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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.
Abstract:
The visually guided reaching of two patients with bilateral optic ataxia was explored in two experiments. In Experiment 1 simple delayed pointing was compared with immediate pointing. In the immediate pointing task both variable and constant errors increased with target eccentricity. In contrast to the performance of control subjects and contrary to their own beliefs, the patients both showed improved accuracy in the delay condition. This improvement was manifest as a reduction in both pointing variability and in the constant angular error towards the point of fixation. Both angular errors and their improvement with the delay were proportional to target eccentricity. Experiment 2 used a task in which the target was pre-viewed 5s prior to its re-exposure for pointing ('delayed real pointing'). On some trials a conflict was introduced between the present and previous visual information by changing the target's location during the delay. In contrast to control subjects, who ignored the pre-viewed location and aimed directly at the current target, both patients with optic ataxia initiated their movements towards the previously viewed target location. Evidently they relied on off-line information in preference to on-line visual information. In addition, the patients often failed to detect the changes in target location. One of the patients sometimes even guessed incorrectly that the target had changed its location, and her movement trajectory was then more affected by her false belief than by the target's actual location. These findings confirm that posterior parietal lesions severely disrupt direct visuomotor transformations, and suggest that the residual performance is mediated indirectly by expectations or beliefs about target position.
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.
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