The Experts below are selected from a list of 315 Experts worldwide ranked by ideXlab platform
A. Madani - One of the best experts on this subject based on the ideXlab platform.
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The SAGES Fundamental Use of Surgical Energy program (FUSE): History, Development, and purpose
Surgical Endoscopy, 2018Co-Authors: P. Fuchshuber, S. Schwaitzberg, D. Jones, S. B. Jones, L. Feldman, M. Munro, T. Robinson, G. Purcell-jackson, D. Mikami, A. MadaniAbstract:Background Adverse events due to energy device use in surgical operating rooms are a daily occurrence. These occur at a rate of approximately 1–2 per 1000 operations. Hundreds of operating room fires occur each year in the United States, some causing severe injury and even mortality. The Society of American Gastrointestinal and Endoscopic Surgeons (SAGES) therefore created the first comprehensive educational curriculum on the safe use of surgical energy devices, called Fundamental Use of Surgical Energy (FUSE). This paper describes the History, Development, and purpose of this important training program for all members of the operating room team. Methods The databases of SAGES and the FUSE committee as well as personal photographs and documents of members of the FUSE task force were used to establish a brief History of the FUSE program from its inception to its current status. Results The authors were able to detail all aspects of the History, Development, and national as well as global implementation of the third SAGES Fundamentals Program FUSE. Conclusions The written documentation of the making of FUSE is an important contribution to the History and mission of SAGES and allows the reader to understand the idea, concept, realization, and implementation of the only free online educational tool for physicians on energy devices available today. FUSE is the culmination of the SAGES efforts to recognize gaps in patient safety and develop state-of-the-art educational programs to address those gaps. It is the goal of the FUSE task force to ensure that general FUSE implementation becomes multinational, involving as many countries as possible.
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The SAGES Fundamental Use of Surgical Energy program (FUSE): History, Development, and purpose.
Surgical endoscopy, 2017Co-Authors: P. Fuchshuber, S. Schwaitzberg, S. B. Jones, G. Purcell-jackson, Daniel B. Jones, Liane S. Feldman, Malcolm G. Munro, Thomas N. Robinson, Dean J. Mikami, A. MadaniAbstract:Adverse events due to energy device use in surgical operating rooms are a daily occurrence. These occur at a rate of approximately 1–2 per 1000 operations. Hundreds of operating room fires occur each year in the United States, some causing severe injury and even mortality. The Society of American Gastrointestinal and Endoscopic Surgeons (SAGES) therefore created the first comprehensive educational curriculum on the safe use of surgical energy devices, called Fundamental Use of Surgical Energy (FUSE). This paper describes the History, Development, and purpose of this important training program for all members of the operating room team. The databases of SAGES and the FUSE committee as well as personal photographs and documents of members of the FUSE task force were used to establish a brief History of the FUSE program from its inception to its current status. The authors were able to detail all aspects of the History, Development, and national as well as global implementation of the third SAGES Fundamentals Program FUSE. The written documentation of the making of FUSE is an important contribution to the History and mission of SAGES and allows the reader to understand the idea, concept, realization, and implementation of the only free online educational tool for physicians on energy devices available today. FUSE is the culmination of the SAGES efforts to recognize gaps in patient safety and develop state-of-the-art educational programs to address those gaps. It is the goal of the FUSE task force to ensure that general FUSE implementation becomes multinational, involving as many countries as possible.
G. Lespes - One of the best experts on this subject based on the ideXlab platform.
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field flow fractionation and inductively coupled plasma mass spectrometer coupling History Development and applications
Journal of Analytical Atomic Spectrometry, 2010Co-Authors: S. Dubascoux, M. Hassellöv, F. Von Der Kammer, Le I Hecho, Potin M Gautier, G. LespesAbstract:Field-Flow Fractionation (FFF) is now recognised as a versatile pool of techniques allowing particle size or molar mass to be obtained in a wide variety of samples covering numerous applications in the fields of environment, materials or biology. In the same time, Inductively Coupled Plasma-Mass Spectrometry (ICP-MS) has an indisputable place in the field of elemental detectors and the coupling between FFF and ICP-MS can be considered as an emerging technique capable to reach relevant physico-chemical information at sub-micrometre scale and trace element concentration level. This paper gives some key elements of FFF-based fractionation linking theory and practical analytical aspects, from injection and preconcentration to analysis. The different components of the coupling are described. Summary tables of the main operating conditions of FFF-ICP-MS coupling are presented and operating conditions such as carrier composition, flow and nebulizers are discussed. Special attention is given to the FFF-ICP-MS interface. Qualitative and quantitative analysis is also discussed. Applications in the fields of environment, bioanalysis and nanoparticles are presented in order to illustrate the potentialities of such coupling.
