Robotic surgery.
Identifieur interne : 000600 ( Main/Curation ); précédent : 000599; suivant : 000601Robotic surgery.
Auteurs : M. Diana [France] ; J. MarescauxSource :
- The British journal of surgery [ 1365-2168 ] ; 2015.
English descriptors
- KwdEn :
- Aerospace Medicine (methods), Aerospace Medicine (trends), Clinical Competence (standards), Digestive System Surgical Procedures (education), Digestive System Surgical Procedures (standards), Digestive System Surgical Procedures (trends), Education, Medical (methods), Education, Medical (trends), Humans, Inventions (trends), Laparoscopy (education), Laparoscopy (standards), Laparoscopy (trends), Natural Orifice Endoscopic Surgery (methods), Natural Orifice Endoscopic Surgery (trends), Robotic Surgical Procedures (education), Robotic Surgical Procedures (standards), Robotic Surgical Procedures (trends), Surgery, Computer-Assisted (standards), Surgery, Computer-Assisted (trends), Telemedicine (methods), Telemedicine (trends), Therapies, Investigational (trends).
- MESH :
- education : Digestive System Surgical Procedures, Laparoscopy, Robotic Surgical Procedures.
- methods : Aerospace Medicine, Education, Medical, Natural Orifice Endoscopic Surgery, Telemedicine.
- standards : Clinical Competence, Digestive System Surgical Procedures, Laparoscopy, Robotic Surgical Procedures, Surgery, Computer-Assisted.
- trends : Aerospace Medicine, Digestive System Surgical Procedures, Education, Medical, Inventions, Laparoscopy, Natural Orifice Endoscopic Surgery, Robotic Surgical Procedures, Surgery, Computer-Assisted, Telemedicine, Therapies, Investigational.
- Humans.
Abstract
Proficiency in minimally invasive surgery requires intensive and continuous training, as it is technically challenging for unnatural visual and haptic perceptions. Robotic and computer sciences are producing innovations to augment the surgeon's skills to achieve accuracy and high precision during complex surgery. This article reviews the current use of robotically assisted surgery, focusing on technology as well as main applications in digestive surgery, and future perspectives.
DOI: 10.1002/bjs.9711
PubMed: 25627128
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pubmed:25627128Le document en format XML
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<affiliation wicri:level="1"><nlm:affiliation>Research Institute Against Cancer of the Digestive System (IRCAD), European Institute of TeleSurgery (EITS) and International Institute for Image-Guided Surgery (IHU Strasbourg), Strasbourg, France.</nlm:affiliation>
<country xml:lang="fr">France</country>
<wicri:regionArea>Research Institute Against Cancer of the Digestive System (IRCAD), European Institute of TeleSurgery (EITS) and International Institute for Image-Guided Surgery (IHU Strasbourg), Strasbourg</wicri:regionArea>
<placeName><settlement type="city">Strasbourg</settlement>
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<author><name sortKey="Marescaux, J" sort="Marescaux, J" uniqKey="Marescaux J" first="J" last="Marescaux">J. Marescaux</name>
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<series><title level="j">The British journal of surgery</title>
<idno type="eISSN">1365-2168</idno>
<imprint><date when="2015" type="published">2015</date>
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<term>Aerospace Medicine (trends)</term>
<term>Clinical Competence (standards)</term>
<term>Digestive System Surgical Procedures (education)</term>
<term>Digestive System Surgical Procedures (standards)</term>
<term>Digestive System Surgical Procedures (trends)</term>
<term>Education, Medical (methods)</term>
<term>Education, Medical (trends)</term>
<term>Humans</term>
<term>Inventions (trends)</term>
<term>Laparoscopy (education)</term>
<term>Laparoscopy (standards)</term>
<term>Laparoscopy (trends)</term>
<term>Natural Orifice Endoscopic Surgery (methods)</term>
<term>Natural Orifice Endoscopic Surgery (trends)</term>
<term>Robotic Surgical Procedures (education)</term>
<term>Robotic Surgical Procedures (standards)</term>
<term>Robotic Surgical Procedures (trends)</term>
<term>Surgery, Computer-Assisted (standards)</term>
<term>Surgery, Computer-Assisted (trends)</term>
<term>Telemedicine (methods)</term>
<term>Telemedicine (trends)</term>
<term>Therapies, Investigational (trends)</term>
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<keywords scheme="MESH" qualifier="education" xml:lang="en"><term>Digestive System Surgical Procedures</term>
<term>Laparoscopy</term>
<term>Robotic Surgical Procedures</term>
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<term>Education, Medical</term>
<term>Natural Orifice Endoscopic Surgery</term>
<term>Telemedicine</term>
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<keywords scheme="MESH" qualifier="standards" xml:lang="en"><term>Clinical Competence</term>
<term>Digestive System Surgical Procedures</term>
<term>Laparoscopy</term>
<term>Robotic Surgical Procedures</term>
<term>Surgery, Computer-Assisted</term>
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<keywords scheme="MESH" qualifier="trends" xml:lang="en"><term>Aerospace Medicine</term>
<term>Digestive System Surgical Procedures</term>
<term>Education, Medical</term>
<term>Inventions</term>
<term>Laparoscopy</term>
<term>Natural Orifice Endoscopic Surgery</term>
<term>Robotic Surgical Procedures</term>
<term>Surgery, Computer-Assisted</term>
<term>Telemedicine</term>
<term>Therapies, Investigational</term>
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<front><div type="abstract" xml:lang="en">Proficiency in minimally invasive surgery requires intensive and continuous training, as it is technically challenging for unnatural visual and haptic perceptions. Robotic and computer sciences are producing innovations to augment the surgeon's skills to achieve accuracy and high precision during complex surgery. This article reviews the current use of robotically assisted surgery, focusing on technology as well as main applications in digestive surgery, and future perspectives.</div>
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