The effect of the predictability of perturbation magnitudes in older adults with mild cognitive impairment

被引:0
作者
Tippawan Kaewmanee
Huaqing Liang
Katya Cruz Madrid
Alexander S. Aruin
机构
[1] University of Illinois at Chicago,PhD Program in Rehabilitation Sciences, College of Applied Health Sciences
[2] Marshall University,School of Physical Therapy
[3] University of Illinois at Chicago,Division of Academic Internal Medicine and Geriatrics
[4] University of Illinois at Chicago,Department of Physical Therapy (MC 898)
来源
Aging Clinical and Experimental Research | 2022年 / 34卷
关键词
Older adults; Mild cognitive impairment; Perturbation; Predictability; Magnitude; Postural adjustments;
D O I
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中图分类号
学科分类号
摘要
Balance impairment is common in older adults with mild cognitive impairment (MCI). The ability to predict the magnitude of the body disturbance is essential to balance maintenance. The purpose of the study was to investigate the effect of the predictability of the perturbation magnitudes on anticipatory (APAs) and compensatory (CPAs) postural adjustments in older adults with MCI and healthy older adults. Fifteen individuals with MCI and fourteen age-matched control participants stood on the force platform and received the pendulum perturbations of small or large magnitudes applied to their upper body. Electromyographic activity of eight leg and trunk muscles and displacements of the center of pressure (COP) were recorded and analyzed during the APA and CPA phases of postural control. Individuals with MCI demonstrated smaller APAs in the conditions of the perturbation of unpredictable magnitude and required more trials to optimize their postural adjustments, as compared to healthy older adults. Moreover, individuals with MCI had reduced postural stability in the conditions of unpredictable magnitude of the perturbation. The findings suggest that cognitive decline adversely affects the ability to predict the magnitude of the perturbations.
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页码:2741 / 2749
页数:8
相关论文
共 71 条
[1]  
Petersen RC(2004)Mild cognitive impairment as a diagnostic entity J Intern Med 256 183-194
[2]  
Montero-Odasso M(2012)Gait and cognition: a complementary approach to understanding brain function and the risk of falling J Am Geriatr Soc 60 2127-2136
[3]  
Mirelman A(2012)Executive function and falls in older adults: new findings from a five-year prospective study link fall risk to cognition PLoS ONE 7 e40297-362
[4]  
Fischer BL(2014)Declining cognition and falls: role of risky performance of everyday mobility activities Phys Ther 94 355-56
[5]  
Massion J(1992)Movement, posture and equilibrium: interaction and coordination Prog Neurobiol 38 35-1224
[6]  
Toussaint HM(1997)Anticipatory postural adjustments in the back and leg lift Med Sci Sports Exerc 29 1216-322
[7]  
Commissaris DACM(2005)Feedback equilibrium control during human standing Biol Cybern 93 309-254
[8]  
Beek PJ(2008)Postural control in isometric ramp pushes: the role of consecutive postural adjustments (CPAs) Neurosci Lett 448 250-397
[9]  
Alexandrov AV(2010)The role of anticipatory postural adjustments in compensatory control of posture: 1. Electromyographic analysis J Electromyogr Kinesiol 20 388-405
[10]  
Le Bozec S(2010)The role of anticipatory postural adjustments in compensatory control of posture: 2. Biomechanical analysis J Electromyogr Kinesiol 20 398-180