Yataco-Wilcas Christian Alexander, Lengua-Vega Luis Alberto, Coasaca-Tito Yosimar Salomon, Diaz-Llanes Bruno Eduardo, Salazar-Campos Cristian Eugenio
Department of Neurosurgery, Neurozone 3D Research Center, Lima, Peru.
Surg Neurol Int. 2024 Nov 1;15:392. doi: 10.25259/SNI_767_2024. eCollection 2024.
Microsurgery is crucial in neurosurgery, requiring precise skills for interventions on delicate structures. Effective training is essential for developing these skills. In Peru and Latin America, however, there is a notable shortage of specialized training centers and high costs associated with foreign simulators, hindering the development of neurosurgical skills. To address this issue, the NeuroZone3D Research Center has initiated a project to create a national dataset on Peruvian craniometry and develop locally adapted training models.
The "NeuroCircle Microsurgery Model" was created through a multi-phase process. Phase 1 involved designing a simulation platform using a 3D printer. Phase 2 focused on creating a realistic biomodel with polyurethane and advanced modeling techniques. In Phase 3, the biomodel was assembled and integrated into the platform. Phase 4 included using a wooden module, a cost-effective exoscope simulation, and surgical instruments to provide a realistic training environment.
The "NeuroCircle Microsurgery Model" provided a stable and effective training environment. Feedback from training sessions with neurosurgery residents and medical students indicated significant improvements in microsurgical skills. Participants valued the model's realism and its role in enhancing their surgical proficiency.
The "NeuroCircle Microsurgery Model" is a significant advancement in microsurgery training for Peru and Latin America. Its development provides a valuable, locally adaptable tool for improving surgical skills and addresses the critical training gaps in the region.
显微外科手术在神经外科中至关重要,需要精确的技能来对精细结构进行干预。有效的培训对于培养这些技能至关重要。然而,在秘鲁和拉丁美洲,专门的培训中心明显短缺,且国外模拟器成本高昂,这阻碍了神经外科技能的发展。为解决这一问题,神经区域3D研究中心启动了一个项目,创建一个关于秘鲁颅骨测量学的国家数据集,并开发适合当地的培训模型。
“神经圈显微外科手术模型”是通过多阶段过程创建的。第一阶段涉及使用3D打印机设计一个模拟平台。第二阶段专注于使用聚氨酯和先进建模技术创建一个逼真的生物模型。在第三阶段,将生物模型组装并集成到平台中。第四阶段包括使用一个木制模块、一个经济高效的外部窥镜模拟装置和手术器械,以提供一个逼真的培训环境。
“神经圈显微外科手术模型”提供了一个稳定且有效的培训环境。神经外科住院医师和医学生培训课程的反馈表明,显微外科技能有了显著提高。参与者重视该模型的逼真性及其在提高他们手术熟练程度方面的作用。
“神经圈显微外科手术模型”是秘鲁和拉丁美洲显微外科手术培训方面的一项重大进展。它的开发提供了一个有价值的、适合当地的工具来提高手术技能,并解决了该地区关键的培训差距。