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Bölek, Kerem A.; De Jong, Guido; Van der Zee, Catharina E. E. M.; Cappellen van Walsum, Anne-Marie; Henssen, Dylan J. H. A. – Anatomical Sciences Education, 2022
The use of augmented reality (AR) in teaching and studying neuroanatomy has been well researched. Previous research showed that AR-based learning of neuroanatomy has both alleviated cognitive load and was attractive to young learners. However, how the attractiveness of AR effects student motivation has not been discovered. Therefore, the…
Descriptors: Student Motivation, Computer Simulation, Neurology, Anatomy
James Booker; Charlotte Woodward; Charles Taylor; Alistair Robson; Scott Border – Anatomical Sciences Education, 2024
Online anatomical resources are rising in popularity since the COVID-19 pandemic, but the pedagogical principles and effectiveness of their use remain unclear. This article aims to demonstrate evidence-informed ways in which fellow educators can create engaging online learning resources in clinical neuroanatomy and compare the effectiveness of…
Descriptors: Anatomy, Science Instruction, Case Studies, Evidence Based Practice
Nadav Aridan; Michal Bernstein-Eliav; Dana Gamzo; Maya Schmeidler; Niv Tik; Ido Tavor – Anatomical Sciences Education, 2024
Anatomy studies are an essential part of medical training. The study of neuroanatomy in particular presents students with a unique challenge of three-dimensional spatial understanding. Virtual Reality (VR) has been suggested to address this challenge, yet the majority of previous reports have implemented computer-generated or imaging-based models…
Descriptors: Anatomy, Neurology, Electronic Learning, Computer Simulation
Rezende, Alice B.; de Oliveira, André G. F.; Vale, Thiago C.; Teixeira, Luciana A. S.; Lima, Alba R. A.; Lucchetti, Alessandra L. G.; Lucchetti, Giancarlo; Tibiriçá, Sandra H. C.; Ezequiel, Oscarina S. – Anatomical Sciences Education, 2020
Neuroanatomy is often considered a difficult subject to teach, due to its broad scope, multitude of terms, and high degree of complexity. Thus, newer educational strategies that facilitate learning while also stimulating students by allowing increased student autonomy and group discussions should be carefully considered. This study aimed to…
Descriptors: Neurology, Anatomy, Medical Education, Medical Students
Whiting, Harrison; Blackmore, Conner; Vitali, Julian; Langfield, Tracey; Colthorpe, Kay; Ernst, Hardy; Ainscough, Louise – International Journal of Higher Education, 2022
Anatomical dissections and prosected cadaveric specimens are currently believed to be the most beneficial delivery method for tertiary anatomy education. However, there is increasing demand within the tertiary medical education community for alternative delivery methods to complement current teaching practices, particularly in the complex field of…
Descriptors: Learning Theories, Blended Learning, Comparative Analysis, Teaching Methods
Smith, Claire F.; Freeman, Samuel K.; Heylings, David; Finn, Gabrielle M.; Davies, D. Ceri – Anatomical Sciences Education, 2022
Anatomical education in the United Kingdom (UK) and Ireland has long been under scrutiny, especially since the reforms triggered in 1993 by the General Medical Council's "Tomorrow's Doctors." The aim of the current study was to investigate the state of medical student anatomy education in the UK and Ireland in 2019. In all, 39 medical…
Descriptors: Anatomy, Medical Education, Medical Students, Followup Studies
Fernandes, Jacks; Teles, Ariel; Teixeira, Silmar – Education Sciences, 2020
Health education is one of the knowledge areas in which augmented reality (AR) technology is widespread, and it has been considered as a facilitator of the learning process. In literature, there are still few studies detailing the role of mobile AR in neuroanatomy. Specifically, for the spinal cord, the teaching-learning process may be hindered…
Descriptors: Health Education, Computer Simulation, Telecommunications, Handheld Devices
Karamaroudis, Stefanos; Poulogiannopoulou, Eleni; Sotiropoulos, Marinos G.; Kalantzis, Thomas; Johnson, Elizabeth O. – Anatomical Sciences Education, 2020
