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April 3, 2026Parkinson s Disease0 citationsOpen Access

Sensor‐Based Assessment of Asymmetry in Upper Limb Bradykinesia Among Patients With Parkinson’s Disease and Scans Without Evidence of Dopaminergic Deficit (SWEDD)

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DKDo‐Young KwonJKJunghyuk KoYKYuri Kwon

Key Points

  • The study aims to quantitatively assess upper limb asymmetry in bradykinesia among patients with Parkinson's disease and SWEDD.
  • Recruited early-stage, drug-naïve PD patients, SWEDD patients, and healthy controls.
  • Used gyro sensors to record signals during finger tapping and forearm rotation tasks.
  • Calculated bilateral asymmetry indices and compared them among groups.
  • Applied repeated measure ANOVA and Spearman correlation analysis with clinical motor scores.
  • No significant group differences found during finger tapping tasks.
  • PD patients showed greater asymmetry than SWEDD patients during forearm rotation in several measures.
  • Significant task × group interaction effects observed only in forearm rotation.
  • Asymmetry indices from forearm rotation correlated with clinical motor scores.

Abstract

Background Bilateral motor asymmetry is a hallmark feature of Parkinson’s disease (PD). However, few studies have quantitatively examined this feature in patients with scans without evidence of dopaminergic deficit (SWEDD). This study aimed to investigate upper limb asymmetry in bradykinesia among PD and SWEDD patients using gyro sensors, focusing on finger tapping and forearm rotation task. Methods We recruited 23 early‐stage, drug‐naïve PD patients, 23 SWEDD patients, and 20 age‐matched healthy controls. We recorded gyro sensor signals during 15‐s finger tapping and forearm rotation tasks. Bilateral asymmetry indices were calculated and compared among groups. In addition, repeated measure analysis of variance (ANOVA) was used to examine the interaction of task and group, and Spearman correlation analysis was conducted with clinical motor scores. Results No significant group differences were found during finger tapping. However, during forearm rotation, PD patients exhibited significantly greater asymmetry than SWEDD patients in several indices, including RMS angular velocity, peak angular displacement, peak power, and total power. Task × group interaction effects were significant only in forearm rotation, and asymmetry indices from forearm rotation showed significant correlations with clinical motor scores. Conclusions Forearm rotation is a sensitive task for detecting motor asymmetry in PD and for differentiating PD from SWEDD. These results suggest that quantitative motor asymmetry indices using wearable sensors could aid clinicians in the identification of potential SWEDD.

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Cite This Study

Kwon et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ebd5a333a821460d562https://doi.org/10.1155/padi/6400390
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