Literature DB >> 33001424

Teaching medical applications and workflow of three-dimensional printing to medical students: Results of a pilot elective course.

Jarosław Meyer-Szary1, Agastya Patel2, Marlon Souza Luis1, Robert Sabiniewicz1, Joanna Kwiatkowska1.   

Abstract

Year:  2020        PMID: 33001424      PMCID: PMC8079094          DOI: 10.5603/CJ.a2020.0128

Source DB:  PubMed          Journal:  Cardiol J        ISSN: 1898-018X            Impact factor:   2.737


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  8 in total

Review 1.  Three-dimensional printing in cardiology: Current applications and future challenges.

Authors:  Hongxing Luo; Jarosław Meyer-Szary; Zhongmin Wang; Robert Sabiniewicz; Yuhao Liu
Journal:  Cardiol J       Date:  2017-05-25       Impact factor: 2.737

2.  Three-dimensional intracranial middle cerebral artery aneurysm models for aneurysm surgery and training.

Authors:  Liang Wang; Xun Ye; Qiang Hao; Li Ma; Xiaolin Chen; Hao Wang; Yuanli Zhao
Journal:  J Clin Neurosci       Date:  2018-02-10       Impact factor: 1.961

3.  Feasibility of in-house rapid prototyping of cardiovascular three-dimensional models for planning and training non-standard interventional procedures.

Authors:  Jarosław Meyer-Szary; Lidia Woźniak-Mielczarek; Dominika Sabiniewicz; Robert Sabiniewicz
Journal:  Cardiol J       Date:  2019       Impact factor: 2.737

4.  "Just-In-Time" Simulation Training Using 3-D Printed Cardiac Models After Congenital Cardiac Surgery.

Authors:  Laura J Olivieri; Lillian Su; Conor F Hynes; Axel Krieger; Fahad A Alfares; Karthik Ramakrishnan; David Zurakowski; M Blair Marshall; Peter C W Kim; Richard A Jonas; Dilip S Nath
Journal:  World J Pediatr Congenit Heart Surg       Date:  2016-03

5.  Use of 3D models of congenital heart disease as an education tool for cardiac nurses.

Authors:  Giovanni Biglino; Claudio Capelli; Despina Koniordou; Di Robertshaw; Lindsay-Kay Leaver; Silvia Schievano; Andrew M Taylor; Jo Wray
Journal:  Congenit Heart Dis       Date:  2016-09-26       Impact factor: 2.007

6.  The role of three-dimensional printed models of skull in anatomy education: a randomized controlled trail.

Authors:  Shi Chen; Zhouxian Pan; Yanyan Wu; Zhaoqi Gu; Man Li; Ze Liang; Huijuan Zhu; Yong Yao; Wuyang Shui; Zhen Shen; Jun Zhao; Hui Pan
Journal:  Sci Rep       Date:  2017-04-03       Impact factor: 4.379

7.  Patient-specific 3D printed and augmented reality kidney and prostate cancer models: impact on patient education.

Authors:  Nicole Wake; Andrew B Rosenkrantz; Richard Huang; Katalina U Park; James S Wysock; Samir S Taneja; William C Huang; Daniel K Sodickson; Hersh Chandarana
Journal:  3D Print Med       Date:  2019-02-19

8.  Melody valve implantation pre-procedural planning using custom-made 3D printed model of the region of interest.

Authors:  Robert Sabiniewicz; Jarosław Meyer-Szary; Piotr Potaż; Dariusz Jagielak; Tomasz Moszura
Journal:  Postepy Kardiol Interwencyjnej       Date:  2018-06-19       Impact factor: 1.426

  8 in total
  1 in total

Review 1.  The Role of 3D Printing in Planning Complex Medical Procedures and Training of Medical Professionals-Cross-Sectional Multispecialty Review.

Authors:  Jarosław Meyer-Szary; Marlon Souza Luis; Szymon Mikulski; Agastya Patel; Finn Schulz; Dmitry Tretiakow; Justyna Fercho; Kinga Jaguszewska; Mikołaj Frankiewicz; Ewa Pawłowska; Radosław Targoński; Łukasz Szarpak; Katarzyna Dądela; Robert Sabiniewicz; Joanna Kwiatkowska
Journal:  Int J Environ Res Public Health       Date:  2022-03-11       Impact factor: 3.390

  1 in total

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