The Experts below are selected from a list of 150 Experts worldwide ranked by ideXlab platform

Gabrielle J M Tuijthof - One of the best experts on this subject based on the ideXlab platform.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels
    Knee Surgery Sports Traumatology Arthroscopy, 2016
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Sophie J. Baalen, Tim Horeman, Philippe Liverneaux, Gabrielle J M Tuijthof
    Abstract:

    PurposeTo facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.MethodsWe developed a set-up to mount a cadaver wrist to a 3D force platform that allowed measurement of the forces exerted on the wrist. Six Experts in wrist arthroscopy performed two tasks: (1) Introduction of the camera and visualization of the hook. (2) Navigation through the wrist with visualization of five anatomic structures. The magnitude (Fabs) and direction of force were recorded, with the direction defined as α being the angle in the vertical plane and β being the angle in the horizontal plane. The 10th–90th percentile of the data were used to set threshold levels for Training.ResultsThe results show distinct force patterns for each of the anatomic landmarks. Median Fabs of the navigation task is 3.8 N (1.8–7.3), α is 3.60 (−54–44) and β is 260 (0–72).ConclusionUnique Expert data on navigation forces during wrist arthroscopy were determined. The defined maximum allowable navigation force of 7.3 N (90th percentile) can be used in providing feedback on performance during skills Training. The clinical value is that this study contributes to objective assessment of skills levels.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels.
    Knee surgery sports traumatology arthroscopy : official journal of the ESSKA, 2014
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Tim Horeman, Philippe Liverneaux, Sophie Jacobine Van Baalen, Gabrielle J M Tuijthof
    Abstract:

    Purpose To facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.

M. C. Obdeijn - One of the best experts on this subject based on the ideXlab platform.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels
    Knee Surgery Sports Traumatology Arthroscopy, 2016
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Sophie J. Baalen, Tim Horeman, Philippe Liverneaux, Gabrielle J M Tuijthof
    Abstract:

    PurposeTo facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.MethodsWe developed a set-up to mount a cadaver wrist to a 3D force platform that allowed measurement of the forces exerted on the wrist. Six Experts in wrist arthroscopy performed two tasks: (1) Introduction of the camera and visualization of the hook. (2) Navigation through the wrist with visualization of five anatomic structures. The magnitude (Fabs) and direction of force were recorded, with the direction defined as α being the angle in the vertical plane and β being the angle in the horizontal plane. The 10th–90th percentile of the data were used to set threshold levels for Training.ResultsThe results show distinct force patterns for each of the anatomic landmarks. Median Fabs of the navigation task is 3.8 N (1.8–7.3), α is 3.60 (−54–44) and β is 260 (0–72).ConclusionUnique Expert data on navigation forces during wrist arthroscopy were determined. The defined maximum allowable navigation force of 7.3 N (90th percentile) can be used in providing feedback on performance during skills Training. The clinical value is that this study contributes to objective assessment of skills levels.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels.
    Knee surgery sports traumatology arthroscopy : official journal of the ESSKA, 2014
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Tim Horeman, Philippe Liverneaux, Sophie Jacobine Van Baalen, Gabrielle J M Tuijthof
    Abstract:

    Purpose To facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.

Lisanne L. Boer - One of the best experts on this subject based on the ideXlab platform.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels
    Knee Surgery Sports Traumatology Arthroscopy, 2016
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Sophie J. Baalen, Tim Horeman, Philippe Liverneaux, Gabrielle J M Tuijthof
    Abstract:

    PurposeTo facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.MethodsWe developed a set-up to mount a cadaver wrist to a 3D force platform that allowed measurement of the forces exerted on the wrist. Six Experts in wrist arthroscopy performed two tasks: (1) Introduction of the camera and visualization of the hook. (2) Navigation through the wrist with visualization of five anatomic structures. The magnitude (Fabs) and direction of force were recorded, with the direction defined as α being the angle in the vertical plane and β being the angle in the horizontal plane. The 10th–90th percentile of the data were used to set threshold levels for Training.ResultsThe results show distinct force patterns for each of the anatomic landmarks. Median Fabs of the navigation task is 3.8 N (1.8–7.3), α is 3.60 (−54–44) and β is 260 (0–72).ConclusionUnique Expert data on navigation forces during wrist arthroscopy were determined. The defined maximum allowable navigation force of 7.3 N (90th percentile) can be used in providing feedback on performance during skills Training. The clinical value is that this study contributes to objective assessment of skills levels.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels.
    Knee surgery sports traumatology arthroscopy : official journal of the ESSKA, 2014
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Tim Horeman, Philippe Liverneaux, Sophie Jacobine Van Baalen, Gabrielle J M Tuijthof
    Abstract:

    Purpose To facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.

