Relationship between eye movements and freezing of gait during turning in individuals with Parkinson disease
Wang, Y.; van Wanrooij, M. M.; Emaus, R.; Nonneke, J.; Cohen, M. X.; Cockx, H.; Janssen, S.; Helmich, R. C.; van Wezel, R.
Show abstract
BackgroundIndividuals with Parkinsons disease can experience freezing of gait: "a sudden, brief episode of an inability to move their feet despite the intention to walk". Since turning is the most sensitive condition to provoke freezing-of-gait episodes, and the eyes typically lead turning, we hypothesize that disturbances in saccadic eye movements are related to freezing-of-gait episodes. ObjectivesThis study explores the relationship between freezing-of-gait episodes and saccadic eye movements for gaze shift and gaze stabilization during turning. MethodsWe analyzed 277 freezing-of-gait episodes provoked among 17 individuals with Parkinsons disease during two conditions: self-selected speed and rapid speed 180-degree turns in alternating directions. Eye movements acquired from electrooculography signals were characterized by the average position of gaze, the amplitude of gaze shifts, and the speed of gaze stabilization. We analyzed these variables before and during freezing-of-gait episodes occurring at the different phase angles of a turn. ResultsSignificant off-track changes of the gaze position were observed almost one 180-degree-turn time before freezing-of-gait episodes. In addition, the speed of gaze stabilization significantly decreased during freezing-of-gait episodes. ConclusionsWe argue that off-track changes of the gaze position could be a predictor of freezing-of-gait episodes due to continued failure in movement-error correction or an insufficient preparation for eye-to-foot coordination during turning. The decline in the speed of gaze stabilization is large during freezing-of- gait episodes given the slowness or stop of body turning. We argue that this could be evidence for a healthy compensatory system in individuals with freezing-of-gait.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A synthetic kinematic index of trunk displacement conveying the overall motor condition in Parkinson's disease 96%
- A novel method to assess motor planning deficits in patients with Parkinson's disease and mild cognitive impairment 94%
- Developing and Validating a New Web-Based Tapping Test for Measuring Distal Bradykinesia in Parkinson's Disease 94%
Similar papers in this journal
Similar papers in this journal
- Quantifying normal and parkinsonian gait features from home movies: Practical application of a deep learning-based 2D pose estimator 95%
- Autocorrelation-based method to identify disordered rhythm in Parkinsons disease tasks: a novel approach applicable to multimodal devices 94%
- Clinical factors affecting evoked magnetic fields in patients with Parkinson's disease 93%
Similar papers in this journal
- Dynamic evaluation of spine kinematics in individuals with Parkinson’s disease and freezing of gait 95%
- Evaluation of gait initiation parameters using inertial sensors in Huntington's Disease: Insights into anticipatory postural adjustments and cognitive interference 93%
- The Effects of Metronome Frequency Differentially Affects Gait on a Treadmill and Overground in People with Parkinson's Disease 93%
Similar papers in this journal
- Exploring Motor Imagery as a Therapeutic Intervention for Parkinson’s Disease Patients: A Scoping Review 93%
- Application of Digital Tools and Artificial Intelligence to the Myasthenia Gravis Core Examination 93%
- Eye movement evaluation in Multiple Sclerosis and Parkinson's Disease using a Standardized Oculomotor and Neuro-ophthalmic Disorder Assessment (SONDA) 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.