Assessing age-related changes in brain activity during isometric upper and lower limb force control tasks.

IF 2.7 3区 医学 Q1 ANATOMY & MORPHOLOGY
Abigail E Bower, Jae Woo Chung, Roxana G Burciu
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引用次数: 0

Abstract

Despite the widespread use of older adults (OA) as controls in movement disorder studies, the specific effects of aging on the neural control of upper and lower limb movements remain unclear. While functional MRI paradigms focusing on hand movements are widely used to investigate age-related brain changes, research on lower limb movements is limited due to technical challenges in an MRI environment. This study addressed this gap by examining both upper and lower limb movements in healthy young adults (YA) vs. OA. Sixteen YA and 20 OA, matched for sex, dominant side, and cognitive status, performed pinch grip and ankle dorsiflexion tasks, each requiring 15% of their maximum voluntary contraction. While both groups achieved the target force and exhibited similar force variability and accuracy, OA displayed distinct differences in force control dynamics, with a slower rate of force increase in the hand task and a greater rate of force decrease in the foot task. Imaging results revealed that OA exhibited more widespread activation, extending beyond brain regions typically involved in movement execution. In the hand task, OA showed increased activity in premotor and visuo-motor integration regions, as well as in the cerebellar hemispheres. During the foot task, OA engaged the cerebellar hemispheres more than YA. Collectively, results suggest that OA may recruit additional brain regions to manage motor tasks, possibly to achieve similar performance. Future longitudinal studies that track changes over time could help clarify if declines in motor performance lead to corresponding changes in brain activation.

评估等长上肢和下肢力控制任务中脑活动的年龄相关变化。
尽管在运动障碍研究中广泛使用老年人(OA)作为对照,但衰老对上肢和下肢运动的神经控制的具体影响尚不清楚。虽然关注手部运动的功能性MRI范式被广泛用于研究与年龄相关的大脑变化,但由于MRI环境中的技术挑战,对下肢运动的研究受到限制。本研究通过检查健康年轻人(YA)与OA的上肢和下肢运动来解决这一差距。16名YA和20名OA,根据性别、优势侧和认知状态进行匹配,执行捏握和踝关节背屈任务,每项任务需要最大自愿收缩量的15%。虽然两组都达到了目标力,并表现出相似的力变异性和准确性,但OA在力控制动力学方面表现出明显的差异,在手部任务中力的增加速度较慢,而在足部任务中力的减少速度较大。成像结果显示OA表现出更广泛的激活,超出了通常涉及运动执行的大脑区域。在手部任务中,OA显示运动前区和视觉运动整合区以及小脑半球的活动增加。在足部任务中,OA比YA对小脑半球的作用更大。总的来说,结果表明OA可能需要额外的大脑区域来管理运动任务,可能达到类似的效果。未来追踪变化的纵向研究可能有助于澄清运动表现的下降是否会导致大脑活动的相应变化。
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来源期刊
Brain Structure & Function
Brain Structure & Function 医学-解剖学与形态学
CiteScore
6.00
自引率
6.50%
发文量
168
审稿时长
8 months
期刊介绍: Brain Structure & Function publishes research that provides insight into brain structure−function relationships. Studies published here integrate data spanning from molecular, cellular, developmental, and systems architecture to the neuroanatomy of behavior and cognitive functions. Manuscripts with focus on the spinal cord or the peripheral nervous system are not accepted for publication. Manuscripts with focus on diseases, animal models of diseases, or disease-related mechanisms are only considered for publication, if the findings provide novel insight into the organization and mechanisms of normal brain structure and function.
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