In light of the current shifts in medical education from traditional lectures to more active teaching modalities, a peer-teaching program was introduced to a compulsory, second-year neuroanatomy course. A cross-sectional survey of 527 medical students in the six-year medical program of the National and Kapodistrian University of Athens was…
Descriptors: Educational Change, Peer Teaching, Medical Education, Medical Students
Hlavac, Rebecca J.; Klaus, Rachel; Betts, Kourtney; Smith, Shilo M.; Stabio, Maureen E. – Anatomical Sciences Education, 2018
Medical schools in the United States continue to undergo curricular change, reorganization, and reformation as more schools transition to an integrated curriculum. Anatomy educators must find novel approaches to teach in a way that will bridge multiple disciplines. The cadaveric extraction of the central nervous system (CNS) provides an…
Descriptors: Anatomy, Medical Education, Teaching Methods, Human Body
Tan, Kevin; Chin, Han Xin; Yau, Christine W. L.; Lim, Erle C. H.; Samarasekera, Dujeepa; Ponnamperuma, Gominda; Tan, Nigel C. K. – Anatomical Sciences Education, 2018
Neuroanatomical localization (NL) is a key skill in neurology, but learners often have difficulty with it. This study aims to evaluate a concise NL tool (NLT) developed to help teach and learn NL. To evaluate the NLT, an extended-matching questions (EMQ) test to assess NL was designed and validated. The EMQ was validated with fourth-year medical…
Descriptors: Neurology, Anatomy, Teaching Methods, Test Construction
Sotgiu, Maria Alessandra; Mazzarello, Vittorio; Bandiera, Pasquale; Madeddu, Roberto; Montella, Andrea; Moxham, Bernard – Anatomical Sciences Education, 2020
Neuroanatomy has been deemed crucial for clinical neurosciences. It has been one of the most challenging parts of the anatomical curriculum and is one of the causes of "neurophobia," whose main implication is a negative influence on the choice of neurology in the near future. In the last decades, several educational strategies have been…
Descriptors: Neurology, Anatomy, Neurosciences, Learning Processes
Li, Ping; Chaby, Lauren E.; Legault, Jennifer; Braithwaite, Victoria A. – International Association for Development of the Information Society, 2015
By combining emerging technologies with cognitive and education theories, we are capitalizing on recent findings from adaptive exploration and embodied learning research to address significant gaps in the education of brain sciences for school children and college level students. Through the development of virtual learning tools in combination…
Descriptors: Teaching Methods, Educational Technology, Technology Uses in Education, Brain Hemisphere Functions
Peterson, Diana Coomes; Mlynarczyk, Gregory S.A. – Anatomical Sciences Education, 2016
This study examined whether student learning outcome measures are influenced by the addition of three-dimensional and digital teaching tools to a traditional dissection and lecture learning format curricula. The study was performed in a semester long graduate level course that incorporated both gross anatomy and neuroanatomy curricula. Methods…
Descriptors: Curriculum Design, Science Instruction, Anatomy, Outcomes of Education
Drapkin, Zachary A.; Lindgren, Kristen A.; Lopez, Michael J.; Stabio, Maureen E. – Anatomical Sciences Education, 2015
A computerized three-dimensional (3D) neuroanatomy teaching tool was developed for training medical students to identify subcortical structures on a magnetic resonance imaging (MRI) series of the human brain. This program allows the user to transition rapidly between two-dimensional (2D) MRI slices, 3D object composites, and a combined model in…
Descriptors: Teaching Methods, Educational Technology, Neurology, Anatomy
Pani, John R.; Chariker, Julia H.; Naaz, Farah; Mattingly, William; Roberts, Joshua; Sephton, Sandra E. – Advances in Health Sciences Education, 2014
Instruction of neuroanatomy depends on graphical representation and extended self-study. As a consequence, computer-based learning environments that incorporate interactive graphics should facilitate instruction in this area. The present study evaluated such a system in the undergraduate neuroscience classroom. The system used the method of…
Descriptors: Neurology, Anatomy, Computer Graphics, Computer Assisted Instruction
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