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显微外科解剖在神经外科培训中对尸体标本的关键作用:建立一个新的研究解剖实验室并确定神经解剖学里程碑。

Key role of microsurgical dissections on cadaveric specimens in neurosurgical training: Setting up a new research anatomical laboratory and defining neuroanatomical milestones.

作者信息

Fava Arianna, Gorgoglione Nicola, De Angelis Michelangelo, Esposito Vincenzo, di Russo Paolo

机构信息

Department of Neurosurgery, IRCCS Neuromed, Pozzilli, Italy.

Department of Neuroscience, Sapienza University, Rome, Italy.

出版信息

Front Surg. 2023 Mar 9;10:1145881. doi: 10.3389/fsurg.2023.1145881. eCollection 2023.

Abstract

INTRODUCTION

Neurosurgery is one of the most complex surgical disciplines where psychomotor skills and deep anatomical and neurological knowledge find their maximum expression. A long period of preparation is necessary to acquire a solid theoretical background and technical skills, improve manual dexterity and visuospatial ability, and try and refine surgical techniques. Moreover, both studying and surgical practice are necessary to deeply understand neuroanatomy, the relationships between structures, and the three-dimensional (3D) orientation that is the core of neurosurgeons' preparation. For all these reasons, a microsurgical neuroanatomy laboratory with human cadaveric specimens results in a unique and irreplaceable training tool that allows the reproduction of patients' positions, 3D anatomy, tissues' consistencies, and step-by-step surgical procedures almost identical to the real ones.

METHODS

We describe our experience in setting up a new microsurgical neuroanatomy lab (IRCCS Neuromed, Pozzilli, Italy), focusing on the development of training activity programs and microsurgical milestones useful to train the next generation of surgeons. All the required materials and instruments were listed.

RESULTS

Six competency levels were designed according to the year of residency, with training exercises and procedures defined for each competency level: (1) soft tissue dissections, bone drilling, and microsurgical suturing; (2) basic craniotomies and neurovascular anatomy; (3) white matter dissection; (4) skull base transcranial approaches; (5) endoscopic approaches; and (6) microanastomosis. A checklist with the milestones was provided.

DISCUSSION

Microsurgical dissection of human cadaveric specimens is the optimal way to learn and train on neuroanatomy and neurosurgical procedures before performing them safely in the operating room. We provided a "neurosurgery booklet" with progressive milestones for neurosurgical residents. This step-by-step program may improve the quality of training and guarantee equal skill acquisition across countries. We believe that more efforts should be made to create new microsurgical laboratories, popularize the importance of body donation, and establish a network between universities and laboratories to introduce a compulsory operative training program.

摘要

引言

神经外科是最复杂的外科领域之一,在这个领域中,精神运动技能以及深厚的解剖学和神经学知识得以充分展现。要获得扎实的理论基础和技术技能,提高手部灵活性和视觉空间能力,并尝试完善手术技术,需要长时间的准备。此外,学习和手术实践对于深入理解神经解剖学、结构之间的关系以及三维(3D)定位至关重要,而三维定位是神经外科医生培训的核心内容。基于所有这些原因,配备人体尸体标本的显微外科神经解剖实验室成为一种独特且不可替代的培训工具,它能够重现患者的体位、3D解剖结构、组织的质地以及与实际手术几乎相同的分步手术过程。

方法

我们描述了建立一个新的显微外科神经解剖实验室(意大利波齐利IRCCS Neuromed)的经验,重点是制定对培训下一代外科医生有用的培训活动计划和显微外科里程碑。列出了所有所需的材料和仪器。

结果

根据住院医师的年份设计了六个能力水平,并为每个能力水平定义了培训练习和程序:(1)软组织解剖、颅骨钻孔和显微外科缝合;(2)基本开颅手术和神经血管解剖;(3)白质解剖;(4)颅底经颅入路;(5)内镜入路;(6)显微吻合术。提供了带有里程碑的检查表。

讨论

在人体尸体标本上进行显微外科解剖是在手术室安全进行神经解剖学和神经外科手术之前进行学习和培训的最佳方式。我们为神经外科住院医师提供了一本带有逐步里程碑的“神经外科手册”。这个循序渐进的计划可能会提高培训质量,并确保各国在技能获取方面的平等。我们认为应该做出更多努力来创建新的显微外科实验室,普及遗体捐赠的重要性,并在大学和实验室之间建立网络,以引入强制性的手术培训计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62b3/10033783/d9e39e08606f/fsurg-10-1145881-g001.jpg

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