, R. Poprawe, D. L. Bourell, R. Setchi, J. Zhu, Material-structure-performance integrated laser-metal additive manufacturing, Science, 372, 2021, 6545.
  • A. Vafadar, F. Guzzomi, A. Rassau, K. Hayward, Advances in metal additive manufacturing: a review of common processes, ındustrial applications, and current challenges, Appl. Sci., 11(3), 2021, 1213.
  • Y.Lakhdara, C.Tucka, J.Binnerc, A.Terryb, R.Goodridge, Additive manufacturing of advanced ceramic materials, Progress in Materials Science 116, 2021, 10073.
  • L. J. Tan, W. Zhu, K. Zhou, Recent progress on polymer materials for additive manufacturing, Adv. Funct. Mater. 30, 2020, 2003062.
  • D. Chimene, R. Kaunas, A. K. Gaharwar, Hydrogel bioink reinforcement for additive manufacturing: a focused review of emerging strategies, Advanced Materials, 1902026, 2020.
  • M.I. Mohammed, J. Tatineni, B. Cadd, G. Peart, I. Gibson, Applications of 3D topography scanning and multi-material additive manufacturing for facial prosthesis development and production, in: Proceedings of the 2016 International Solid Freeform Fabrication Symposium, University of Texas at Austin, 2016.
  • M.E. Prendergast, J.A. Burdick, Recent advances in enabling technologies in 3D printing for precision medicine, Advanced Materials, 32 (13), 2020.
  • E. Guzzi and M. Tibbitt, Additive manufacturing of precision biomaterials, Advanced materials, 32 (13), 2020.
  • S. Bose, D. Ke, H. Sahasrabudhe, A. Bandyopadhyay, Additive manufacturing of biomaterials, Progress in materials science, 93, 2018, 45–111.
  • M. Javaid, A. Haleem, 3D printed tissue and organ using additive manufacturing: an overview, Clinical Epidemiology and Global Health, 8(2), 2020, 586-594.
  • I. Tasneem, A. Ariz, D. Bharti, A. Haleem, M. Javaid, S. Bahl, 3D printing technology and its significant applications in the context of healthcare education, Journal of Industrial Integration and Management, 8(01), 2023, 113-130.
  • S. He, J. Zhu, Y. Jing, S. Long, L. Tang, L. Cheng, Z. Shi, Effect of 3D-printed porous titanium alloy pore structure on bone regeneration: A review, Coatings, 14(3), 2024, 253.
  • T.D. Ngo, A. Kashani, G. Imbalzano, K.T. Nguyen, D. Hui, Additive manufacturing (3D printing): A review of materials, methods, applications and challenges, Composites Part B: Engineering, 143, 2018, 172-196.
  • D. Chimene, R. Kaunas, A.K. Gaharwar. Hydrogel bioink reinforcement for additive manufacturing: a focused review of emerging strategies, Advanced materials, 1902026, 2020.
Toplam 18 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Biyomedikal Mühendisliği (Diğer)
Bölüm Derleme
Yazarlar

Halime İlayda Doğan 0009-0000-7844-6342

Ahmet Mavi 0000-0003-0339-2639

Gönderilme Tarihi 28 Kasım 2024
Kabul Tarihi 24 Mart 2025
Erken Görünüm Tarihi 30 Nisan 2025
Yayımlanma Tarihi 30 Nisan 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 6 Sayı: 1

Kaynak Göster

APA Doğan, H. İ., & Mavi, A. (2025). Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz. Manufacturing Technologies and Applications, 6(1), 124-134. https://doi.org/10.52795/mateca.1593022
AMA Doğan Hİ, Mavi A. Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz. MATECA. Nisan 2025;6(1):124-134. doi:10.52795/mateca.1593022
Chicago Doğan, Halime İlayda, ve Ahmet Mavi. “Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz”. Manufacturing Technologies and Applications 6, sy. 1 (Nisan 2025): 124-34. https://doi.org/10.52795/mateca.1593022.
EndNote Doğan Hİ, Mavi A (01 Nisan 2025) Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz. Manufacturing Technologies and Applications 6 1 124–134.
IEEE H. İ. Doğan ve A. Mavi, “Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz”, MATECA, c. 6, sy. 1, ss. 124–134, 2025, doi: 10.52795/mateca.1593022.
ISNAD Doğan, Halime İlayda - Mavi, Ahmet. “Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz”. Manufacturing Technologies and Applications 6/1 (Nisan2025), 124-134. https://doi.org/10.52795/mateca.1593022.
JAMA Doğan Hİ, Mavi A. Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz. MATECA. 2025;6:124–134.
MLA Doğan, Halime İlayda ve Ahmet Mavi. “Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz”. Manufacturing Technologies and Applications, c. 6, sy. 1, 2025, ss. 124-3, doi:10.52795/mateca.1593022.
Vancouver Doğan Hİ, Mavi A. Eklemeli İmalatın Biyomedikal Uygulamaları Üzerine Bibliyometrik Analiz. MATECA. 2025;6(1):124-3.