ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSIS

The growth trend and increasing global population are leading to new healthcare challenges that require prompt and effective solutions to meet the clinical demands. Currently, three-dimensional (3D) printing is emerging as a rapidly advancing technology to produce metal implants and other biomedica...

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Main Authors: Devika Banothu, Pankaj Kumar, Rajasri Reddy
Format: Article
Language:English
Published: Institute of Mechanics of Continua and Mathematical Sciences 2024-11-01
Series:Journal of Mechanics of Continua and Mathematical Sciences
Subjects:
Online Access:https://jmcms.s3.amazonaws.com/wp-content/uploads/2024/11/08165819/jmcms-2412001-Advancements-in-3D-Printing-DB-PK.pdf
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author Devika Banothu
Pankaj Kumar
Rajasri Reddy
author_facet Devika Banothu
Pankaj Kumar
Rajasri Reddy
author_sort Devika Banothu
collection DOAJ
description The growth trend and increasing global population are leading to new healthcare challenges that require prompt and effective solutions to meet the clinical demands. Currently, three-dimensional (3D) printing is emerging as a rapidly advancing technology to produce metal implants and other biomedical applications. This method creates intricate designs with biomimetic characteristics in a shorter timeframe, enabling healthcare providers to meet the needs of their patients better. This study thoroughly analyzes the demand and manufacturing methods for biomedical implants, particularly metal bio-implants. It also delves into biomaterials used in additive manufacturing, accompanied by a comprehensive bibliometric study covering scientific production by country, highly cited nations, productive authors, collaboration networks, and source rankings. The paper further investigates top author contributions, affiliations, and trends, featuring various analytical tools, such as co citation networks, keyword co-occurrence analysis, and reference publication year spectroscopy, culminating in presenting key findings through insightful field plots. The current study uses network analysis and scientometric methodologies to analyze data taken from the Scopus journal database, which includes articles from the period between 2014 and 2023, to accomplish this goal. Through this analysis, the article aims to offer valuable insights into the relevance and real-world implications of previous research on the additive manufacturing of metal bio-implants.
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spelling doaj-art-d4cf25cdd2cb4a96a01dbf243cd7bc012025-08-20T03:40:48ZengInstitute of Mechanics of Continua and Mathematical SciencesJournal of Mechanics of Continua and Mathematical Sciences0973-89752454-71902024-11-01191192810.26782/jmcms.2024.11.00002ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSISDevika Banothu0Pankaj Kumar1 Rajasri Reddy2Department of Mechanical Engineering, SR University, Warangal, India.Department of Mechanical Engineering, SR University, Warangal, India.Sumathi Reddy Institute of Technology for Women, Warangal, India.The growth trend and increasing global population are leading to new healthcare challenges that require prompt and effective solutions to meet the clinical demands. Currently, three-dimensional (3D) printing is emerging as a rapidly advancing technology to produce metal implants and other biomedical applications. This method creates intricate designs with biomimetic characteristics in a shorter timeframe, enabling healthcare providers to meet the needs of their patients better. This study thoroughly analyzes the demand and manufacturing methods for biomedical implants, particularly metal bio-implants. It also delves into biomaterials used in additive manufacturing, accompanied by a comprehensive bibliometric study covering scientific production by country, highly cited nations, productive authors, collaboration networks, and source rankings. The paper further investigates top author contributions, affiliations, and trends, featuring various analytical tools, such as co citation networks, keyword co-occurrence analysis, and reference publication year spectroscopy, culminating in presenting key findings through insightful field plots. The current study uses network analysis and scientometric methodologies to analyze data taken from the Scopus journal database, which includes articles from the period between 2014 and 2023, to accomplish this goal. Through this analysis, the article aims to offer valuable insights into the relevance and real-world implications of previous research on the additive manufacturing of metal bio-implants.https://jmcms.s3.amazonaws.com/wp-content/uploads/2024/11/08165819/jmcms-2412001-Advancements-in-3D-Printing-DB-PK.pdfbiomedical implantbibliographical analysis3d-printingliterature reviewrstudio.
spellingShingle Devika Banothu
Pankaj Kumar
Rajasri Reddy
ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSIS
Journal of Mechanics of Continua and Mathematical Sciences
biomedical implant
bibliographical analysis
3d-printing
literature review
rstudio.
title ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSIS
title_full ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSIS
title_fullStr ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSIS
title_full_unstemmed ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSIS
title_short ADVANCEMENTS IN 3D PRINTING FOR METAL BIO-IMPLANTS: A COMPREHENSIVE BIBLIOMETRIC AND SCIENTOMETRIC ANALYSIS
title_sort advancements in 3d printing for metal bio implants a comprehensive bibliometric and scientometric analysis
topic biomedical implant
bibliographical analysis
3d-printing
literature review
rstudio.
url https://jmcms.s3.amazonaws.com/wp-content/uploads/2024/11/08165819/jmcms-2412001-Advancements-in-3D-Printing-DB-PK.pdf
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AT rajasrireddy advancementsin3dprintingformetalbioimplantsacomprehensivebibliometricandscientometricanalysis