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Striatal dopamine denervation and sensory integration for balance in middle-aged and older adults.

机译:纹状体多巴胺去神经和感觉统合,以平衡中老年人。

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The dopaminergic system of the basal ganglia has been implicated in the integration of sensory information important for balance based on studies in patients with Parkinson's disease. Striatal dopaminergic activity decreases with normal aging. OBJECTIVE: To investigate the relationship between regional striatal dopaminergic denervation and sensory information integration important for balance in middle-aged and older adults. METHODS: Community-dwelling subjects (N=35; age 41-83) with no clinical diagnoses of conditions affecting balance underwent dynamic posturography testing (Sensory Organization Test/SOT) and C-11-beta-CFT dopamine transporter positron emission tomography. RESULTS: Reduced ventral striatal dopamine was significantly correlated with increased anterior-posterior sway in three SOT conditions. Specifically, during quiet standing (SOT Conditions #1, 2) and when repeatedly to sway-referenced visual environments (SOT Condition #3, Trial #3), pre-synaptic dopaminergic denervation in the anteroventral striatum explained over 20-25% of the variability in sway magnitude above and beyond that explained by age (p
机译:根据对帕金森氏病患者的研究,基底节的多巴胺能系统参与了对平衡至关重要的感觉信息的整合。纹状体多巴胺能活性随正常衰老而降低。目的:探讨区域纹状体多巴胺能神经支配与感觉信息整合之间的关系,对中老年人的平衡至关重要。方法:对没有临床症状影响平衡的临床诊断的社区居民受试者(N = 35; 41-83岁)进行动态体位检查(Sensory Organisation Test / SOT)和C-11-beta-CFT多巴胺转运蛋白正电子发射断层扫描。结果:在三种SOT情况下,腹侧纹状体多巴胺的减少与前后摇摆的增加显着相关。具体来说,在安静站立期间(SOT条件#1、2)以及反复摇晃参照的视觉环境(SOT条件#3,试验#3)时,前腹纹状体中突触前多巴胺能神经支配的比例超过了20-25%摇摆幅度的变化超出和超过年龄所解释的变化(p <或= 0.01)。纹状体多巴胺能神经支配不影响摇摆参考的地面条件下的平衡。结论:SOT条件#3的发现表明,在正常衰老中,抑制平衡的稳定能力破坏了视力相关的姿势控制过程,这至少部分取决于纹状体多巴胺能途径。相比之下,纹状体多巴胺能神经支配似乎并未削弱解除不稳定的本体感受输入的能力并在挑战性的感觉扰动期间触发前庭控制系统(SOT条件#4-6)。最后,安静的站立结果(SOT条件#1、2)证明有必要进一步研究纹状体多巴胺能神经支配对健康成年人调整肌肉张力的影响。

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