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颅内病变神经外科介入术中混合现实导航的头模型数据集。

Head model dataset for mixed reality navigation in neurosurgical interventions for intracranial lesions.

机构信息

Department of Neurosurgery, University of Marburg, Baldingerstrasse, 35043, Marburg, Germany.

Department of Neurosurgery, First Medical Center of Chinese PLA General Hospital, 100853, Beijing, China.

出版信息

Sci Data. 2024 May 25;11(1):538. doi: 10.1038/s41597-024-03385-y.


DOI:10.1038/s41597-024-03385-y
PMID:38796526
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11127921/
Abstract

Mixed reality navigation (MRN) technology is emerging as an increasingly significant and interesting topic in neurosurgery. MRN enables neurosurgeons to "see through" the head with an interactive, hybrid visualization environment that merges virtual- and physical-world elements. Offering immersive, intuitive, and reliable guidance for preoperative and intraoperative intervention of intracranial lesions, MRN showcases its potential as an economically efficient and user-friendly alternative to standard neuronavigation systems. However, the clinical research and development of MRN systems present challenges: recruiting a sufficient number of patients within a limited timeframe is difficult, and acquiring low-cost, commercially available, medically significant head phantoms is equally challenging. To accelerate the development of novel MRN systems and surmount these obstacles, the study presents a dataset designed for MRN system development and testing in neurosurgery. It includes CT and MRI data from 19 patients with intracranial lesions and derived 3D models of anatomical structures and validation references. The models are available in Wavefront object (OBJ) and Stereolithography (STL) formats, supporting the creation and assessment of neurosurgical MRN applications.

摘要

混合现实导航(MRN)技术在神经外科领域正逐渐成为一个备受关注的重要话题。MRN 技术使神经外科医生能够通过交互式混合可视化环境“透视”头部,该环境融合了虚拟和物理世界的元素。MRN 为颅内病变的术前和术中干预提供了沉浸式、直观和可靠的指导,展示了其作为标准神经导航系统经济高效且用户友好的替代方案的潜力。然而,MRN 系统的临床研究和开发存在挑战:在有限的时间内招募足够数量的患者具有一定难度,同时获取低成本、商业化、具有医学意义的头部体模也同样具有挑战性。为了加速新型 MRN 系统的发展并克服这些障碍,本研究提出了一个用于神经外科中 MRN 系统开发和测试的数据集。它包含了 19 名颅内病变患者的 CT 和 MRI 数据,并衍生出了解剖结构的 3D 模型和验证参考。这些模型以 Wavefront Object (OBJ) 和 Stereolithography (STL) 格式提供,支持神经外科 MRN 应用的创建和评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/a0823a5b20ea/41597_2024_3385_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/99e0612364ab/41597_2024_3385_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/e6deecab0545/41597_2024_3385_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/967e3c5a87ce/41597_2024_3385_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/a0823a5b20ea/41597_2024_3385_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/99e0612364ab/41597_2024_3385_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/e6deecab0545/41597_2024_3385_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/967e3c5a87ce/41597_2024_3385_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27b1/11127921/a0823a5b20ea/41597_2024_3385_Fig4_HTML.jpg

相似文献

[1]
Head model dataset for mixed reality navigation in neurosurgical interventions for intracranial lesions.

Sci Data. 2024-5-25

[2]
The Feasibility and Accuracy of Holographic Navigation with Laser Crosshair Simulator Registration on a Mixed-Reality Display.

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[3]
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Ultraschall Med. 2015-4

[4]
Improving mixed-reality neuronavigation with blue-green light: a comparative multimodal laboratory study.

Neurosurg Focus. 2024-1

[5]
Clinical Feasibility of a Wearable Mixed-Reality Device in Neurosurgery.

World Neurosurg. 2018-10

[6]
Holographic mixed-reality neuronavigation with a head-mounted device: technical feasibility and clinical application.

Neurosurg Focus. 2021-8

[7]
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Turk Neurosurg. 2024

[8]
Functional neuronavigation combined with intra-operative 3D ultrasound: initial experiences during surgical resections close to eloquent brain areas and future directions in automatic brain shift compensation of preoperative data.

Acta Neurochir (Wien). 2007

[9]
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[10]
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引用本文的文献

[1]
AcuSim: A Synthetic Dataset for Cervicocranial Acupuncture Points Localisation.

Sci Data. 2025-4-15

[2]
Construction of a Multimodal 3D Atlas for a Micrometer-Scale Brain-Computer Interface Based on Mixed Reality.

Curr Med Sci. 2025-4

[3]
iSurgARy: A mobile augmented reality solution for ventriculostomy in resource-limited settings.

Healthc Technol Lett. 2025-1-15

本文引用的文献

[1]
The Feasibility and Accuracy of Holographic Navigation with Laser Crosshair Simulator Registration on a Mixed-Reality Display.

Sensors (Basel). 2024-1-30

[2]
Improving mixed-reality neuronavigation with blue-green light: a comparative multimodal laboratory study.

Neurosurg Focus. 2024-1

[3]
A Novel Registration Method for a Mixed Reality Navigation System Based on a Laser Crosshair Simulator: A Technical Note.

Bioengineering (Basel). 2023-11-7

[4]
The Inaugural "Century" of Mixed Reality in Cranial Surgery: Virtual Reality Rehearsal/Augmented Reality Guidance and Its Learning Curve in the First 100-Case, Single-Surgeon Series.

Oper Neurosurg (Hagerstown). 2024-1-1

[5]
Case report: Impact of mixed reality on anatomical understanding and surgical planning in a complex fourth ventricular tumor extending to the lamina quadrigemina.

Front Surg. 2023-8-22

[6]
The use of hybrid operating rooms in neurosurgery, advantages, disadvantages, and future perspectives: a systematic review.

Acta Neurochir (Wien). 2023-9

[7]
Supratotal Resection: An Emerging Concept of Glioblastoma Multiforme Surgery-Systematic Review And Meta-Analysis.

World Neurosurg. 2023-11

[8]
Comparison of accuracy between augmented reality/mixed reality techniques and conventional techniques for epidural anesthesia using a practice phantom model kit.

BMC Anesthesiol. 2023-5-20

[9]
Augmented Reality to Compensate for Navigation Inaccuracies.

Sensors (Basel). 2022-12-7

[10]
[Implement of mixed reality navigation based on multimodal imaging in the resection of intracranial eloquent lesions].

Zhonghua Wai Ke Za Zhi. 2022-12-1

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