首页> 外文期刊>Journal of vestibular research: equilibrium and orientation >Use of the Dynamic Visual Acuity Test as a screener for community-dwelling older adults who fall.
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Use of the Dynamic Visual Acuity Test as a screener for community-dwelling older adults who fall.

机译:动态视觉敏锐度测试(Dynamic Visual Acuity Test)作为筛查社区中坠落的老年人的用途。

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Adequate function of the peripheral vestibular system, specifically the vestibulo-ocular reflex (VOR; a network of neural connections between the peripheral vestibular system and the extraocular muscles) is essential for maintaining stable vision during head movements. Decreased visual acuity resulting from an impaired peripheral vestibular system may impede balance and postural control and place an individual at risk of falling. Therefore, sensitive measures of the vestibular system are warranted to screen for the tendency to fall, alerting clinicians to recommend further risk of falling assessment and referral to a falling risk reduction program. Dynamic Visual Acuity (DVA) testing is a computerized VOR assessment method to evaluate the peripheral vestibular system during head movements; reduced visual acuity as documented with DVA testing may be sensitive to screen for falling risk. This study examined the sensitivity and specificity of the computerized DVA test with yaw plane head movements for identifying community-dwelling adults (58-78 years) who are prone to falling. A total of 16 older adults with a history of two or more unexplained falls in the previous twelve months and 16 age and gender matched controls without a history of falls in the previous twelve months participated. Computerized DVA with horizontal head movements at a fixed velocity of 120 deg/sec was measured and compared with the Dynamic Gait Index (DGI) a gold standard gait assessment measurement for identifying falling risk. Receiver operating characteristics (ROC) curve analysis and area under the ROC curve (AUC) were used to assess the sensitivity and specificity of the computerized DVA as a screening measure for falling risk as determined by the DGI. Results suggested a link between computerized DVA and the propensity to fall; DVA in the yaw plane was found to be a sensitive (92%) and accurate screening measure when using a cutoff logMAR value of >0.25.
机译:外围前庭系统的适当功能,特别是前庭眼反射(VOR;外围前庭系统与眼外肌之间的神经连接网络)对于在头部运动期间保持稳定的视力至关重要。周围前庭系统受损导致视力下降可能会妨碍平衡和姿势控制,并使个人处于跌倒的风险中。因此,必须对前庭系统采取敏感措施以筛查跌倒的趋势,提醒临床医生建议进一步评估跌倒的风险,并建议您降低跌倒的风险。动态视敏度(DVA)测试是一种计算机化的VOR评估方法,用于评估头部运动过程中的外周前庭系统; DVA测试表明,视力下降可能对筛查下降风险敏感。这项研究检查了偏航飞机头部运动的计算机DVA测试的敏感性和特异性,以识别容易摔倒的社区居民(58-78岁)。在过去的12个月中,共有16名有两次或两次以上无法解释的跌倒病史的成年人参加,在过去的12个月中,有16名年龄和性别相匹配的对照组没有跌倒史。测量了以120度/秒的固定速度水平移动头部的计算机DVA,并将其与动态步态指数(DGI)进行了比较,这是一种用于确定跌倒风险的黄金标准步态评估测量。接受者操作特征(ROC)曲线分析和ROC曲线下面积(AUC)用于评估计算机DVA的敏感性和特异性,作为DGI确定的跌倒风险的筛查手段。结果表明计算机化DVA与跌倒倾向之间存在联系。当使用> 0.25的临界logMAR值时,偏航平面中的DVA被认为是灵敏的(92%)和准确的筛选措施。

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