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平衡控制机制与轻度认知障碍老年人脑结构完整性的关系。

Association of balance control mechanisms with brain structural integrity in older adults with mild cognitive impairment.

机构信息

Department of Physical Therapy, University of Illinois at Chicago, Chicago, USA.

Department of Physical Therapy, University of Illinois at Chicago, Chicago, USA.

出版信息

Neurosci Lett. 2022 Jul 13;783:136699. doi: 10.1016/j.neulet.2022.136699. Epub 2022 May 30.

Abstract

BACKGROUND

Older adults with mild cognitive impairment (OAwMCI) exhibit subtle balance control and gait deficits which are predominantly associated with structural brain pathologies such as impaired white matter integrity and reduced gray matter volume. However, the relationship between balance recovery mechanisms and neural substrates in OAwMCI remains unknown. This study thus aimed to explore the associations of volitional (self-initiated) and reactive balance (in response to an external perturbation) control with structural brain integrity.

METHODS

Ten OAwMCI (MoCA 18-25/30; greater than 55 years) were examined on the limits of stability test (volitional balance via Equitest), stance perturbation test (reactive balance via ActiveStep treadmill) and underwent magnetic resonance imaging. Forward movement (frequently performed functional activity of daily living) was quantified by maximum excursion (maximum ability to shift one's center of gravity toward the theoretical limit [MXE-%])and directional control (amount of movement exhibited towards the target proportional to the movement away from the target [DCL-%]) on the limits of stability test. Slip-like (prevalent type of accidental falls) perturbations were quantified by postural stability (shortest distance of the COM motion state, i.e., its position and velocity, to the theoretical boundary) on the ActiveStep treadmill. White matter integrity was quantified by fractional anisotropy (FA, movement of water molecules directionality) and gray matter volume measured in mm.

RESULTS

For volitional balance control, reduced forward MXE was significantly (p < 0.05) associated with lower FA in left (R = 0.56) and right (R = 0.60) corticospinal tract, left (R = 0.49) and right (R = 0.51) corticothalamic tract, left (R = 0.70) and right (R = 0.57) frontopontine tract, right (R = 0.67) cingulum, anterior commissure (R = 0.82), and corpus callosum (R = 0.62). Reduced forward DCL was significantly (p < 0.05) associated with reduced gray matter volume in the left (R = 0.75) and right (R = 0.81) cerebellum, brainstem (R = 0.64), right (R = 0.49) thalamus. For reactive balance control, reduced postural stability (p < 0.05) was significantly associated with reduced FA in the left (R = 0.75) and right (R = 0.64) corticospinal tract, left (R = 0.67) and right (R = 0.65) frontopontine tract. Reduced postural stability was significantly (p < 0.05) associated with reduced gray matter volume in the brainstem (R = 0.72) and right cerebellum (R = 0.70).

CONCLUSION

Our results indicate that structural brain integrity influences stability control in OAwMCI for both volitional and reactive balance tasks, which may share some common cortico-subcortical motor pathways and relay centers. Results also show that the integrity of descending pathways from cortical attentional centers could influence stability control for both tasks.

摘要

背景

轻度认知障碍的老年人(OAwMCI)表现出微妙的平衡控制和步态缺陷,这些缺陷主要与结构脑病理学有关,如白质完整性受损和灰质体积减少。然而,OAwMCI 中的平衡恢复机制与神经基质之间的关系仍然未知。因此,本研究旨在探索意志性(自我发起)和反应性(对外部干扰的反应)平衡控制与结构脑完整性之间的关联。

方法

10 名 OAwMCI(MoCA 18-25/30;年龄大于 55 岁)在平衡极限测试(通过 Equitest 进行意志性平衡)、站立干扰测试(通过 ActiveStep 跑步机进行反应性平衡)上进行了检查,并进行了磁共振成像。向前运动(经常进行的日常功能性活动)通过极限稳定性测试中的最大偏移量(将重心向理论极限方向移动的最大能力 [MXE-%])和定向控制(向目标移动的量与远离目标的量成正比 [DCL-%])进行量化。类似滑倒的(常见意外跌倒类型)干扰通过 ActiveStep 跑步机上的姿势稳定性(COM 运动状态的最短距离,即其位置和速度,到理论边界)进行量化。通过分数各向异性(FA,水分子运动方向)和以毫米计的灰质体积来量化白质完整性。

结果

对于意志性平衡控制,向前 MXE 的减少与左侧(R=0.56)和右侧(R=0.60)皮质脊髓束、左侧(R=0.49)和右侧(R=0.51)皮质丘脑束、左侧(R=0.70)和右侧(R=0.57)皮质脑桥束、右侧(R=0.67)扣带、前连合(R=0.82)和胼胝体(R=0.62)的 FA 降低显著相关(p<0.05)。向前 DCL 的减少与左侧(R=0.75)和右侧(R=0.81)小脑、脑干(R=0.64)、右侧(R=0.49)丘脑的灰质体积减少显著相关(p<0.05)。对于反应性平衡控制,姿势稳定性的降低(p<0.05)与左侧(R=0.75)和右侧(R=0.64)皮质脊髓束、左侧(R=0.67)和右侧(R=0.65)皮质脑桥束的 FA 降低显著相关。姿势稳定性的降低与脑干(R=0.72)和右侧小脑(R=0.70)的灰质体积减少显著相关(p<0.05)。

结论

我们的结果表明,结构脑完整性影响 OAwMCI 中意志性和反应性平衡任务的稳定性控制,这可能与一些共同的皮质下运动通路和中继中心有关。结果还表明,皮质注意中心的下行通路的完整性可能会影响这两个任务的稳定性控制。

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