Fabrication and assessment of 3D printed anatomical models of the lower limb for anatomical teaching and femoral vessel access training in medicine
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Sven Reese | Robin N. M. Feeney | J. Jones | S. Reese | James F X Jones | M. O'Reilly | Therese Herlihy | T. Geoghegan | C. Cantwell | Robin N M Feeney | Colin P Cantwell | Michael K O'Reilly | Therese Herlihy | Tony Geoghegan | James Jones
[1] Caroline E. Webster,et al. Multi-material 3D Models for Temporal Bone Surgical Simulation , 2015, The Annals of otology, rhinology, and laryngology.
[2] Lei Tang,et al. Maximizing modern distribution of complex anatomical spatial information: 3D reconstruction and rapid prototype production of anatomical corrosion casts of human specimens , 2012, Anatomical sciences education.
[3] Dimitrios Stefanidis,et al. Evaluating the Impact of Simulation on Translational Patient Outcomes , 2011, Simulation in healthcare : journal of the Society for Simulation in Healthcare.
[4] M. Vaccarezza,et al. 3D printing: a valuable resource in human anatomy education , 2014, Anatomical Science International.
[5] A. W. Mix,et al. Standardized Polymer Durometry , 2011 .
[6] Colin J McCarthy,et al. Evaluation of the Particulate Concentration in a Gelatin‐Based Phantom for Sonographically Guided Lesion Biopsy , 2013, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[7] H. Motoike,et al. Clay modeling as a method to learn human muscles: A community college study , 2009, Anatomical sciences education.
[8] A. Carneiro,et al. Paraffin-gel tissue-mimicking material for ultrasound-guided needle biopsy phantom. , 2013, Ultrasound in medicine & biology.
[9] M. Stephens,et al. The forgotten foot - An assessment of foot and ankle radiograph pathology in final year medical students. , 2015, The surgeon : journal of the Royal Colleges of Surgeons of Edinburgh and Ireland.
[10] Takuro Tamura,et al. BodyParts3D: 3D structure database for anatomical concepts , 2008, Nucleic Acids Res..
[11] R. Watson,et al. A low-cost surgical application of additive fabrication. , 2014, Journal of surgical education.
[12] David A Cook,et al. Simulation-based objective assessment discerns clinical proficiency in central line placement: a construct validation. , 2010, Chest.
[13] Justin W. Adams,et al. The production of anatomical teaching resources using three‐dimensional (3D) printing technology , 2014, Anatomical sciences education.
[14] Sarah B. Williams,et al. “Let's Get Physical”: Advantages of a physical model over 3D computer models and textbooks in learning imaging anatomy , 2013, Anatomical sciences education.
[15] Axel Krieger,et al. Incorporating three-dimensional printing into a simulation-based congenital heart disease and critical care training curriculum for resident physicians. , 2015, Congenital heart disease.
[16] Oktay Akkus,et al. Evaluation of Skin and Subcutaneous Adipose Tissue Thickness for Optimal Insulin Injection , 2012 .
[17] Frederik L. Giesel,et al. 3D printing based on imaging data: review of medical applications , 2010, International Journal of Computer Assisted Radiology and Surgery.
[18] K. Bertoldi,et al. A Bioinspired Soft Actuated Material , 2014, Advanced materials.
[19] B. Turney,et al. A new model with an anatomically accurate human renal collecting system for training in fluoroscopy-guided percutaneous nephrolithotomy access. , 2014, Journal of endourology.
[20] C. Moore,et al. The student's dilemma, liver edition: Incorporating the sonographer's language into clinical anatomy education , 2015, Anatomical sciences education.
[21] D. Sindhusake,et al. Integration of medical imaging including ultrasound into a new clinical anatomy curriculum , 2015, Anatomical sciences education.
[22] Neal D Kravitz,et al. Three-dimensional printing technology. , 2014, Journal of clinical orthodontics : JCO.
[23] A. Krieger,et al. Utilizing Three-Dimensional Printing Technology to Assess the Feasibility of High-Fidelity Synthetic Ventricular Septal Defect Models for Simulation in Medical Education , 2014, World journal for pediatric & congenital heart surgery.
[24] J. Lévêque,et al. Mechanical properties and Young's modulus of human skin in vivo , 2004, Archives of Dermatological Research.
[25] M. Kern,et al. Real-time ultrasound guidance facilitates femoral arterial access and reduces vascular complications: FAUST (Femoral Arterial Access With Ultrasound Trial). , 2010, JACC. Cardiovascular interventions.
[26] Kresimir Petrinec,et al. Patient-Specific Cases for an Ultrasound Training Simulator , 2011, MMVR.
[27] Fernando Bello,et al. Developing An Immersive Ultrasound Guided Needle Puncture Simulator , 2009, MMVR.
[28] Fernando Bello,et al. Interventional radiology virtual simulator for liver biopsy , 2014, International Journal of Computer Assisted Radiology and Surgery.
[29] Scott F. Miller,et al. A pulsatile blood vessel system for a femoral arterial access clinical simulation model. , 2013, Medical engineering & physics.
[30] Imad S. Khan,et al. Prototyping of cerebral vasculature physical models , 2014, Surgical neurology international.
[31] Theodore L. Gerstle,et al. A Plastic Surgery Application in Evolution: Three-Dimensional Printing , 2014, Plastic and reconstructive surgery.
[32] Thomas Looi,et al. Use of 3-dimensional printing technology and silicone modeling in surgical simulation: development and face validation in pediatric laparoscopic pyeloplasty. , 2014, Journal of surgical education.
[33] D. Gould,et al. Virtual reality, ultrasound-guided liver biopsy simulator: development and performance discrimination. , 2012, The British journal of radiology.