Philippe Liverneaux - One of the best experts on this subject based on the ideXlab platform.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels
    Knee Surgery Sports Traumatology Arthroscopy, 2016
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Sophie J. Baalen, Tim Horeman, Philippe Liverneaux, Gabrielle J M Tuijthof
    Abstract:

    PurposeTo facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.MethodsWe developed a set-up to mount a cadaver wrist to a 3D force platform that allowed measurement of the forces exerted on the wrist. Six Experts in wrist arthroscopy performed two tasks: (1) Introduction of the camera and visualization of the hook. (2) Navigation through the wrist with visualization of five anatomic structures. The magnitude (Fabs) and direction of force were recorded, with the direction defined as α being the angle in the vertical plane and β being the angle in the horizontal plane. The 10th–90th percentile of the data were used to set threshold levels for Training.ResultsThe results show distinct force patterns for each of the anatomic landmarks. Median Fabs of the navigation task is 3.8 N (1.8–7.3), α is 3.60 (−54–44) and β is 260 (0–72).ConclusionUnique Expert data on navigation forces during wrist arthroscopy were determined. The defined maximum allowable navigation force of 7.3 N (90th percentile) can be used in providing feedback on performance during skills Training. The clinical value is that this study contributes to objective assessment of skills levels.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels.
    Knee surgery sports traumatology arthroscopy : official journal of the ESSKA, 2014
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Tim Horeman, Philippe Liverneaux, Sophie Jacobine Van Baalen, Gabrielle J M Tuijthof
    Abstract:

    Purpose To facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.

Tim Horeman - One of the best experts on this subject based on the ideXlab platform.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels
    Knee Surgery Sports Traumatology Arthroscopy, 2016
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Sophie J. Baalen, Tim Horeman, Philippe Liverneaux, Gabrielle J M Tuijthof
    Abstract:

    PurposeTo facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.MethodsWe developed a set-up to mount a cadaver wrist to a 3D force platform that allowed measurement of the forces exerted on the wrist. Six Experts in wrist arthroscopy performed two tasks: (1) Introduction of the camera and visualization of the hook. (2) Navigation through the wrist with visualization of five anatomic structures. The magnitude (Fabs) and direction of force were recorded, with the direction defined as α being the angle in the vertical plane and β being the angle in the horizontal plane. The 10th–90th percentile of the data were used to set threshold levels for Training.ResultsThe results show distinct force patterns for each of the anatomic landmarks. Median Fabs of the navigation task is 3.8 N (1.8–7.3), α is 3.60 (−54–44) and β is 260 (0–72).ConclusionUnique Expert data on navigation forces during wrist arthroscopy were determined. The defined maximum allowable navigation force of 7.3 N (90th percentile) can be used in providing feedback on performance during skills Training. The clinical value is that this study contributes to objective assessment of skills levels.

  • Navigation forces during wrist arthroscopy: assessment of Expert levels.
    Knee surgery sports traumatology arthroscopy : official journal of the ESSKA, 2014
    Co-Authors: M. C. Obdeijn, Lisanne L. Boer, Tim Horeman, Philippe Liverneaux, Sophie Jacobine Van Baalen, Gabrielle J M Tuijthof
    Abstract:

    Purpose To facilitate effective and efficient Training in skills laboratory, objective metrics can be used. Forces exerted on the tissues can be a measure of safe tissue manipulation. To provide feedback during Training, Expert threshold levels need to be determined. The purpose of this study was to define the magnitude and the direction of navigation forces used during arthroscopic inspection of the wrist.