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1.
J Addict Dis ; : 1-10, 2022 Nov 14.
Article in English | MEDLINE | ID: mdl-36374272

ABSTRACT

Background: Shared medical appointments (SMAs) for buprenorphine prescribing are clinical encounters in which multiple patients with opioid problems receive treatment from providers in a group setting. Telehealth, the provision of clinical services remotely using telecommunications technology, is an essential modality for improving access to healthcare when combined with SMAs, especially since the COVID pandemic. Objectives: The current study specifically examined psychological components of telehealth SMAs for buprenorphine prescribing to learn about the benefits and drawbacks of this treatment model. Methods: Data was collected through qualitative interviews with patients (N=10) in a psychiatry addiction medicine clinic. Narrative synthesis using grounded theory was conducted to identify salient themes from the interviews. Results: Findings highlighted the advantages and downsides of telehealth SMA to treat addictive disorders in a digital age: (1) Shared group identity; (2) Decreased stigma around buprenorphine; (3) Benefits of telehealth; (4) Discomfort with group SMA format; (5) Strategies for managing medication side effects; and (6) Enhanced empathy for providers. Several themes corresponded to therapeutic factors identified in group therapy (i.e., installation of hope, universality, imparting information, altruism) and mechanisms theorized in previous SMA research (e.g., combating isolation, disease self-management, feeling inspired by others). Conclusion: Telehealth SMAs for buprenorphine prescribing may be a unique opportunity for patients to receive both ongoing medication management and psychosocial benefits that promote recovery and reduce stigma. The SMA group had shortcomings for some patients, including privacy concerns, fear of judgment from other patients and limited time to discuss individual concerns with providers.

2.
Neuroimage Clin ; 28: 102404, 2020.
Article in English | MEDLINE | ID: mdl-32916468

ABSTRACT

Obsessive-Compulsive Disorder (OCD) is characterized by repetitive avoidance behavior which is distressing and associated with marked impairment of everyday life. Recently, paradigms have been designed to explore the hypothesis that avoidance behavior in OCD is consistent with a formal conception of habit. Such studies have involved a devaluation paradigm, in which the value of a previously rewarded cue is altered so that avoidance is no longer necessary. We employed a rule-based avoidance task which included a devaluation, examining behavioral performance on the task and their neural correlates using functional MRI in groups of participants with OCD (n = 44) and healthy control participants (n = 46). Neuroimaging data were analyzed using a general linear model (GLM), modelling valued, devalued and control cues, as well as feedback events. First, while no overall effect of OCD was seen on devaluation performance, patients with longer illness duration showed poorer devaluation performance (χ2 = 13.84, p < 0.001). Reduced devaluation was related to impaired learning on the overtraining phase of the task, and to enhanced feedback activation in the caudate and parietal lobe during within-scanner retraining (T = 5.52, p_FWE = 0.003), across all participants. Second, a significant interaction effect was observed in the premotor cortex (F = 29.03, p_FWE = 0.007) coupled to the devalued cue. Activations were divergent in participants with OCD (lower activation) and healthy controls (higher activation) who did not change responding to the devalued cue following devaluation, and intermediate in participants who did change responding (T = 5.39, p_FWE = 0.003). Finally, consistent with previous work, medial orbitofrontal cortex activation coupled to valued cues was reduced in OCD compared to controls (T = 3.49, p_FWE = 0.009). The findings are discussed in terms of a prediction error-based model of goal-directed and habitual control: specifically, how goal-directed control might be diminished in OCD in favor of habits. They suggest that illness duration might be significant determinant of variation in impaired goal-directed learning in OCD, and be a factor relevant for understanding discrepancies across studies. Overall, the study shows the potential of conceptual replication attempts to provide complementary insights into compulsive behavior and its associated neural circuitry in OCD.


