Neurophysiological identification and differentiation between the motor and sensory roots in pediatric spinal cord lipoma surgery.

IF 1.3 4区 医学 Q4 CLINICAL NEUROLOGY Child's Nervous System Pub Date : 2024-12-06 DOI:10.1007/s00381-024-06673-5
Katharina Lutz, Timothy Müller, Sebastian Grunt, Cordula Scherer, Martin U Schuhmann, Mazen Zeino, Sonja Vulcu, Arsany Hakim, Jonathan Wermelinger, Pablo Abel Alvarez Abut, Katarzyna Pospieszny, Andreas Raabe, Philippe Schucht, Kathleen Seidel
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Abstract

Background: Radical resection of spinal cord lipomas reduces the rate of re-tethering. Current conventional neurophysiological mapping techniques are not able to differentiate between crucial motor nerve roots and sensory roots. Enhanced differentiation could contribute to complete resection. We present our experience with a double-train paradigm to differentiate between motor and sensory roots.

Methods: In children undergoing spinal cord lipoma resection, the double-train mapping paradigm was used with an inter-train interval of 60 ms. Given the longer recovery time due to the H-reflex, a single muscle response was presumed to be elicited from a sensory root, and a double muscle response from a motor root. The primary endpoint was postoperative neurological outcome and bladder function at discharge.

Results: We included 8 children undergoing 10 lipoma resections between 2016 and 2023. Double-train mapping was used in all cases. Motor and sensory roots were clearly differentiated in 6 cases and altered the course of surgery in 4 cases. Post-surgery, no sensory and motor function worsened within 3 months. Bladder function was stable in six and improved in two children. In two patients, bladder function worsened slightly at 3 months and 6 months, at which point one patient was re-operated on for re-tethering.

Conclusion: Intraoperative mapping with the double-train paradigm reliably differentiated between motor and sensory nerve roots. Informing the surgeon on the specific function of a tethering root may help to maximize resection without risking major neurological deficits.

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小儿脊髓脂肪瘤手术中运动根和感觉根的神经生理学鉴定和区分。
背景:脊髓脂肪瘤根治性切除可降低脊髓再系扎的发生率。目前传统的神经生理制图技术不能区分关键的运动神经根和感觉神经根。增强的分化有助于完全切除。我们提出我们的经验与双列车范式区分运动和感觉根。方法:在接受脊髓脂肪瘤切除术的儿童中,采用双序列映射模式,间隔时间为60 ms。考虑到h反射的恢复时间较长,单一肌肉反应被认为是来自感觉根,而双重肌肉反应来自运动根。主要终点是术后神经预后和出院时膀胱功能。结果:我们纳入了2016年至2023年间接受10次脂肪瘤切除术的8名儿童。在所有情况下都使用了双列映射。6例运动根和感觉根分化明显,4例手术过程发生改变。术后3个月内无感觉和运动功能恶化。6例患儿膀胱功能稳定,2例患儿膀胱功能改善。2例患者在3个月和6个月时膀胱功能轻微恶化,此时1例患者再次手术进行重新系栓。结论:术中定位双列模式能可靠地区分运动神经根和感觉神经根。告知外科医生系扎根的具体功能可能有助于最大限度地切除,而不会造成严重的神经功能缺损。
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来源期刊
Child's Nervous System
Child's Nervous System 医学-临床神经学
CiteScore
3.00
自引率
7.10%
发文量
322
审稿时长
3 months
期刊介绍: The journal has been expanded to encompass all aspects of pediatric neurosciences concerning the developmental and acquired abnormalities of the nervous system and its coverings, functional disorders, epilepsy, spasticity, basic and clinical neuro-oncology, rehabilitation and trauma. Global pediatric neurosurgery is an additional field of interest that will be considered for publication in the journal.
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