Matthew M Dedmon 1 , Paul M Paddle 2 , Jeananne Phillips 2 , Leo Kobayashi 3 , Ramon A Franco 2 , Phillip C Song 2 . Show Affiliations »
Abstract
OBJECTIVE: Design and validate a laryngeal surgical simulator to teach phonomicrosurgical techniques. STUDY DESIGN: Device development and prospective validation. SETTING: Tertiary medical center. SUBJECTS AND METHODS: A novel laryngeal fixation device and custom laryngoscope were produced for use with ex vivo porcine larynx specimens. Vocal fold lesions such as nodules and keratotic lesions were simulated with silicone injections and epithelial markings. A prospective validation using postsimulation surveys, global rating scales, and procedure-specific checklists was performed with a group of 15 medical students, otolaryngology residents, fellows, and attending laryngologists. Three procedures were performed: vocal fold augmentation, excision of a simulated vocal fold nodule, and excision of a simulated vocal fold keratosis. RESULTS: Participants overwhelmingly agreed that the simulator provided a realistic dissection experience that taught skills that would transfer to real operating scenarios. Expert performance was statistically superior to novice performance for excision of simulated vocal fold nodules and keratotic lesions, while no difference was observed for injection laryngoplasty. CONCLUSION: The ability to learn and rehearse surgical procedures in a safe environment is invaluable, particularly for delicate and highly technical phonomicrosurgical operations. We have developed a high-fidelity laryngeal surgical simulator complete with pathological lesions such as nodules and keratoses to teach these procedures. A prospective study demonstrated validity of our global rating scale and checklist assessments for vocal fold nodule and keratosis excision procedures, allowing them to be confidently incorporated into phonomicrosurgical training programs for surgeons of all levels of expertise. © American Academy of Otolaryngology—Head and Neck Surgery Foundation 2015.
OBJECTIVE: Design and validate a laryngeal surgical simulator to teach phonomicrosurgical techniques. STUDY DESIGN: Device development and prospective validation. SETTING: Tertiary medical center. SUBJECTS AND METHODS: A novel laryngeal fixation device and custom laryngoscope were produced for use with ex vivo porcine larynx specimens. Vocal fold lesions such as nodules and keratotic lesions were simulated with silicone injections and epithelial markings. A prospective validation using postsimulation surveys, global rating scales, and procedure-specific checklists was performed with a group of 15 medical students, otolaryngology residents, fellows, and attending laryngologists. Three procedures were performed: vocal fold augmentation, excision of a simulated vocal fold nodule, and excision of a simulated vocal fold keratosis . RESULTS: Participants overwhelmingly agreed that the simulator provided a realistic dissection experience that taught skills that would transfer to real operating scenarios. Expert performance was statistically superior to novice performance for excision of simulated vocal fold nodules and keratotic lesions , while no difference was observed for injection laryngoplasty. CONCLUSION: The ability to learn and rehearse surgical procedures in a safe environment is invaluable, particularly for delicate and highly technical phonomicrosurgical operations. We have developed a high-fidelity laryngeal surgical simulator complete with pathological lesions such as nodules and keratoses to teach these procedures. A prospective study demonstrated validity of our global rating scale and checklist assessments for vocal fold nodule and keratosis excision procedures, allowing them to be confidently incorporated into phonomicrosurgical training programs for surgeons of all levels of expertise. © American Academy of Otolaryngology—Head and Neck Surgery Foundation 2015.
Entities: Chemical
Disease
Species
Keywords:
education; laryngeal surgery; laryngology; phonomicrosurgery; simulation; validation
Mesh: See more »
Year: 2015
PMID: 26138605 DOI: 10.1177/0194599815590118
Source DB: PubMed Journal: Otolaryngol Head Neck Surg ISSN: 0194-5998 Impact factor: 3.497