Tractography analysis results of the trigeminus nerve, which contains fibers responsible for proprioception sensation and motor control in Adolescent Idiopathic Scoliosis.

IF 2.6 3区 医学 Q2 CLINICAL NEUROLOGY European Spine Journal Pub Date : 2024-12-01 Epub Date: 2024-10-18 DOI:10.1007/s00586-024-08524-y
Ahmet Payas, Fatih Çiçek, Yakup Ekinci, Sabri Batın, Şule Göktürk, Yasin Göktürk, Caner Karartı, İlyas Uçar
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Abstract

Study design: Cross-sectional Study.

Background: It is not yet clear whether the loss of proprioceptive sensation and muscle weakness seen in adolescent idiopathic scoliosis (AIS) is the result of central nervous system dysfunction or secondary to spinal deformity. In our study, in order to find an answer to this question, we examined the microarchitecture of the nervus trigeminus, which is least affected by spinal deformity and contains both proprioceptive sensory and motor fibers.

Methods: In this single-center, cross-sectional cohort study, 40 Lenke Type 3 (27 female, 13 male) AIS patients and 40 (25 female, 15 male) healthy individuals between the ages of 10-18 years. Tractography of the nervus trigenimus was performed using the "DSI Studio" program. The volumes of the targeted musculus pterygoideus lateralis and musculus pterygoideus medialis were measured using the Insight Segmentation and Registration Tool Kit (ITK -SNAP) program. The data were evaluated using the Statistical Package for the Social Sciences 22.0 program for Windows.

Results: There was no significant difference between the two groups in terms of baseline characteristics (p˃0.05). Left nervus trigeminus fiber number and fiber ratio were significantly higher in the control group compared to the scoliosis group p < 0.05. Right and left lateral pterygoid muscle showed lower volume and volume percentage in the scoliosis group compared to the control group (p < 0.05).

Conclusion: According to the study data, proprioceptive sensory and motor control dysfunction in AIS is predicted to develop independently of spinal deformity.

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青少年特发性脊柱侧弯症患者三叉神经的迹线分析结果,该神经含有负责本体感觉和运动控制的纤维。
研究设计背景:横断面研究:目前尚不清楚青少年特发性脊柱侧弯症(AIS)中出现的本体感觉缺失和肌肉无力是中枢神经系统功能障碍的结果,还是继发于脊柱畸形。在我们的研究中,为了找到这个问题的答案,我们对三叉神经的微结构进行了检查,三叉神经受脊柱畸形的影响最小,同时包含本体感觉和运动纤维:在这项单中心横断面队列研究中,40 名 Lenke 3 型 AIS 患者(27 名女性,13 名男性)和 40 名 10-18 岁的健康人(25 名女性,15 名男性)参加了研究。使用 "DSI Studio "程序对三叉神经进行了分段成像。使用 Insight Segmentation and Registration Tool Kit(ITK -SNAP)程序测量了目标翼侧肌和翼内肌的体积。数据使用 Windows 版社会科学统计软件包 22.0 程序进行评估:结果:两组基线特征无明显差异(P˃0.05)。与脊柱侧弯组相比,对照组的左侧神经三叉神经纤维数量和纤维比率明显较高:根据研究数据,AIS 患者的本体感觉和运动控制功能障碍预计与脊柱畸形无关。
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来源期刊
European Spine Journal
European Spine Journal 医学-临床神经学
CiteScore
4.80
自引率
10.70%
发文量
373
审稿时长
2-4 weeks
期刊介绍: "European Spine Journal" is a publication founded in response to the increasing trend toward specialization in spinal surgery and spinal pathology in general. The Journal is devoted to all spine related disciplines, including functional and surgical anatomy of the spine, biomechanics and pathophysiology, diagnostic procedures, and neurology, surgery and outcomes. The aim of "European Spine Journal" is to support the further development of highly innovative spine treatments including but not restricted to surgery and to provide an integrated and balanced view of diagnostic, research and treatment procedures as well as outcomes that will enhance effective collaboration among specialists worldwide. The “European Spine Journal” also participates in education by means of videos, interactive meetings and the endorsement of educative efforts. Official publication of EUROSPINE, The Spine Society of Europe
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