Increasing Insight in Spatial Neglect: Unraveling Its Longitudinal Interaction With Motor Function After Stroke
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 36
- 试验地点
- 3
- 主要终点
- Change in Broken Hearts Test
研究概览
简要总结
Goal: Various studies suggest a negative association between spatial neglect and motor outcomes after stroke (Barrett & Muzaffar 2014) (Kwakkel 2014). Our goal is to assess:
- The longitudinal interaction of the recovery of spatial neglect with the recovery of motor function and outcomes (such as paresis, sitting balance and standing balance)
- Whether the association is different across the different subtypes of spatial neglect (visuospatial/personal/ADL-related)
- The role of compensation strategies for balance control in patients with spatial neglect
To do so, we will perform a longitudinal cohort study in which we will repetitively assess post-stroke patients using a comprehensive assessment approach for both spatial neglect and motor outcomes. With regards to neglect, we will evaluate various aspects of both visuospatial and personal neglect. For motor outcomes, we will combine clinical and instrumented (biomechanical) assessment methods to evaluate post-stroke recovery of leg paresis, (sitting and standing) balance and gait.
详细描述
Spatial neglect is a post-stroke disorder characterized by impaired awareness for stimuli located on the contralesional side of space. This neglect results in problems with reporting, responding or orienting toward contralesional stimuli, which cannot be explained by sensory or motor impairments. It can be present after a right- or left-sided brain lesion but is more frequently present in right-sided brain lesions. Within the first 2 weeks post-stroke, it occurs in approximately 50% of patients. Spontaneous neurological recovery of neglect follows a natural logistic pattern of improvement within the first 12 to 14 weeks post-stroke. Afterward, the curve flattens and the severity remains merely invariant, leaving 40% of patients with initial neglect still with symptoms at 1 year post-stroke.
The high frequency and persistence of spatial neglect might have major consequences; indeed, various studies suggest a negative association between spatial neglect and post-stroke recovery of motor function and abilities. Apart from the seemingly suppressive influence of VSN on the recovery of upper-limb strength and synergy acquisition, lower limb motor recovery, balance and functional mobility might also be affected. However, the longitudinal interactions between spatial neglect and lower limb motor recovery are complex and only partially understood, owing to a lack of prospective cohort studies evaluating this. Additionally, also the association between spatial neglect and balance and functional mobility is currently unclear. A comprehensive overview is lacking, even though both balance and functional mobility are likely to be affected in these patients. Indeed, spatial neglect is characterised by a spatial (orientational) bias of attention. This bias might reflect a disruption in spatial information processing, which is a neural process incorporating sensory information from multiple modalities, resolving sensory ambiguity and integrating afferent and efferent information. A bias in this information processing might impede postural control and therefore also balance and mobility. However, whether spatial neglect and these motor outcomes are longitudinally associated, and whether such association is similar for the different spatial neglect subtypes, is still unknown.
Our goal is to assess:
- The longitudinal interaction of the recovery of spatial neglect with the recovery of motor function and outcomes (such as paresis, sitting balance and standing balance)
- Whether the association is different across the different subtypes of spatial neglect (visuospatial/personal/ADL-related)
- The role of compensation strategies for balance control in patients with spatial neglect
To do so, we will perform a longitudinal cohort study in which we will repetitively assess post-stroke patients using a comprehensive assessment approach for both spatial neglect and motor outcomes. With regards to neglect, we will evaluate various aspects of both visuospatial and personal neglect. For motor outcomes, we will combine clinical and instrumented (biomechanical) assessment methods to evaluate post-stroke recovery of leg paresis, (sitting and standing) balance and gait.
研究设计
- 研究类型
- Observational
- 观察模型
- Cohort
- 时间视角
- Prospective
入排标准
- 年龄范围
- 18 Years 至 90 Years(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •First-ever, MRI- or CT-confirmed, ischemic or hemorrhagic, anterior circulation stroke
- •Age: 18 - 90 years
- •Moderate to severe weakness of the lower limb at baseline (MI </=75)
- •Pre-morbid independence in activities of daily living (mRS </=2) and gait (FAC >3)
- •Able to communicate and comprehend
- •Sufficient motivation to participate
- •Provided a written informed consent
排除标准
- •Other neurological condition affecting motor functions of the lower limbs
- •Pre-existing musculoskeletal impairment severely affecting the gait pattern
- •Medically unstable
- •Non-corrected vision disorders
结局指标
主要结局
Change in Broken Hearts Test
时间窗: Change from 8 weeks to 12 weeks
Change in cancellation task for visuospatial neglect
Change in Rivermead Mobility Index
时间窗: Change from 8 weeks - 12 weeks
Change in functional balance and mobility. Score from 0 to 15. Higher score means better performance.
Functional Ambulation Categories
时间窗: Change from 8 weeks to 12 weeks
Walking evaluation. Score from 0-5. Higher score means better performance.
次要结局
- 5m walk test(<14 days, 3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Catherine Bergego Scale(3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Visuospatial Search Time Test(3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Trunk Control Test - item quiet sitting for 30 seconds(<14 days, 3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Berg Balance Scale - item quiet standing for 2 minutes(<14 days, 3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Line Bisection Test(3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Fluff Test(3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Motricity index - lower limbs(<14 days, 3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Fügl-Meyer Motor Assessment - lower limbs(<14 days, 3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
- Tactile extinction test(3 weeks, 5 weeks, 8 weeks, 12 weeks post-stroke)
研究者
Wim Saeys
Professor
Universiteit Antwerpen
