Published on in Vol 5, No 1 (2019): Jan-Jun

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/12626, first published .
Increasing Access to Medical Training With Three-Dimensional Printing: Creation of an Endotracheal Intubation Model

Increasing Access to Medical Training With Three-Dimensional Printing: Creation of an Endotracheal Intubation Model

Increasing Access to Medical Training With Three-Dimensional Printing: Creation of an Endotracheal Intubation Model

Journals

  1. Bruns N. Blender. Der Unfallchirurg 2020;123(9):747 View
  2. Shaylor R, Verenkin V, Golden E, Matot I. The use of three-dimensional printing and virtual reality to develop a personalised airway plan in a 7.5-year-old child. European Journal of Anaesthesiology 2020;37(6):512 View
  3. Nagasaka A, Shimizu T, Minami T, Takenaka I. Anticipated difficult airway management using a model of the upper airway. Canadian Journal of Anesthesia/Journal canadien d'anesthésie 2020;67(8):1078 View
  4. Pang G, Futter C, Pincus J, Dhanani J, Laupland K. Development and testing of a low cost simulation manikin for extracorporeal cardiopulmonary resuscitation (ECPR) using 3-dimensional printing. Resuscitation 2020;149:24 View
  5. Boshra M, Godbout J, Perry J, Pan A. 3D printing in critical care: a narrative review. 3D Printing in Medicine 2020;6(1) View
  6. Andrés-Cano P, Calvo-Haro J, Fillat-Gomà F, Andrés-Cano I, Perez-Mañanes R. Papel del cirujano ortopédico y traumatólogo en la impresión 3D: aplicaciones actuales y aspectos legales para una medicina personalizada. Revista Española de Cirugía Ortopédica y Traumatología 2021;65(2):138 View
  7. Abeysekera N, Whitmore K, Abeysekera A, Pang G, Laupland K. Applications of 3D printing in critical care medicine: A scoping review. Anaesthesia and Intensive Care 2021;49(3):164 View
  8. Andrés-Cano P, Calvo-Haro J, Fillat-Gomà F, Andrés-Cano I, Perez-Mañanes R. Role of the orthopaedic surgeon in 3D printing: current applications and legal issues for a personalized medicine. Revista Española de Cirugía Ortopédica y Traumatología (English Edition) 2021;65(2):138 View
  9. Calvo-Haro J, Pascau J, Asencio-Pascual J, Calvo-Manuel F, Cancho-Gil M, Del Cañizo López J, Fanjul-Gómez M, García-Leal R, González-Casaurrán G, González-Leyte M, León-Luis J, Mediavilla-Santos L, Ochandiano-Caicoya S, Pérez-Caballero R, Ribed-Sánchez A, Río-Gómez J, Sánchez-Pérez E, Serrano-Andreu J, Tousidonis-Rial M, Vaquero-Martín J, García San José S, Perez-Mañanes R. Point-of-care manufacturing: a single university hospital’s initial experience. 3D Printing in Medicine 2021;7(1) View
  10. Ege D, Auflem M, Steinert M. Lost in Transit: Implications and Insights for Making Medical Task Trainer Prototypes with an Open Source Hardware Paradigm. Proceedings of the Design Society 2022;2:1253 View
  11. Kunkes T, Makled B, Norfleet J, Schwaitzberg S, Cavuoto L. Understanding the Cognitive Demands, Skills, and Assessment Approaches for Endotracheal Intubation: Cognitive Task Analysis. JMIR Perioperative Medicine 2022;5(1):e34522 View
  12. Okishev D, Cherebylo S, Konovalov A, Chelushkin D, Shekhtman O, Konovalov N, Okisheva E, Kravchuk A, Eliava S. Features of modeling a polymer implant for closing a defect after decompressive craniotomy. Voprosy neirokhirurgii imeni N.N. Burdenko 2022;86(1):17 View
  13. Puggelli L, Mencarelli M, Serio P, Furferi R, Amoretti F, Volpe Y. Development, implementation, and evaluation of a 3D‐printed high‐fidelity pediatric mannequin with expected hard‐to‐intubate airway. Engineering Reports 2024 View