Subject(s)
Obsessive-Compulsive Disorder , Cognition , Habits , Humans , Magnetic Resonance Imaging , Obsessive-Compulsive Disorder/diagnostic imaging , Reward
3.
PLoS One ; 10(7): e0133591, 2015.
Article in English | MEDLINE | ID: mdl-26208305

ABSTRACT

BACKGROUND: Deep brain stimulation (DBS) has been proposed as an alternative to ablative neurosurgery for severe treatment-resistant Obsessive-Compulsive Disorder (OCD), although with partially discrepant results probably related to differences in anatomical targetting and stimulation conditions. We sought to determine the efficacy and tolerability of DBS in OCD and the existence of clinical predictors of response using meta-analysis. METHODS: We searched the literature on DBS for OCD from 1999 through January 2014 using PubMed/MEDLINE and PsycINFO. We performed fixed and random-effect meta-analysis with score changes (pre-post DBS) on the Yale-Brown Obsessive Compulsive Scale (Y-BOCS) as the primary-outcome measure, and the number of responders to treatment, quality of life and acceptability as secondary measures. FINDINGS: Thirty-one studies involving 116 subjects were identified. Eighty-three subjects were implanted in striatal areas--anterior limb of the internal capsule, ventral capsule and ventral striatum, nucleus accumbens and ventral caudate--27 in the subthalamic nucleus and six in the inferior thalamic peduncle. Global percentage of Y-BOCS reduction was estimated at 45.1% and global percentage of responders at 60.0%. Better response was associated with older age at OCD onset and presence of sexual/religious obsessions and compulsions. No significant differences were detected in efficacy between targets. Five patients dropped out, but adverse effects were generally reported as mild, transient and reversible. CONCLUSIONS: Our analysis confirms that DBS constitutes a valid alternative to lesional surgery for severe, therapy-refractory OCD patients. Well-controlled, randomized studies with larger samples are needed to establish the optimal targeting and stimulation conditions and to extend the analysis of clinical predictors of outcome.


Subject(s)
Deep Brain Stimulation , Obsessive-Compulsive Disorder/therapy , Adult , Deep Brain Stimulation/adverse effects , Deep Brain Stimulation/methods , Female , Humans , Male , Middle Aged , Obsessive-Compulsive Disorder/diagnosis , Patient Acceptance of Health Care , Prognosis , Quality of Life , Risk Factors , Severity of Illness Index , Treatment Outcome
4.
Curr Biol ; 21(20): 1704-15, 2011 Oct 25.
Article in English | MEDLINE | ID: mdl-22000105

ABSTRACT

BACKGROUND: Neurons require highly specialized intracellular membrane trafficking, especially at synapses. Rab GTPases are considered master regulators of membrane trafficking in all cells, and only very few Rabs have known neuron-specific functions. Here, we present the first systematic characterization of neuronal expression, subcellular localization, and function of Rab GTPases in an organism with a brain. RESULTS: We report the surprising discovery that half of all Drosophila Rabs function specifically or predominantly in distinct subsets of neurons in the brain. Furthermore, functional profiling of the GTP/GDP-bound states reveals that these neuronal Rabs are almost exclusively active at synapses and the majority of these synaptic Rabs specifically mark synaptic recycling endosomal compartments. Our profiling strategy is based on Gal4 knockins in large genomic fragments that are additionally designed to generate mutants by ends-out homologous recombination. We generated 36 large genomic targeting vectors and transgenic rab-Gal4 fly strains for 25 rab genes. Proof-of-principle knockout of the synaptic rab27 reveals a sleep phenotype that matches its cell-specific expression. CONCLUSIONS: Our findings suggest that up to half of all Drosophila Rabs exert specialized synaptic functions. The tools presented here allow systematic functional studies of these Rabs and provide a method that is applicable to any large gene family in Drosophila.


Subject(s)
Drosophila Proteins/metabolism , Synapses/metabolism , rab GTP-Binding Proteins/genetics , rab GTP-Binding Proteins/metabolism , Animals , Animals, Genetically Modified , Brain/physiology , Chromosomes, Artificial, Bacterial , Drosophila/genetics , Drosophila/physiology , Drosophila Proteins/genetics , Gene Expression Regulation, Enzymologic , Gene Knockout Techniques , Homologous Recombination , Multigene Family , Mutation , Neurons/metabolism , Organ Specificity , Phenotype , rab27 GTP-Binding Proteins
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