Visually guided reaching: bilateral posterior parietal lesions cause a switch from fast visuomotor to slow cognitive

Y Rossetti1, P Revol, R McIntosh

  • 1INSERM Unité 534, Institut Fédératif des Neurosciences de Lyon: Espace et Action, Institut National de la Santé Et de la Recherche Médicale, 16 avenue Lépine, Case 13, 69676 Bron, France.

Neuropsychologia
|February 15, 2005
PubMed

Insights

Patients with optic ataxia showed improved accuracy with delayed pointing, relying on off-line information over real-time visual cues. This suggests posterior parietal lesions disrupt direct visuomotor control.

Area of Science:

  • Neuroscience
  • Cognitive Psychology
  • Ophthalmology

Background:

  • Optic ataxia is a condition characterized by difficulties in visually guided reaching.
  • Bilateral optic ataxia results from damage to the posterior parietal cortex, affecting visuomotor transformations.

Observation:

  • Two patients with bilateral optic ataxia performed delayed and immediate pointing tasks.
  • Experiment 1: Immediate pointing increased errors with target eccentricity; delayed pointing improved accuracy for patients.
  • Experiment 2: Patients with optic ataxia preferred previously viewed target locations over updated visual information, failing to detect target changes.

Findings:

  • Delayed visual information improved pointing accuracy in patients with optic ataxia, reducing variability and constant angular error.
  • Patients with optic ataxia prioritized 'off-line' (memory-based) target information over 'on-line' (real-time) visual input.
  • Posterior parietal lesions impair direct visuomotor transformations, with residual performance influenced by beliefs about target position.

Implications:

  • The findings highlight the critical role of the posterior parietal cortex in integrating visual information for accurate reaching.
  • Understanding these visuomotor deficits provides insights into the neural basis of spatial awareness and action planning.
  • This research suggests that cognitive factors like expectations and beliefs play a significant role in guiding movements when direct visual feedback is compromised.