Three-dimensional printing in surgery: a review of current surgical applications

Abstract Background Three-dimensional printing (3DP) is gaining increasing recognition as a technique that will transform the landscape of surgical practice. It allows for the rapid conversion of anatomic images into physical objects, which are being used across a variety of surgical specialties. It...

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Veröffentlicht in:The Journal of surgical research 2015-12, Vol.199 (2), p.512-522
Hauptverfasser: Malik, Hammad H., BSc (Hons), Darwood, Alastair R.J., BMedSci (Hons), Shaunak, Shalin, MBBS, BSc (Hons), MSc, MRCS, Kulatilake, Priyantha, BSc (Hons), El-Hilly, Abdulrahman A., BSc (Hons), Mulki, Omar, MBBS, BSc (Hons), MRCOG, Baskaradas, Aroon, MBBS, BSc (Hons), MEd, MRCS
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container_end_page 522
container_issue 2
container_start_page 512
container_title The Journal of surgical research
container_volume 199
creator Malik, Hammad H., BSc (Hons)
Darwood, Alastair R.J., BMedSci (Hons)
Shaunak, Shalin, MBBS, BSc (Hons), MSc, MRCS
Kulatilake, Priyantha, BSc (Hons)
El-Hilly, Abdulrahman A., BSc (Hons)
Mulki, Omar, MBBS, BSc (Hons), MRCOG
Baskaradas, Aroon, MBBS, BSc (Hons), MEd, MRCS
description Abstract Background Three-dimensional printing (3DP) is gaining increasing recognition as a technique that will transform the landscape of surgical practice. It allows for the rapid conversion of anatomic images into physical objects, which are being used across a variety of surgical specialties. It has been unclear which groups are leading the way in coming up with novel ways of using the technology and what specifically the technology is being used for. The aim of this article was to review the current applications of 3DP in modern surgical practice. Materials and methods An electronic search was carried out in MEDLINE, EMBASE, and PsycINFO for terms related to 3DP. These were then screened for relevance and practical applications of the technology in surgery. Results Four hundred eighty-eight articles were initially found, and these were eventually narrowed down to 93 full-text articles. It was determined that there were three main areas in which the technology is being used to print: (1) anatomic models, (2) surgical instruments, and (3) implants and prostheses. Conclusions Different specialties are at different stages in the use of the technology. The costs involved with implementing the technology and time taken for printing are important factors to consider before widespread use. For the foreseeable future, this is an exciting and interesting technology with the capacity to radically change health care and revolutionize modern surgery.
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It allows for the rapid conversion of anatomic images into physical objects, which are being used across a variety of surgical specialties. It has been unclear which groups are leading the way in coming up with novel ways of using the technology and what specifically the technology is being used for. The aim of this article was to review the current applications of 3DP in modern surgical practice. Materials and methods An electronic search was carried out in MEDLINE, EMBASE, and PsycINFO for terms related to 3DP. These were then screened for relevance and practical applications of the technology in surgery. Results Four hundred eighty-eight articles were initially found, and these were eventually narrowed down to 93 full-text articles. It was determined that there were three main areas in which the technology is being used to print: (1) anatomic models, (2) surgical instruments, and (3) implants and prostheses. Conclusions Different specialties are at different stages in the use of the technology. The costs involved with implementing the technology and time taken for printing are important factors to consider before widespread use. For the foreseeable future, this is an exciting and interesting technology with the capacity to radically change health care and revolutionize modern surgery.</description><identifier>ISSN: 0022-4804</identifier><identifier>EISSN: 1095-8673</identifier><identifier>DOI: 10.1016/j.jss.2015.06.051</identifier><identifier>PMID: 26255224</identifier><language>eng</language><publisher>United States: Elsevier Inc</publisher><subject>Drill guide ; Education ; General Surgery - statistics &amp; numerical data ; Operative template ; Patient-specific implants ; Printing, Three-Dimensional ; Surgery ; Three-dimensional printing ; Training</subject><ispartof>The Journal of surgical research, 2015-12, Vol.199 (2), p.512-522</ispartof><rights>Elsevier Inc.</rights><rights>2015 Elsevier Inc.</rights><rights>Copyright © 2015 Elsevier Inc. 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It allows for the rapid conversion of anatomic images into physical objects, which are being used across a variety of surgical specialties. It has been unclear which groups are leading the way in coming up with novel ways of using the technology and what specifically the technology is being used for. The aim of this article was to review the current applications of 3DP in modern surgical practice. Materials and methods An electronic search was carried out in MEDLINE, EMBASE, and PsycINFO for terms related to 3DP. These were then screened for relevance and practical applications of the technology in surgery. Results Four hundred eighty-eight articles were initially found, and these were eventually narrowed down to 93 full-text articles. It was determined that there were three main areas in which the technology is being used to print: (1) anatomic models, (2) surgical instruments, and (3) implants and prostheses. Conclusions Different specialties are at different stages in the use of the technology. The costs involved with implementing the technology and time taken for printing are important factors to consider before widespread use. For the foreseeable future, this is an exciting and interesting technology with the capacity to radically change health care and revolutionize modern surgery.