Workload Differentiates Breast Surgical Procedures: NSM Associated with Higher Workload Demand than SSM
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M. Susan Hallbeck | Heidi Nelson | David R. Farley | Judy C. Boughey | Bethany R. Lowndes | Melissa Morrow | Renaldo C. Blocker | Anna R. Linden | Katherine E. Law | M. Hallbeck | A. Degnim | H. Nelson | J. Boughey | D. Farley | K. Law | S. Cain | T. Hieken | B. Lowndes | M. Morrow | Amy C. Degnim | Tina J. Hieken | Stephen M. Cain | J. Jakub | James W. Jakub | Jennifer M. Racz | J. Racz
[1] J. Ruiz-Rabelo,et al. Validation of the NASA-TLX Score in Ongoing Assessment of Mental Workload During a Laparoscopic Learning Curve in Bariatric Surgery , 2015, Obesity Surgery.
[2] J. Korndorffer,et al. Robotic assistance improves intracorporeal suturing performance and safety in the operating room while decreasing operator workload , 2010, Surgical Endoscopy.
[3] T. Hernandez-Boussard,et al. The aching surgeon: a survey of physical discomfort and symptoms following open, laparoscopic, and robotic surgery , 2012, Journal of Robotic Surgery.
[4] Svend Erik Mathiassen,et al. Work above shoulder level and degenerative alterations of the rotator cuff tendons: a magnetic resonance imaging study. , 2004, Arthritis and rheumatism.
[5] M. Hallbeck,et al. Operating hurts: a study of EAES surgeons , 2018, Surgical Endoscopy.
[6] Bernard T. Lee,et al. Prevalence of Work-Related Musculoskeletal Disorders Among Surgeons and Interventionalists: A Systematic Review and Meta-analysis , 2017, JAMA surgery.
[7] Renaldo C. Blocker,et al. NASA-TLX Assessment of Surgeon Workload Variation Across Specialties. , 2020, Annals of surgery.
[8] Nabeel A. Arain,et al. Proficiency-based training for robotic surgery: construct validity, workload, and expert levels for nine inanimate exercises , 2012, Surgical Endoscopy.
[9] S. Hart,et al. Development of NASA-TLX (Task Load Index): Results of Empirical and Theoretical Research , 1988 .
[10] Jeffrey E. Lee,et al. Surgeon symptoms, strain, and selections: Systematic review and meta-analysis of surgical ergonomics , 2018, Annals of medicine and surgery.
[11] J P Bonde,et al. Work related shoulder disorders: quantitative exposure-response relations with reference to arm posture , 2004, Occupational and Environmental Medicine.
[12] Renaldo C. Blocker,et al. NASA-Task Load Index Differentiates Surgical Approach: Opportunities for Improvement in Colon and Rectal Surgery. , 2020, Annals of surgery.
[13] M. Hallbeck,et al. Surgical team workload comparison for 4-port and single-port laparoscopic cholecystectomy procedures. , 2019, Applied ergonomics.
[14] F C T van der Helm,et al. Functionally interpretable local coordinate systems for the upper extremity using inertial & magnetic measurement systems. , 2010, Journal of biomechanics.
[15] Karen Søgaard,et al. Musculoskeletal pain among surgeons performing minimally invasive surgery: a systematic review , 2017, Surgical Endoscopy.
[16] B. Bernard,et al. Musculoskeletal disorders and workplace factors: a critical review of epidemiologic evidence for work-related musculoskeletal disorders of the neck, upper extremity, and low back , 1997 .
[17] A. Park,et al. Intraoperative "Micro Breaks" With Targeted Stretching Enhance Surgeon Physical Function and Mental Focus: A Multicenter Cohort Study. , 2017, Annals of surgery.
[18] Domenico Formica,et al. A New Calibration Methodology for Thorax and Upper Limbs Motion Capture in Children Using Magneto and Inertial Sensors , 2014, Sensors.
[19] Adrian Park,et al. Prospective Study Comparing Surgeons’ Pain and Fatigue Associated with Nipple-Sparing versus Skin-Sparing Mastectomy , 2017, Annals of Surgical Oncology.
[20] Sandra G. Hart,et al. Nasa-Task Load Index (NASA-TLX); 20 Years Later , 2006 .
[21] Frank Willem Jansen,et al. Prevalence of Musculoskeletal Disorders Among Surgeons Performing Minimally Invasive Surgery: A Systematic Review , 2017, Annals of surgery.
[22] Melina C Vassiliou,et al. A global assessment tool for evaluation of intraoperative laparoscopic skills. , 2005, American journal of surgery.
[23] R. Rittner,et al. Exposure-response relationships for work-related neck and shoulder musculoskeletal disorders--Analyses of pooled uniform data sets. , 2016, Applied ergonomics.
[24] B. Jonsson,et al. Standardised Nordic questionnaires for the analysis of musculoskeletal symptoms. , 1987, Applied ergonomics.
[25] Kenton R Kaufman,et al. Validation of Inertial Measurement Units for Upper Body Kinematics. , 2017, Journal of applied biomechanics.
[26] E. Whitcomb,et al. Ergonomics in Surgery: A Review , 2017, Female pelvic medicine & reconstructive surgery.
[27] Angelo M. Sabatini,et al. Quaternion-based extended Kalman filter for determining orientation by inertial and magnetic sensing , 2006, IEEE Transactions on Biomedical Engineering.
[28] M. Hallbeck,et al. Physical discomfort, professional satisfaction, and burnout in vascular surgeons. , 2019, Journal of vascular surgery.
[29] M S Hallbeck,et al. The impact of intraoperative microbreaks with exercises on surgeons: A multi-center cohort study. , 2017, Applied ergonomics.
[30] Mark R. Wilson,et al. Development and Validation of a Surgical Workload Measure: The Surgery Task Load Index (SURG-TLX) , 2011, World Journal of Surgery.
[31] P. Savage. Strapdown Inertial Navigation Integration Algorithm Design Part 1: Attitude Algorithms , 1998 .
[32] D. Dorion,et al. Do Micropauses Prevent Surgeon's Fatigue and Loss of Accuracy Associated With Prolonged Surgery? An Experimental Prospective Study , 2013, Annals of surgery.
[33] M. Hallbeck,et al. Impact of single-incision laparoscopic cholecystectomy (SILC) versus conventional laparoscopic cholecystectomy (CLC) procedures on surgeon stress and workload: a randomized controlled trial , 2015, Surgical Endoscopy.
[34] L McAtamney,et al. RULA: a survey method for the investigation of work-related upper limb disorders. , 1993, Applied ergonomics.
[35] Dimitrios Stefanidis,et al. Higher Mental Workload is Associated With Poorer Laparoscopic Performance as Measured by the NASA-TLX Tool , 2010, Simulation in healthcare : journal of the Society for Simulation in Healthcare.
[36] Rachel V. Vitali,et al. Quantifying performance and effects of load carriage during a challenging balancing task using an array of wireless inertial sensors. , 2016, Gait & posture.