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February 9, 20260 citations

Differential Effects of Lateralization-Task and Training on Low-Frequency EEG Oscillations in Upper- and Lower-Limb Amputees.

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BDBurcu DilekDZDariusz ZapałaPAPawel Augustynowicz

Key Points

  • This research investigates how lateralization tasks and training affect EEG oscillations in amputees.
  • Participants included upper-limb amputees, lower-limb amputees, and healthy controls.
  • EEG recordings were taken during a hand laterality task with varying stimuli.
  • Training was provided before final EEG measurements to assess changes.
  • Participants showed higher accuracy for stimuli at 0° compared to 180°.
  • Upper-limb amputees had slower reaction times compared to lower-limb amputees.
  • Delta power increased in upper-limb amputees compared to healthy controls after training.

Abstract

Amputation may disrupt body schema through impairments in attentional mechanisms within the central nervous system. This study examined behavioral performance and low-frequency oscillatory (LFO) activity in individuals with upper-limb amputations (ULA), lower-limb amputations (LLA), and healthy controls (HC). Participants included six ULA (5 Male, 1 Female), nine LLA (7 Male, 2 Female), and eleven HC (8 Male, 3 Female). During electroencephalography (EEG) recording, participants performed a hand laterality task with stimuli varying in laterality (right vs. left) and angular orientation (0° vs. 180°). EEG was recorded before and after lateralization training. Accuracy was higher for stimuli presented at 0° than at 180° (p p p p p p < .05). Overall, behavioral and electrophysiological findings provide insight into bodily attention mechanisms in amputees and have implications for neurorehabilitation. Future studies with larger and more homogeneous samples are needed to improve generalizability and clarify underlying mechanisms.

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Cite This Study

Dilek et al. (2026) studied this question.

synapsesocial.com/papers/698979e9f0ec2af6756e7e90https://doi.org/10.1177/00332941261423126
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