Advanced fluorescence techniques in white matter fiber visualization for neurosurgical training.

Surgical neurology international Pub Date : 2024-11-29 eCollection Date: 2024-01-01 DOI:10.25259/SNI_843_2024
Luis Gustavo Biondi-Soares, Filipi Fim Andreão, Luis Ángel Canache Jiménez, Felipe Salvagni Pereira, Lucca Biolcati Palavani, René Alejandro Apaza-Tintaya, Dmitriy Korotkov, José Maria de Campos Filho, Raphael Wuo-Silva, Feres Chaddad-Neto
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Abstract

Background: Neurosurgical training requires a deep understanding of brain anatomy, especially white matter fiber pathways, to enhance surgical precision. Traditional dissection techniques, such as Klingler's white matter dissection, are essential, but newer methods can provide additional clarity. This study explores the application of a fluorescent-assisted technique to improve the visualization and understanding of white matter fibers during neurosurgical training.

Methods: Twelve human brains were dissected following Klingler's protocol, with a focus white matter fiber pathway. Fluorescent alcoholic and oily solutions were applied to highlight the fibers. Ultraviolet (UV) blacklight and yellow monochromatic filters were used to enhance visualization. Dissections were documented through photography, and the effectiveness of the fluorescent techniques was analyzed.

Results: The application of UV light and fluorescent solutions enhanced the visualization of fiber pathways, particularly in regions with irregular fibers, such as the sagittal stratum. The alcoholic solution flowed along the anatomical paths of the fibers, aiding in their differentiation. The oily solution proved effective in specific areas, such as the internal capsule. The use of fluorescent techniques allowed for improved identification and anatomical detailing of major white matter tracts.

Conclusion: The fluorescent-assisted dissection technique significantly enhances the visualization of white matter fibers, offering a valuable tool for neurosurgical training. This method deepens anatomical understanding, provides a three-dimensional perspective of brain structures, and can improve surgical outcomes. The study suggests potential applications in other fields, such as glioma simulation and bypass patency testing.

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神经外科训练中白质纤维可视化的先进荧光技术。
背景:神经外科训练需要深入了解脑解剖,特别是白质纤维通路,以提高手术精度。传统的解剖技术,如Klingler的白质解剖,是必不可少的,但新的方法可以提供额外的清晰度。本研究探讨了在神经外科训练中荧光辅助技术的应用,以提高白质纤维的可视化和理解。方法:采用Klingler方法对12个人脑进行解剖,采用聚焦白质纤维通路。使用荧光酒精和油性溶液来突出纤维。使用紫外(UV)黑光和黄色单色滤光片增强可视化。解剖通过摄影记录,并分析了荧光技术的有效性。结果:紫外光和荧光溶液的应用增强了纤维通路的可视化,特别是在不规则纤维区域,如矢状层。酒精溶液沿着纤维的解剖路径流动,有助于纤维的分化。油性溶液被证明在特定区域有效,比如内部胶囊。荧光技术的使用可以改善主要白质束的识别和解剖细节。结论:荧光辅助解剖技术明显增强了白质纤维的可视化,为神经外科训练提供了一种有价值的工具。这种方法加深了对解剖学的理解,提供了大脑结构的三维视角,并可以改善手术效果。该研究显示了在其他领域的潜在应用,如神经胶质瘤模拟和旁路通畅测试。
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