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1.
Transl Psychiatry ; 13(1): 134, 2023 04 26.
Article in English | MEDLINE | ID: mdl-37185805

ABSTRACT

Obsessive-compulsive disorder (OCD) affects 2-3% of the population. One-third of patients are poorly responsive to conventional therapies, and for a subgroup, gamma knife capsulotomy (GKC) is an option. We examined lesion characteristics in patients previously treated with GKC through well-established programs in Providence, RI (Butler Hospital/Rhode Island Hospital/Alpert Medical School of Brown University) and São Paulo, Brazil (University of São Paolo). Lesions were traced on T1 images from 26 patients who had received GKC targeting the ventral half of the anterior limb of the internal capsule (ALIC), and the masks were transformed into MNI space. Voxel-wise lesion-symptom mapping was performed to assess the influence of lesion location on Y-BOCS ratings. General linear models were built to compare the relationship between lesion size/location along different axes of the ALIC and above or below-average change in Y-BOCS ratings. Sixty-nine percent of this sample were full responders (≥35% improvement in OCD). Lesion occurrence anywhere within the targeted region was associated with clinical improvement, but modeling results demonstrated that lesions occurring posteriorly (closer to the anterior commissure) and dorsally (closer to the mid-ALIC) were associated with the greatest Y-BOCS reduction. No association was found between Y-BOCS reduction and overall lesion volume. GKC remains an effective treatment for refractory OCD. Our data suggest that continuing to target the bottom half of the ALIC in the coronal plane is likely to provide the dorsal-ventral height required to achieve optimal outcomes, as it will cover the white matter pathways relevant to change. Further analysis of individual variability will be essential for improving targeting and clinical outcomes, and potentially further reducing the lesion size necessary for beneficial outcomes.


Subject(s)
Obsessive-Compulsive Disorder , Radiosurgery , Humans , Brazil , Obsessive-Compulsive Disorder/diagnostic imaging , Obsessive-Compulsive Disorder/surgery , Radiosurgery/methods , Treatment Outcome , Internal Capsule/diagnostic imaging , Internal Capsule/surgery
2.
J Neurophysiol ; 84(1): 451-9, 2000 Jul.
Article in English | MEDLINE | ID: mdl-10899218

ABSTRACT

Real-world behavior is typically more complicated than a one-to-one mapping between a stimulus and response; the same stimulus can lead to different behaviors depending on the situation, or the same behavior may be cued by different stimuli. In such cases, knowledge of the formal demands of the task at hand is required. We found that in monkeys trained to alternate between three tasks, the activity of many neurons in the prefrontal cortex was task dependent. This included changes in overall firing rate, in firing-rate profiles (shape of responses over time), and in stimulus and response selectivity. These findings support the hypothesis that a major prefrontal function is the acquisition and implementation of task context and the "rules" used to guide behavior.


Subject(s)
Conditioning, Psychological/physiology , Neurons/physiology , Prefrontal Cortex/physiology , Animals , Association Learning/physiology , Behavior, Animal/physiology , Macaca mulatta , Photic Stimulation , Prefrontal Cortex/cytology , Reaction Time/physiology , Saccades/physiology , Space Perception/physiology
3.
Proc Natl Acad Sci U S A ; 95(25): 15008-13, 1998 Dec 08.
Article in English | MEDLINE | ID: mdl-9844006

ABSTRACT

Many prefrontal (PF) neurons convey information about both an object's identity (what) and its location (where). To explore how they represent conjunctions of what and where, we explored the receptive fields of their mnemonic activity (i.e., their "memory fields") by requiring monkeys to remember both an object and its location at many positions throughout a wide portion of central vision. Many PF neurons conveyed object information and had highly localized memory fields that emphasized the contralateral, but not necessarily foveal, visual field. These results indicate that PF neurons can simultaneously convey precise location and object information and thus may play a role in constructing a unified representation of a visual scene.


Subject(s)
Frontal Lobe/physiology , Memory/physiology , Animals , Neurons/physiology , Primates
4.
Nature ; 393(6685): 577-9, 1998 Jun 11.
Article in English | MEDLINE | ID: mdl-9634233

ABSTRACT

The severe limitation of the capacity of working memory, the ability to store temporarily and manipulate information, necessitates mechanisms that restrict access to it. Here we report tests to discover whether the activity of neurons in the prefrontal (PF) cortex, the putative neural correlate of working memory, might reflect these mechanisms and preferentially represent behaviourally relevant information. Monkeys performed a 'delayed-matching-to-sample' task with an array of three objects. Only one of the objects in the array was relevant for task performance and the monkeys needed to find that object (the target) and remember its location. For many PF neurons, activity to physically identical arrays varied with the target location; the location of the non-target objects had little or no influence on activity. Information about the target location was present in activity as early as 140ms after array onset. Also, information about which object was the target was reflected in the sustained activity of many PF neurons. These results suggest that the prefrontal cortex is involved in selecting and maintaining behaviourally relevant information.


Subject(s)
Memory/physiology , Neurons/physiology , Prefrontal Cortex/physiology , Animals , Attention , Electrophysiology , Macaca mulatta , Prefrontal Cortex/cytology
5.
Neuron ; 21(6): 1399-407, 1998 Dec.
Article in English | MEDLINE | ID: mdl-9883732

ABSTRACT

The prefrontal (PF) cortex has been implicated in the remarkable ability of primates to form and rearrange arbitrary associations rapidly. This ability was studied in two monkeys, using a task that required them to learn to make specific saccades in response to particular cues and then repeatedly reverse these responses. We found that the activity of individual PF neurons represented both the cues and the associated responses, perhaps providing a neural substrate for their association. Furthermore, during learning, neural activity conveyed the direction of the animals' impending responses progressively earlier within each successive trial. The final level of activity just before the response, however, was unaffected by learning. These results suggest a role for the PF cortex in learning arbitrary cue-response associations, an ability critical for complex behavior.


Subject(s)
Association Learning/physiology , Brain Mapping , Macaca mulatta/physiology , Neurons/physiology , Prefrontal Cortex/physiology , Animals , Eye Movements , Functional Laterality , Reaction Time , Restraint, Physical , Saccades/physiology
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