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Field-flow fractionation and inductively coupled plasma mass spectrometer coupling: History, Development and applications
Journal of Analytical Atomic Spectrometry, 2010Co-Authors: S. Dubascoux, I. Le Hécho, M. Hassellöv, F. Von Der Kammer, M. Potin Gautier, G. LespesAbstract:Field-Flow Fractionation (FFF) is now recognised as a versatile pool of techniques allowing particle size or molar mass to be obtained in a wide variety of samples covering numerous applications in the fields of environment, materials or biology. In the same time, Inductively Coupled Plasma-Mass Spectrometry (ICP-MS) has an indisputable place in the field of elemental detectors and the coupling between FFF and ICP-MS can be considered as an emerging technique capable to reach relevant physico-chemical information at sub-micrometre scale and trace element concentration level. This paper gives some key elements of FFF-based fractionation linking theory and practical analytical aspects, from injection and preconcentration to analysis. The different components of the coupling are described. Summary tables of the main operating conditions of FFF-ICP-MS coupling are presented and operating conditions such as carrier composition, flow and nebulizers are discussed. Special attention is given to the FFF-ICP-MS interface. Qualitative and quantitative analysis is also discussed. Applications in the fields of environment, bioanalysis and nanoparticles are presented in order to illustrate the potentialities of such coupling. © The Royal Society of Chemistry 2010.
P. Fuchshuber - One of the best experts on this subject based on the ideXlab platform.
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The SAGES Fundamental Use of Surgical Energy program (FUSE): History, Development, and purpose
Surgical Endoscopy, 2018Co-Authors: P. Fuchshuber, S. Schwaitzberg, D. Jones, S. B. Jones, L. Feldman, M. Munro, T. Robinson, G. Purcell-jackson, D. Mikami, A. MadaniAbstract:Background Adverse events due to energy device use in surgical operating rooms are a daily occurrence. These occur at a rate of approximately 1–2 per 1000 operations. Hundreds of operating room fires occur each year in the United States, some causing severe injury and even mortality. The Society of American Gastrointestinal and Endoscopic Surgeons (SAGES) therefore created the first comprehensive educational curriculum on the safe use of surgical energy devices, called Fundamental Use of Surgical Energy (FUSE). This paper describes the History, Development, and purpose of this important training program for all members of the operating room team. Methods The databases of SAGES and the FUSE committee as well as personal photographs and documents of members of the FUSE task force were used to establish a brief History of the FUSE program from its inception to its current status. Results The authors were able to detail all aspects of the History, Development, and national as well as global implementation of the third SAGES Fundamentals Program FUSE. Conclusions The written documentation of the making of FUSE is an important contribution to the History and mission of SAGES and allows the reader to understand the idea, concept, realization, and implementation of the only free online educational tool for physicians on energy devices available today. FUSE is the culmination of the SAGES efforts to recognize gaps in patient safety and develop state-of-the-art educational programs to address those gaps. It is the goal of the FUSE task force to ensure that general FUSE implementation becomes multinational, involving as many countries as possible.
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The SAGES Fundamental Use of Surgical Energy program (FUSE): History, Development, and purpose.
Surgical endoscopy, 2017Co-Authors: P. Fuchshuber, S. Schwaitzberg, S. B. Jones, G. Purcell-jackson, Daniel B. Jones, Liane S. Feldman, Malcolm G. Munro, Thomas N. Robinson, Dean J. Mikami, A. MadaniAbstract:Adverse events due to energy device use in surgical operating rooms are a daily occurrence. These occur at a rate of approximately 1–2 per 1000 operations. Hundreds of operating room fires occur each year in the United States, some causing severe injury and even mortality. The Society of American Gastrointestinal and Endoscopic Surgeons (SAGES) therefore created the first comprehensive educational curriculum on the safe use of surgical energy devices, called Fundamental Use of Surgical Energy (FUSE). This paper describes the History, Development, and purpose of this important training program for all members of the operating room team. The databases of SAGES and the FUSE committee as well as personal photographs and documents of members of the FUSE task force were used to establish a brief History of the FUSE program from its inception to its current status. The authors were able to detail all aspects of the History, Development, and national as well as global implementation of the third SAGES Fundamentals Program FUSE. The written documentation of the making of FUSE is an important contribution to the History and mission of SAGES and allows the reader to understand the idea, concept, realization, and implementation of the only free online educational tool for physicians on energy devices available today. FUSE is the culmination of the SAGES efforts to recognize gaps in patient safety and develop state-of-the-art educational programs to address those gaps. It is the goal of the FUSE task force to ensure that general FUSE implementation becomes multinational, involving as many countries as possible.
S. Dubascoux - One of the best experts on this subject based on the ideXlab platform.
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field flow fractionation and inductively coupled plasma mass spectrometer coupling History Development and applications
Journal of Analytical Atomic Spectrometry, 2010Co-Authors: S. Dubascoux, M. Hassellöv, F. Von Der Kammer, Le I Hecho, Potin M Gautier, G. LespesAbstract:Field-Flow Fractionation (FFF) is now recognised as a versatile pool of techniques allowing particle size or molar mass to be obtained in a wide variety of samples covering numerous applications in the fields of environment, materials or biology. In the same time, Inductively Coupled Plasma-Mass Spectrometry (ICP-MS) has an indisputable place in the field of elemental detectors and the coupling between FFF and ICP-MS can be considered as an emerging technique capable to reach relevant physico-chemical information at sub-micrometre scale and trace element concentration level. This paper gives some key elements of FFF-based fractionation linking theory and practical analytical aspects, from injection and preconcentration to analysis. The different components of the coupling are described. Summary tables of the main operating conditions of FFF-ICP-MS coupling are presented and operating conditions such as carrier composition, flow and nebulizers are discussed. Special attention is given to the FFF-ICP-MS interface. Qualitative and quantitative analysis is also discussed. Applications in the fields of environment, bioanalysis and nanoparticles are presented in order to illustrate the potentialities of such coupling.
