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应用无尸头脑模型和增强现实技术的神经外科学教育:从医学生实践模拟课程的初步经验。

Neurosurgical Education Using Cadaver-Free Brain Models and Augmented Reality: First Experiences from a Hands-On Simulation Course for Medical Students.

机构信息

Department of Neurosurgery, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, 10117 Berlin, Germany.

University Medical Center Hamburg-Eppendorf, 20251 Hamburg, Germany.

出版信息

Medicina (Kaunas). 2023 Oct 9;59(10):1791. doi: 10.3390/medicina59101791.


DOI:10.3390/medicina59101791
PMID:37893509
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10608257/
Abstract

: Neurosurgery has been underrepresented in the medical school curriculum. Advances in augmented reality and 3D printing have opened the way for early practical training through simulations. We assessed the usability of the UpSurgeOn simulation-based training model and report first experiences from a hands-on neurosurgery course for medical students. : We organized a two-day microneurosurgery simulation course tailored to medical students. On day one, three neurosurgeons demonstrated anatomical explorations with the help of life-like physical simulators (BrainBox, UpSurgeOn). The surgical field was projected onto large high-definition screens by a robotic-assisted exoscope (RoboticScope, BHS Technologies). On day two, the students were equipped with microsurgical instruments to explore the surgical anatomy of the pterional, temporal and endoscopic retrosigmoid approaches. With the help of the RoboticScope, they simulated five clipping procedures using the Aneurysm BrainBox. All medical students filled out a digital Likert-scale-based questionnaire to evaluate their experiences. : Sixteen medical students participated in the course. No medical students had previous experience with UpSurgeOn. All participants agreed that the app helped develop anatomical orientation. They unanimously agreed that this model should be part of residency training. Fourteen out of sixteen students felt that the course solidified their decision to pursue neurosurgery. The same fourteen students rated their learning experience as totally positive, and the remaining two rated it as rather positive. : The UpSurgeOn educational app and cadaver-free models were perceived as usable and effective tools for the hands-on neuroanatomy and neurosurgery teaching of medical students. Comparative studies may help measure the long-term benefits of UpSurgeOn-assisted teaching over conventional resources.

摘要

神经外科学在医学院课程中代表性不足。增强现实和 3D 打印技术的进步为通过模拟进行早期实践培训开辟了道路。我们评估了基于 UpSurgeOn 模拟的培训模型的可用性,并报告了针对医学生的神经外科技能课程的初步经验。

我们组织了为期两天的微创神经外科模拟课程,专门针对医学生。第一天,三位神经外科医生在逼真的物理模拟器(BrainBox,UpSurgeOn)的帮助下进行了解剖探索。手术区域通过机器人辅助内窥镜(RoboticScope,BHS Technologies)投射到大型高清屏幕上。第二天,学生配备了微创手术器械,探索翼点、颞部和内镜后颅窝入路的手术解剖结构。在 RoboticScope 的帮助下,他们使用 Aneurysm BrainBox 模拟了五个夹闭手术。所有医学生都填写了一份基于数字李克特量表的问卷,以评估他们的体验。

16 名医学生参加了该课程。没有医学生有使用过 UpSurgeOn 的经验。所有参与者都认为该应用程序有助于培养解剖定位能力。他们一致认为该模型应该成为住院医师培训的一部分。16 名学生中有 14 名表示该课程坚定了他们从事神经外科的决心。这 14 名学生认为他们的学习体验完全是积极的,而其余两名学生认为学习体验相当积极。

UpSurgeOn 教育应用程序和无尸体模型被认为是医学生神经解剖学和神经外科技能教学的有用且有效的工具。比较研究可能有助于衡量使用 UpSurgeOn 辅助教学相对于传统资源的长期益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/eb9445428f5f/medicina-59-01791-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/29dc33019a88/medicina-59-01791-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/2b70ade654ee/medicina-59-01791-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/1866d699fff2/medicina-59-01791-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/ae1e70f7edcc/medicina-59-01791-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/eb9445428f5f/medicina-59-01791-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/29dc33019a88/medicina-59-01791-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/2b70ade654ee/medicina-59-01791-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/1866d699fff2/medicina-59-01791-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/ae1e70f7edcc/medicina-59-01791-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/10608257/eb9445428f5f/medicina-59-01791-g005.jpg

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[1]
Neurosurgical Education Using Cadaver-Free Brain Models and Augmented Reality: First Experiences from a Hands-On Simulation Course for Medical Students.

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[3]
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引用本文的文献

[1]
Microneurosurgical Training on Simulators: The Zurich Microsurgery Lab Experience.

Acta Neurochir Suppl. 2025

[2]
Integration of Augmented Reality, Virtual Reality, and Extended Reality in Healthcare and Medical Education: A Glimpse into the Emerging Horizon in LMICs-A Systematic Review.

J Med Educ Curric Dev. 2025-5-29

[3]
Neurocircle microsurgery model: Description of simulation-based training and exoscope.

Surg Neurol Int. 2024-11-1

[4]
Evaluation of training models for intraventricular neuroendoscopy.

Neurosurg Rev. 2024-11-11

[5]
Augmented Reality in Neurosurgery.

Adv Exp Med Biol. 2024

[6]
Latex vascular injection as method for enhanced neurosurgical training and skills.

Front Surg. 2024-2-23

[7]
Early introduction of simulation in the medical curriculum: the MedInTo perspective.

Front Med (Lausanne). 2024-1-4

本文引用的文献

[1]
Task Autonomy of a Flexible Endoscopic System for Laser-Assisted Surgery.

Cyborg Bionic Syst. 2022-8-24

[2]
A Survey on Design, Actuation, Modeling, and Control of Continuum Robot.

Cyborg Bionic Syst. 2022-7-25

[3]
Benchtop simulation of the retrosigmoid approach: Validation of a surgical simulator and development of a task-specific outcome measure score.

World Neurosurg X. 2023-6-24

[4]
A synthetic model simulator for intracranial aneurysm clipping: validation of the UpSurgeOn AneurysmBox.

Front Surg. 2023-5-31

[5]
Assessing the impact of neurosurgery and neuroanatomy simulation using 3D non-cadaveric models amongst selected African medical students.

Front Med Technol. 2023-5-4

[6]
Resident Training in Spine Surgery: A Systematic Review of Simulation-Based Educational Models.

World Neurosurg. 2023-6

[7]
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J Neurosurg. 2023-3-10

[8]
High fidelity simulation of the endoscopic transsphenoidal approach: Validation of the UpSurgeOn TNS Box.

Front Surg. 2022-12-6

[9]
Three-Dimensional Plastic Modeling on Bone Frames for Cost-Effective Neuroanatomy Teaching.

Cureus. 2022-7-30

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Robotic-Assisted Microsurgery and Its Future in Plastic Surgery.

J Clin Med. 2022-6-13

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