Normative Data and Quantile Regression Analysis of the Sural-to-Radial Nerve Amplitude Ratio.

IF 2.3 4区 医学 Q3 CLINICAL NEUROLOGY Journal of Clinical Neurophysiology Pub Date : 2024-06-21 DOI:10.1097/WNP.0000000000001084
Kaveh Pourhamidi
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Abstract

Purpose: The aim of this study was to establish normative data for the sural-to-radial nerve amplitude ratio (SRAR) and develop a quantile regression model for individualized cutoff values.

Methods: A cohort of 68 healthy individuals (36 female participants) aged 20 to 59 years was recruited. Sensory nerve conduction studies were conducted to measure sural and radial sensory nerve action potential amplitudes. Quantile regression analysis was used to determine the fifth percentile of SRAR after adjusting for age, sex, and other demographic variables.

Results: This study found significant differences in body height and weight between the sexes, with radial sensory nerve action potential being higher in female participants. The sural-to-radial nerve amplitude ratio was negatively correlated with age (r = -0.3, p = 0.007) and showed significant sex differences. The final regression equation, SRAR = 0.519 - 0.006 × age + 0.046 × sex (1 = male, 0 = female), was developed for the fifth percentile cutoff, accounting for age and sex.

Conclusions: This study establishes normative SRAR data and introduces a novel quantile regression approach to determine individualized cutoff values. Age and sex are critical factors for SRAR variation, necessitating tailored diagnostic criteria for neuropathy assessment. This model enhances diagnostic accuracy and potentially reduces misdiagnosis in clinical settings. Further research is recommended to validate the clinical applicability of SRAR across different types of neuropathies.

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耳神经与桡神经振幅比的标准数据和量值回归分析
目的:本研究旨在建立鞍桡神经振幅比(SRAR)的常模数据,并为个体化临界值建立一个量回归模型:方法:招募了 68 名年龄在 20 至 59 岁之间的健康人(36 名女性参与者)。进行了感觉神经传导研究,以测量硬膜和桡侧感觉神经动作电位振幅。在对年龄、性别和其他人口统计学变量进行调整后,使用量子回归分析确定 SRAR 的第五百分位数:结果:研究发现,男女身高和体重存在明显差异,女性参与者的桡侧感觉神经动作电位更高。鞍神经与桡神经振幅比与年龄呈负相关(r = -0.3,p = 0.007),并显示出显著的性别差异。最终的回归方程为 SRAR = 0.519 - 0.006 × 年龄 + 0.046 × 性别(1 = 男性,0 = 女性),以第五百分位数为分界线,并考虑了年龄和性别因素:本研究建立了 SRAR 常模数据,并引入了一种新的量化回归方法来确定个性化的临界值。年龄和性别是 SRAR 变异的关键因素,因此需要为神经病变评估量身定制诊断标准。该模型提高了诊断准确性,并有可能减少临床误诊。建议进一步开展研究,以验证 SRAR 在不同类型神经病变中的临床适用性。
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来源期刊
Journal of Clinical Neurophysiology
Journal of Clinical Neurophysiology 医学-临床神经学
CiteScore
4.60
自引率
4.20%
发文量
198
审稿时长
6-12 weeks
期刊介绍: ​The Journal of Clinical Neurophysiology features both topical reviews and original research in both central and peripheral neurophysiology, as related to patient evaluation and treatment. Official Journal of the American Clinical Neurophysiology Society.
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