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Characterising Upper Limb Movements in Huntington's Disease and the Impact of Restricted Visual Cues
Jessica Despard1, Anne-Marie Ternes1, Bleydy Dimech-Betancourt1
1School of Psychological Sciences, Faculty of Medicine, Nursing and Health Sciences, Monash University, Clayton, Victoria, Australia.
Insights
Symptomatic Huntington's disease (HD) impairs upper limb motor control, especially movement timing and planning, worsening with task difficulty. These deficits are more sensitive indicators of motor dysfunction than speed or accuracy alone.
Area of Science:
- Neuroscience
- Motor Control
- Human Movement Analysis
Background:
- Huntington's disease (HD) commonly presents with voluntary motor deficits, including slowed movements and reduced accuracy.
- These motor impairments may be amplified under conditions with limited visual feedback.
Purpose of the Study:
- To characterize the upper limb motor profile in individuals with Huntington's disease (HD) across varying task difficulties and visual cue conditions.
- To investigate motor planning and online control deficits in premanifest and early symptomatic HD.
Main Methods:
- Employed Fitts' law to quantify upper limb movement timing in premanifest HD (pre-HD), early symptomatic HD (symp-HD), and matched controls.
- Assessed reciprocal movements under cued and blind conditions, analyzing dwell times, speed, accuracy, and movement variability.
- Manipulated task difficulty by altering target size and distance.
Main Results:
- Symptomatic HD patients exhibited significantly longer and less consistent movement times compared to controls and pre-HD.
- Impaired movement planning and online control were evident in symp-HD, indicated by prolonged dwell and deceleration times.
- Group differences in movement time and variability were observed independently of basic speed and accuracy measures.
Conclusions:
- Motor planning and online control deficiencies are present in symptomatic HD, exacerbated by increased task difficulty.
- Movement timing and consistency measures offer a more sensitive assessment of motor dysfunction in symptomatic HD than traditional speed and accuracy metrics.
- Visual cue presence increased movement time variability in symp-HD, highlighting deficits in movement consistency during targeted actions.
Background:
Voluntary motor deficits are a common feature in Huntington's disease (HD), characterised by movement slowing and performance inaccuracies. This deficit may be exacerbated when visual cues are restricted.
Objective:
To characterize the upper limb motor profile in HD with various levels of difficulty, with and without visual targets.
Methods:
Nine premanifest HD (pre-HD), nine early symptomatic HD (symp-HD) and nine matched controls completed a motor task incorporating Fitts' law, a model of human movement enabling the quantification of movement timing, via the manipulation of task difficulty (i.e., target size, and distance between targets). The task required participants to make reciprocal movements under cued and blind conditions. Dwell times (time stationary between movements), speed, accuracy and variability of movements were compared between groups.
Results:
Symp-HD showed significantly prolonged and less consistent movement times, compared with controls and pre-HD. Furthermore, movement planning and online control were significantly impaired in symp-HD, compared with controls and pre-HD, evidenced by prolonged dwell times and deceleration times. Speed and accuracy were comparable across groups, suggesting that group differences observed in movement time, variability, dwell time and deceleration time were evident over and above simple performance measures. The presence of cues resulted in greater movement time variability in symp-HD, compared with pre-HD and controls, suggesting that the deficit in movement consistency manifested only in response to targeted movements.
Conclusions:
Collectively, these findings provide evidence of a deficiency in both motor planning, particularly in relation to movement timing and online control, which became exacerbated as a function of task difficulty during symp-HD stages. These variables may provide a more sensitive measure of motor dysfunction than speed and/or accuracy alone in symp-HD.
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