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Field-flow fractionation and inductively coupled plasma mass spectrometer coupling: History, Development and applications
Journal of Analytical Atomic Spectrometry, 2010Co-Authors: S. Dubascoux, I. Le Hécho, M. Hassellöv, F. Von Der Kammer, M. Potin Gautier, G. LespesAbstract:Field-Flow Fractionation (FFF) is now recognised as a versatile pool of techniques allowing particle size or molar mass to be obtained in a wide variety of samples covering numerous applications in the fields of environment, materials or biology. In the same time, Inductively Coupled Plasma-Mass Spectrometry (ICP-MS) has an indisputable place in the field of elemental detectors and the coupling between FFF and ICP-MS can be considered as an emerging technique capable to reach relevant physico-chemical information at sub-micrometre scale and trace element concentration level. This paper gives some key elements of FFF-based fractionation linking theory and practical analytical aspects, from injection and preconcentration to analysis. The different components of the coupling are described. Summary tables of the main operating conditions of FFF-ICP-MS coupling are presented and operating conditions such as carrier composition, flow and nebulizers are discussed. Special attention is given to the FFF-ICP-MS interface. Qualitative and quantitative analysis is also discussed. Applications in the fields of environment, bioanalysis and nanoparticles are presented in order to illustrate the potentialities of such coupling. © The Royal Society of Chemistry 2010.
S. Schwaitzberg - One of the best experts on this subject based on the ideXlab platform.
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The SAGES Fundamental Use of Surgical Energy program (FUSE): History, Development, and purpose
Surgical Endoscopy, 2018Co-Authors: P. Fuchshuber, S. Schwaitzberg, D. Jones, S. B. Jones, L. Feldman, M. Munro, T. Robinson, G. Purcell-jackson, D. Mikami, A. MadaniAbstract:Background Adverse events due to energy device use in surgical operating rooms are a daily occurrence. These occur at a rate of approximately 1–2 per 1000 operations. Hundreds of operating room fires occur each year in the United States, some causing severe injury and even mortality. The Society of American Gastrointestinal and Endoscopic Surgeons (SAGES) therefore created the first comprehensive educational curriculum on the safe use of surgical energy devices, called Fundamental Use of Surgical Energy (FUSE). This paper describes the History, Development, and purpose of this important training program for all members of the operating room team. Methods The databases of SAGES and the FUSE committee as well as personal photographs and documents of members of the FUSE task force were used to establish a brief History of the FUSE program from its inception to its current status. Results The authors were able to detail all aspects of the History, Development, and national as well as global implementation of the third SAGES Fundamentals Program FUSE. Conclusions The written documentation of the making of FUSE is an important contribution to the History and mission of SAGES and allows the reader to understand the idea, concept, realization, and implementation of the only free online educational tool for physicians on energy devices available today. FUSE is the culmination of the SAGES efforts to recognize gaps in patient safety and develop state-of-the-art educational programs to address those gaps. It is the goal of the FUSE task force to ensure that general FUSE implementation becomes multinational, involving as many countries as possible.
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The SAGES Fundamental Use of Surgical Energy program (FUSE): History, Development, and purpose.
Surgical endoscopy, 2017Co-Authors: P. Fuchshuber, S. Schwaitzberg, S. B. Jones, G. Purcell-jackson, Daniel B. Jones, Liane S. Feldman, Malcolm G. Munro, Thomas N. Robinson, Dean J. Mikami, A. MadaniAbstract:Adverse events due to energy device use in surgical operating rooms are a daily occurrence. These occur at a rate of approximately 1–2 per 1000 operations. Hundreds of operating room fires occur each year in the United States, some causing severe injury and even mortality. The Society of American Gastrointestinal and Endoscopic Surgeons (SAGES) therefore created the first comprehensive educational curriculum on the safe use of surgical energy devices, called Fundamental Use of Surgical Energy (FUSE). This paper describes the History, Development, and purpose of this important training program for all members of the operating room team. The databases of SAGES and the FUSE committee as well as personal photographs and documents of members of the FUSE task force were used to establish a brief History of the FUSE program from its inception to its current status. The authors were able to detail all aspects of the History, Development, and national as well as global implementation of the third SAGES Fundamentals Program FUSE. The written documentation of the making of FUSE is an important contribution to the History and mission of SAGES and allows the reader to understand the idea, concept, realization, and implementation of the only free online educational tool for physicians on energy devices available today. FUSE is the culmination of the SAGES efforts to recognize gaps in patient safety and develop state-of-the-art educational programs to address those gaps. It is the goal of the FUSE task force to ensure that general FUSE implementation becomes multinational, involving as many countries as possible.