Research Unit for Neurology, Odense University Hospital, University of Southern Denmark, Odense, Denmark.
Danish Pain Research Center, Department of Clinical Medicine, Aarhus University, Aarhus, Denmark.
Brain Behav. 2021 Aug;11(8):e2230. doi: 10.1002/brb3.2230. Epub 2021 Jun 4.
Polyneuropathy is a common neurological disorder with many potential causes. An essential part in screening, diagnosis, and follow-up evaluation of polyneuropathy is testing of the sensory function including vibratory sensation. The graduated Rydel-Seiffer tuning fork and the biothesiometer have been developed to quantify vibratory sensation through detection thresholds. The aim of this study is to compare the vibration detection thresholds determined by the two instruments regarding intraindividual temporal changes, interindividual variation in healthy subjects and comparison of the diagnostic value in patients with a clinical suspicion of polyneuropathy.
Ninety-four healthy subjects, 98 patients with and 97 patients without a diagnosis of polyneuropathy were included. Quantitative sensory testing including biothesiometry, structured clinical examination, and nerve conduction studies were performed three times during 52 weeks in healthy subjects and once in patients.
There were no significant changes over time for neither the Rydel-Seiffer tuning fork nor the biothesiometer, and both had larger between-subject variation than within-subject variation. Relative intertrial variability was largest for the biothesiometer. Diagnostic value (sensitivity, specificity, positive predictive value, and negative predictive value) was moderate for both methods (Rydel-Seiffer tuning fork: 58%, 74%, 70%, 64%; biothesiometer: 47%, 77%, 68%, 59%).
The Rydel-Seiffer tuning fork and the biothesiometer have a low test-retest and time dependent variation. They perform almost equally as diagnostic tools in patients with suspected polyneuropathy with a tendency toward better performance of the tuning fork.
多发性神经病是一种常见的神经系统疾病,有许多潜在的病因。对多发性神经病进行筛查、诊断和随访评估的一个重要部分是检测感觉功能,包括振动感觉。Graduated Rydel-Seiffer tuning fork 和 biothesiometer 的开发是为了通过检测阈值来量化振动感觉。本研究的目的是比较这两种仪器确定的振动检测阈值在个体内的时间变化、健康受试者的个体间差异以及在有临床疑似多发性神经病的患者中的诊断价值。
纳入了 94 名健康受试者、98 名有和 97 名无多发性神经病诊断的患者。对健康受试者进行了三次包括定量感觉测试(biothesiometry)、结构性临床检查和神经传导研究,每次测试均在 52 周内进行;对患者仅进行了一次测试。
Rydel-Seiffer tuning fork 和 biothesiometer 在时间上均无显著变化,且两者的个体间变异性均大于个体内变异性。biothesiometer 的相对试验间变异性最大。两种方法的诊断价值(敏感性、特异性、阳性预测值和阴性预测值)均为中等(Rydel-Seiffer tuning fork:58%、74%、70%、64%;biothesiometer:47%、77%、68%、59%)。
Rydel-Seiffer tuning fork 和 biothesiometer 的测试-再测试和时间依赖性变化较低。它们在疑似多发性神经病患者中的诊断性能几乎相同,tuning fork 的性能略好。