Doaa S AlSharif, Carole A Tucker, Donna L Coffman, Emily A Keshner
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Linear mixed models were used to examine magnitude and smoothness of trunk acceleration and tonic and phasic EDA. A Welch's t-test and associations between measures were assessed with a Pearson Correlation Coefficient. Effect sizes of group mean differences were calculated using Cohen's d.</p><p><strong>Results: </strong>Visual dependence was present in 83% of the VM population. Individuals with VM exhibited lower baseline EDA (t(4.17) = -7.2, p = 0.001) and greater normalized trunk accelerations in the vertical (t(42.5) = 2.861, p = 0.006) and medial (t(46.6) = 2.65, p = 0.01) planes than healthy participants. Tonic EDA activity increased significantly across the period of the trial (F (1,417) = 23.31, p = 0.001) in the VM group. Significant associations appeared between vertical trunk acceleration and EDA, Dizziness Handicap Inventory, and Activities of Balance Confidence tools.</p><p><strong>Conclusions: </strong>Higher tonic EDA activity in healthy adults results in more accurate postural reactions. Results support the supposition that EDA activity and postural acceleration are significantly different between VM and healthy individuals when accommodating for postural instability and visual-vestibular conflict.</p>","PeriodicalId":49960,"journal":{"name":"Journal of Vestibular Research-Equilibrium & Orientation","volume":"33 1","pages":"51-62"},"PeriodicalIF":2.9000,"publicationDate":"2023-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":"{\"title\":\"Electrodermal and postural responses in dizzy adults: Diagnostic indicators of vestibular migraine.\",\"authors\":\"Doaa S AlSharif, Carole A Tucker, Donna L Coffman, Emily A Keshner\",\"doi\":\"10.3233/VES-220004\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Introduction: </strong>No reliable biometric measurement of vestibular involvement with migraine is currently available.</p><p><strong>Objective: </strong>Measures of autonomic nervous system and postural responses could serve as quantifiable indicators of vestibular involvement with migraine.</p><p><strong>Methods: </strong>A convenience sample of 22 young healthy adults (34±9 years old) and 23 young adults (34±8 years old) diagnosed with vestibular migraine (VM) participated. A rod and frame test and clinical outcome measures of dizziness and mobility were administered. Participants stood on foam while viewing two dynamic virtual environments. Trunk acceleration in three planes and electrodermal activity (EDA) were assessed with wearable sensors. Linear mixed models were used to examine magnitude and smoothness of trunk acceleration and tonic and phasic EDA. A Welch's t-test and associations between measures were assessed with a Pearson Correlation Coefficient. Effect sizes of group mean differences were calculated using Cohen's d.</p><p><strong>Results: </strong>Visual dependence was present in 83% of the VM population. Individuals with VM exhibited lower baseline EDA (t(4.17) = -7.2, p = 0.001) and greater normalized trunk accelerations in the vertical (t(42.5) = 2.861, p = 0.006) and medial (t(46.6) = 2.65, p = 0.01) planes than healthy participants. 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引用次数: 1
摘要
目前还没有可靠的偏头痛前庭受累的生物测量方法。目的:自主神经系统和体位反应的测量可作为偏头痛前庭受累的量化指标。方法:选取22名健康青年(34±9岁)和23名诊断为前庭偏头痛(VM)的青年(34±8岁)作为方便样本。进行棒架试验和头晕和活动能力的临床结果测量。参与者站在泡沫上观看两个动态的虚拟环境。采用可穿戴式传感器对三个平面的躯干加速度和皮肤电活动(EDA)进行了评估。线性混合模型用于检测躯干加速度的幅度和平滑度以及强直和相位EDA。采用韦尔奇t检验和Pearson相关系数评估测量之间的相关性。使用Cohen's d计算组平均差异的效应大小。结果:83%的VM人群存在视觉依赖。与健康受试者相比,VM患者的基线EDA (t(4.17) = -7.2, p = 0.001)较低,垂直平面(t(42.5) = 2.861, p = 0.006)和内侧平面(t(46.6) = 2.65, p = 0.01)的标准化主干加速度较大。在整个试验期间,VM组补益性EDA活性显著增加(F (1417) = 23.31, p = 0.001)。垂直躯干加速度与EDA、眩晕障碍量表和平衡信心活动工具之间存在显著关联。结论:健康成人较高的强直性EDA活性导致更准确的体位反应。研究结果支持这样的假设:当考虑到姿势不稳定和视觉前庭冲突时,VM和健康个体的EDA活动和姿势加速度显著不同。
Electrodermal and postural responses in dizzy adults: Diagnostic indicators of vestibular migraine.
Introduction: No reliable biometric measurement of vestibular involvement with migraine is currently available.
Objective: Measures of autonomic nervous system and postural responses could serve as quantifiable indicators of vestibular involvement with migraine.
Methods: A convenience sample of 22 young healthy adults (34±9 years old) and 23 young adults (34±8 years old) diagnosed with vestibular migraine (VM) participated. A rod and frame test and clinical outcome measures of dizziness and mobility were administered. Participants stood on foam while viewing two dynamic virtual environments. Trunk acceleration in three planes and electrodermal activity (EDA) were assessed with wearable sensors. Linear mixed models were used to examine magnitude and smoothness of trunk acceleration and tonic and phasic EDA. A Welch's t-test and associations between measures were assessed with a Pearson Correlation Coefficient. Effect sizes of group mean differences were calculated using Cohen's d.
Results: Visual dependence was present in 83% of the VM population. Individuals with VM exhibited lower baseline EDA (t(4.17) = -7.2, p = 0.001) and greater normalized trunk accelerations in the vertical (t(42.5) = 2.861, p = 0.006) and medial (t(46.6) = 2.65, p = 0.01) planes than healthy participants. Tonic EDA activity increased significantly across the period of the trial (F (1,417) = 23.31, p = 0.001) in the VM group. Significant associations appeared between vertical trunk acceleration and EDA, Dizziness Handicap Inventory, and Activities of Balance Confidence tools.
Conclusions: Higher tonic EDA activity in healthy adults results in more accurate postural reactions. Results support the supposition that EDA activity and postural acceleration are significantly different between VM and healthy individuals when accommodating for postural instability and visual-vestibular conflict.
期刊介绍:
Journal of Vestibular Research is a peer-reviewed journal that publishes experimental and observational studies, review papers, and theoretical papers based on current knowledge of the vestibular system. Subjects of the studies can include experimental animals, normal humans, and humans with vestibular or other related disorders. Study topics can include the following:
Anatomy of the vestibular system, including vestibulo-ocular, vestibulo-spinal, and vestibulo-autonomic pathways
Balance disorders
Neurochemistry and neuropharmacology of balance, both at the systems and single neuron level
Neurophysiology of balance, including the vestibular, ocular motor, autonomic, and postural control systems
Psychophysics of spatial orientation
Space and motion sickness
Vestibular rehabilitation
Vestibular-related human performance in various environments