Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology

Introduction: Training in intraventricular endoscopy is particularly challenging because the volume of cases is relatively small and the techniques involved are unlike those usually used in conventional neurosurgery. Present training models are inadequate for various reasons. Using 3-dimensional (3D...

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Main Authors: Waran, V., Narayanan, V., Karuppiah, R.P., Thambynayagam, H.C., Muthusamy, K.A., Rahman, Z.A.A., Kirollos, R.W.
Format: Article
Language:en
Published: 2015
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Online Access:http://eprints.um.edu.my/13521/1/Neurosurgical_Endoscopic_Training_via_a_Realistic_3-Dimensional_Model_With_Pathology.pdf
http://eprints.um.edu.my/13521/
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author Waran, V.
Narayanan, V.
Karuppiah, R.P.
Thambynayagam, H.C.
Muthusamy, K.A.
Rahman, Z.A.A.
Kirollos, R.W.
author_facet Waran, V.
Narayanan, V.
Karuppiah, R.P.
Thambynayagam, H.C.
Muthusamy, K.A.
Rahman, Z.A.A.
Kirollos, R.W.
author_sort Waran, V.
building UM Library
collection Institutional Repository
content_provider Universiti Malaya
content_source UM Research Repository
continent Asia
country Malaysia
description Introduction: Training in intraventricular endoscopy is particularly challenging because the volume of cases is relatively small and the techniques involved are unlike those usually used in conventional neurosurgery. Present training models are inadequate for various reasons. Using 3-dimensional (3D) printing techniques, models with pathology can be created using actual patient's imaging data. This technical article introduces a new training model based on a patient with hydrocephalus secondary to a pineal tumour, enabling the models to be used to simulate third ventriculostomies and pineal biopsies. Methods: Multiple models of the head of a patient with hydrocephalus were created using 3D rapid prototyping technique. These models were modified to allow for a fluid-filled ventricular system under appropriate tension. The models were qualitatively assessed in the various steps involved in an endoscopic third ventriculostomy and intraventricular biopsy procedure, initially by 3 independent neurosurgeons and subsequently by 12 participants of an intraventricular endoscopy workshop. Results: All 3 surgeons agreed on the ease and usefulness of these models in the teaching of endoscopic third ventriculostomy, performing endoscopic biopsies, and the integration of navigation to ventriculoscopy. Their overall score for the ventricular model realism was above average. The 12 participants of the intraventricular endoscopy workshop averaged between a score of 4.0 to 4.6 of 5 for every individual step of the procedure. Discussion: Neurosurgical endoscopic training currently is a long process of stepwise training. These 3D printed models provide a realistic simulation environment for a neuroendoscopy procedure that allows safe and effective teaching of navigation and endoscopy in a standardized and repetitive fashion.
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spelling my.um.eprints-135212015-06-08T03:58:38Z http://eprints.um.edu.my/13521/ Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology Waran, V. Narayanan, V. Karuppiah, R.P. Thambynayagam, H.C. Muthusamy, K.A. Rahman, Z.A.A. Kirollos, R.W. RK Dentistry Introduction: Training in intraventricular endoscopy is particularly challenging because the volume of cases is relatively small and the techniques involved are unlike those usually used in conventional neurosurgery. Present training models are inadequate for various reasons. Using 3-dimensional (3D) printing techniques, models with pathology can be created using actual patient's imaging data. This technical article introduces a new training model based on a patient with hydrocephalus secondary to a pineal tumour, enabling the models to be used to simulate third ventriculostomies and pineal biopsies. Methods: Multiple models of the head of a patient with hydrocephalus were created using 3D rapid prototyping technique. These models were modified to allow for a fluid-filled ventricular system under appropriate tension. The models were qualitatively assessed in the various steps involved in an endoscopic third ventriculostomy and intraventricular biopsy procedure, initially by 3 independent neurosurgeons and subsequently by 12 participants of an intraventricular endoscopy workshop. Results: All 3 surgeons agreed on the ease and usefulness of these models in the teaching of endoscopic third ventriculostomy, performing endoscopic biopsies, and the integration of navigation to ventriculoscopy. Their overall score for the ventricular model realism was above average. The 12 participants of the intraventricular endoscopy workshop averaged between a score of 4.0 to 4.6 of 5 for every individual step of the procedure. Discussion: Neurosurgical endoscopic training currently is a long process of stepwise training. These 3D printed models provide a realistic simulation environment for a neuroendoscopy procedure that allows safe and effective teaching of navigation and endoscopy in a standardized and repetitive fashion. 2015 Article PeerReviewed application/pdf en http://eprints.um.edu.my/13521/1/Neurosurgical_Endoscopic_Training_via_a_Realistic_3-Dimensional_Model_With_Pathology.pdf Waran, V. and Narayanan, V. and Karuppiah, R.P. and Thambynayagam, H.C. and Muthusamy, K.A. and Rahman, Z.A.A. and Kirollos, R.W. (2015) Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology. Simulation in Healthcare, 10 (1). pp. 43-48. ISSN 1559-2332, DOI https://doi.org/10.1097/SIH.0000000000000060 <https://doi.org/10.1097/SIH.0000000000000060>. 10.1097/SIH.0000000000000060
spellingShingle RK Dentistry
Waran, V.
Narayanan, V.
Karuppiah, R.P.
Thambynayagam, H.C.
Muthusamy, K.A.
Rahman, Z.A.A.
Kirollos, R.W.
Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology
title Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology
title_full Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology
title_fullStr Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology
title_full_unstemmed Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology
title_short Neurosurgical endoscopic training via a realistic 3-dimensional model with pathology
title_sort neurosurgical endoscopic training via a realistic 3-dimensional model with pathology
topic RK Dentistry
url http://eprints.um.edu.my/13521/1/Neurosurgical_Endoscopic_Training_via_a_Realistic_3-Dimensional_Model_With_Pathology.pdf
http://eprints.um.edu.my/13521/
url_provider http://eprints.um.edu.my/