</description><subject>Drill guide</subject><subject>Education</subject><subject>General Surgery - statistics &amp; numerical data</subject><subject>Operative template</subject><subject>Patient-specific implants</subject><subject>Printing, Three-Dimensional</subject><subject>Surgery</subject><subject>Three-dimensional printing</subject><subject>Training</subject><issn>0022-4804</issn><issn>1095-8673</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2015</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNp9kUFP3DAUhC1UVJZtfwCXKsdekj47sZ1QqRJaUYqEBBLbs-U4L-A062ztBLT_vg679MCBk215ZqT5hpAzChkFKr51WRdCxoDyDEQGnB6RBYWKp6WQ-QeyAGAsLUooTshpCB3EdyXzj-SECcY5Y8WC3K0fPWLa2A26YAen-2TrrRute0isS8LkH9DvzhOdeHyy-JwMbWIm79GNL5_WRIfebvt4GaM_fCLHre4Dfj6cS_L75-V69Su9ub26Xl3cpIYX5ZhSjQWIssY2ryTnwDjjWmKLBqqGaeA6FwXoupEAggrOgBVIZaurutVQm3xJvu5zt374O2EY1cYGg32vHQ5TUFTmVJYchIhSupcaP4TgsVWx4kb7naKgZpCqUxGkmkEqECqCjJ4vh_ip3mDz3_FKLgq-7wUYS0YyXgVj0RlsrEczqmaw78b_eOM2vXUzzD-4w9ANk49TxBYqMAXqfl5yHpJyAMkqnv8DxJmYsA</recordid><startdate>20151201</startdate><enddate>20151201</enddate><creator>Malik, Hammad H., BSc (Hons)</creator><creator>Darwood, Alastair R.J., BMedSci (Hons)</creator><creator>Shaunak, Shalin, MBBS, BSc (Hons), MSc, MRCS</creator><creator>Kulatilake, Priyantha, BSc (Hons)</creator><creator>El-Hilly, Abdulrahman A., BSc (Hons)</creator><creator>Mulki, Omar, MBBS, BSc (Hons), MRCOG</creator><creator>Baskaradas, Aroon, MBBS, BSc (Hons), MEd, MRCS</creator><general>Elsevier Inc</general><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope></search><sort><creationdate>20151201</creationdate><title>Three-dimensional printing in surgery: a review of current surgical applications</title><author>Malik, Hammad H., BSc (Hons) ; Darwood, Alastair R.J., BMedSci (Hons) ; Shaunak, Shalin, MBBS, BSc (Hons), MSc, MRCS ; Kulatilake, Priyantha, BSc (Hons) ; El-Hilly, Abdulrahman A., BSc (Hons) ; Mulki, Omar, MBBS, BSc (Hons), MRCOG ; Baskaradas, Aroon, MBBS, BSc (Hons), MEd, MRCS</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c548t-1ae4068bef3975502525a7efec09d2a05a3640abd70061652024e17fa9bfa0bc3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2015</creationdate><topic>Drill guide</topic><topic>Education</topic><topic>General Surgery - statistics &amp; numerical data</topic><topic>Operative template</topic><topic>Patient-specific implants</topic><topic>Printing, Three-Dimensional</topic><topic>Surgery</topic><topic>Three-dimensional printing</topic><topic>Training</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Malik, Hammad H., BSc (Hons)</creatorcontrib><creatorcontrib>Darwood, Alastair R.J., BMedSci (Hons)</creatorcontrib><creatorcontrib>Shaunak, Shalin, MBBS, BSc (Hons), MSc, MRCS</creatorcontrib><creatorcontrib>Kulatilake, Priyantha, BSc (Hons)</creatorcontrib><creatorcontrib>El-Hilly, Abdulrahman A., BSc (Hons)</creatorcontrib><creatorcontrib>Mulki, Omar, MBBS, BSc (Hons), MRCOG</creatorcontrib><creatorcontrib>Baskaradas, Aroon, MBBS, BSc (Hons), MEd, MRCS</creatorcontrib><collection>Medline</collection><collection>MEDLINE</collection><collection>MEDLINE (Ovid)</collection><collection>MEDLINE</collection><collection>MEDLINE</collection><collection>PubMed</collection><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><jtitle>The Journal of surgical research</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Malik, Hammad H., BSc (Hons)</au><au>Darwood, Alastair R.J., BMedSci (Hons)</au><au>Shaunak, Shalin, MBBS, BSc (Hons), MSc, MRCS</au><au>Kulatilake, Priyantha, BSc (Hons)</au><au>El-Hilly, Abdulrahman A., BSc (Hons)</au><au>Mulki, Omar, MBBS, BSc (Hons), MRCOG</au><au>Baskaradas, Aroon, MBBS, BSc (Hons), MEd, MRCS</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Three-dimensional printing in surgery: a review of current surgical applications</atitle><jtitle>The Journal of surgical research</jtitle><addtitle>J Surg Res</addtitle><date>2015-12-01</date><risdate>2015</risdate><volume>199</volume><issue>2</issue><spage>512</spage><epage>522</epage><pages>512-522</pages><issn>0022-4804</issn><eissn>1095-8673</eissn><abstract>Abstract Background Three-dimensional printing (3DP) is gaining increasing recognition as a technique that will transform the landscape of surgical practice. It allows for the rapid conversion of anatomic images into physical objects, which are being used across a variety of surgical specialties. It has been unclear which groups are leading the way in coming up with novel ways of using the technology and what specifically the technology is being used for. The aim of this article was to review the current applications of 3DP in modern surgical practice. Materials and methods An electronic search was carried out in MEDLINE, EMBASE, and PsycINFO for terms related to 3DP. These were then screened for relevance and practical applications of the technology in surgery. Results Four hundred eighty-eight articles were initially found, and these were eventually narrowed down to 93 full-text articles. It was determined that there were three main areas in which the technology is being used to print: (1) anatomic models, (2) surgical instruments, and (3) implants and prostheses. 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subjects Drill guide
Education
General Surgery - statistics & numerical data
Operative template
Patient-specific implants
Printing, Three-Dimensional
Surgery
Three-dimensional printing
Training
title Three-dimensional printing in surgery: a review of current surgical applications
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