Current Biology
June 1, 2005
Olivia Carter, David E. Presti, C. Callistemon et al.
262 citations
Tibetan Buddhist monks with extensive meditative training can voluntarily alter the normal fluctuations in conscious awareness that occur during perceptual rivalry tasks such as binocular rivalry and motion-induced blindness. In binocular rivalry, a one-point meditation that focuses attention on a single object led to extreme increases in the duration of perceptual dominance, with some monks reporting complete perceptual stability for up to five minutes. In contrast, compassion meditation had no observable effect on rivalry rate. During motion-induced blindness, monks reported longer disappearance durations than meditation-naive individuals, and one highly experienced monk could sustain the disappearance of a visual target for over 12 minutes. These results suggest that intense attentional focus, rather than meditation per se, can modulate the neural mechanisms underlying conscious visual perception.
Journal of Cognitive Neuroscience
October 1, 2005
Olivia Carter, David C. Burr, John D. Pettigrew et al.
236 citations
A hallucinogenic drug that activates serotonin receptors, psilocybin, impaired healthy volunteers' ability to track moving objects but did not affect their spatial working memory. Blocking the 5-HT2A receptor with ketanserin before psilocybin did not prevent this attentional deficit, pointing to the 5-HT1A receptor as the likely cause. The authors suggest the impairment may stem from a reduced ability to filter out distractions rather than a loss of attentional capacity. Eight participants completed both tasks under placebo, psilocybin, ketanserin, and the combination.
Perception
March 1, 2003
Olivia Carter, John D. Pettigrew
171 citations
Perceptual rivalry causes conscious experience to oscillate even when sensory input stays constant. The neural site of binocular rivalry, a well-known form, remains debated, with different cortical regions implicated. This work shows that the temporal pattern of disappearances and reappearances in motion-induced blindness (MIB) closely correlates with binocular rivalry patterns within the same individual, across wide inter-individual variation. The hallucinogen LSD increases rhythmicity in both phenomena identically. MIB also shares two hallmark properties of binocular rivalry: dominance periods approximate a gamma distribution, and increasing one perceptual phase's predominance reduces the opposing phase's time, consistent with Levelt's second proposition. The authors conclude MIB is a form of perceptual rivalry and that a common oscillator may time all such oscillations.
Psychopharmacology
September 13, 2007
Olivia Carter, Felix Hasler, John D. Pettigrew et al.
150 citations
Binocular rivalry, where each eye sees a different image and perception alternates between them, was slowed by psilocybin (215 µg/kg) in ten healthy adults. Pretreatment with ketanserin (50 mg), a 5-HT2A receptor blocker, prevented most of psilocybin's hallucinogenic symptoms but did not reverse the slowing of rivalry switching or the drug's negative-type symptoms such as reduced arousal and vigilance. These findings link slower binocular rivalry switching to subjective levels of arousal and attention, and suggest that psilocybin's effect on rivalry is not mediated by the 5-HT2A receptor.
Neuropsychopharmacology
January 26, 2005
Olivia Carter, John D. Pettigrew, Felix Hasler et al.
122 citations
Binocular rivalry, where each eye sees a different image and perception alternates between them, is influenced by psilocybin. In 12 healthy volunteers, both low (115 µg/kg) and high (250 µg/kg) doses of psilocybin significantly reduced the rate and rhythmicity of perceptual alternations 90 minutes after administration, compared to placebo. Over time, switch rates increased, with some exceeding pretest levels at 360 minutes, though mean phase duration did not significantly differ from placebo. Drug-induced changes in rivalry phase durations corresponded to altered states of consciousness measured by the 5D-ASC scale. The findings implicate serotonergic pathways and support a brainstem oscillator's role in perceptual rivalry and psychosis symptoms.
Neuroreport
August 1, 2004
Olivia Carter, John D. Pettigrew, David C. Burr et al.
83 citations
The hallucinogenic drug psilocybin, which activates serotonin receptors, selectively impairs the ability to perceive coherent motion in random dot patterns, a task that relies on high-level global motion detectors, while leaving contrast sensitivity for drifting gratings, mediated by low-level detectors, unaffected. This pattern of visual processing deficits mirrors those seen in schizophrenia, suggesting psilocybin may serve as a pharmacological model for studying psychosis and the neural basis of visual perception.
Journal of Vision
March 17, 2010
Olivia Carter, David C. Burr, John D. Pettigrew et al.
6 citations
A hallucinogenic drug that activates serotonin receptors, psilocybin, impairs the ability to track multiple moving objects but does not affect spatial working memory, indicating a functional separation between these two cognitive processes. Blocking one type of serotonin receptor (5-HT2A) with ketanserin did not prevent this attentional deficit, pointing to the involvement of another receptor (5-HT1A) instead. The impairment may stem from difficulty ignoring distractions rather than a reduction in attentional capacity itself.
Journal of Vision
March 19, 2010
O. Carter, John D. Pettigrew, Felix Hasler et al.
3 citations
Binocular rivalry, the fluctuation in visual awareness when different images are shown to each eye, is slowed by the hallucinogenic compound psilocybin, the active ingredient in magic mushrooms. In ten healthy human subjects, psilocybin reduced the rate of switching between percepts and increased the experience of mixed or transitional percepts. Pretreatment with ketanserin, a selective 5-HT2A receptor antagonist, blocked most of psilocybin's positive psychotic-like symptoms but did not affect the slowing of binocular rivalry switching or negative symptoms related to reduced arousal and vigilance. This suggests that the slowing of binocular rivalry by psilocybin is not mediated by 5-HT2A receptors but may instead involve 5-HT1A receptor activation reducing serotonin release from the brainstem raphe nuclei, linking rivalry switching rate to arousal and attention.