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New Treatment Perspectives in Eating Disorders: the Efficacy of Non-invasive Brain-directed Treatment

New Treatment Perspectives in Eating Disorders: the Efficacy of Non-invasive Brain-directed Treatment

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02382497
Enrollment
160
Registered
2015-03-06
Start date
2014-07-31
Completion date
2023-07-31
Last updated
2021-11-19

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Anorexia Nervosa, Binge Eating Disorder, Eating Disorders

Brief summary

The present study grounds on the possible role of hemispheric lateralization in Eating disorders (ED): specifically, hyperactivity of the right frontal regions in Anorexia Nervosa (AN), and hypoactivity of the right frontal regions in Binge Eating Disorder (BED) and food craving behaviors. Therefore, the investigators hypothesized that active excitatory tDCS over left prefrontal cortex (PFC) (Anode left/cathode right) may aid in altering/resetting inter-hemispheric balance in AN patients, re-establish control over eating behaviors. On the contrary, active excitatory tDCS over right PFC (Anode right/cathode left) may aid in altering/resetting inter-hemispheric balance in BED patients and people with frequent food cravings, decreasing cravings/appetite binge eating behaviors.

Detailed description

The study design is randomized stratified, double blind, add-on, placebo-controlled. A group of children and adolescents with AN will be selected and randomly assigned to two different conditions: treatment as usual plus experimental treatment (active tDCS); treatment as usual plus placebo treatment (sham tDCS). Similarly, a group of children and adolescents with Over-weight/Obesity (OW/OB) and BED will be selected and assigned with randomized stratified sampling to the following conditions: treatment as usual plus experimental treatment (active tDCS); treatment as usual plus placebo treatment (sham tDCS). In this project, the investigators will work to understand whether a brain-based treatment, with the use of tDCS, can improve the outcome of patients with eating disorders. The investigators will test whether tDCS treatment produces improvements in under-eating and over-eating diseases, such us AN and OW/OB with BED and food craving. Our overarching goal is to provide a scientific foundation for devising new rehabilitation strategies in ED.

Interventions

The tDCS active stimulations will be directed to PFC regions for six weeks delivered for three times a week. tDCS will be delivered by a battery driven, constant current stimulator through a pair of saline-soaked sponge electrodes kept firm by elastic bands. The anode will be placed on the left PFC, F3 position according to the 10-20 international EEG system for electrode placement, while the cathode will be placed on the right PFC, F4 position according to the 10-20 international EEG system for electrode placement. Stimulation intensity will be set at 1 milliampere (mA), the duration of stimulation will be 20 min.

The same electrode placement will be used as in the stimulation conditions (left anodal/right cathodal), but the current will be applied for 30 s and will be ramped down without the participants awareness, and will be held three times a week for six weeks.

DEVICEBED Active tDCS

The tDCS active stimulations will be directed to PFC regions for six weeks delivered for three times a week. tDCS will be delivered by a battery driven, constant current stimulator through a pair of saline-soaked sponge electrodes kept firm by elastic bands. For the OW/OB with diagnosis of BE, or food craving, the anode will be placed on the right PFC, F4 position according to the 10-20 international EEG system for electrode placement, while the cathode will be placed on the left PFC, F3 position according to the 10-20 international EEG system for electrode placement. Stimulation intensity will be set at 1 milliampere (mA), the duration of stimulation will be 20 min.

DEVICEBED Sham tDCS

The same electrode placement will be used as in the stimulation conditions (right anodal/left cathodal), but the current will be applied for 30 s and will be ramped down without the participants awareness, and will be held three times a week for six weeks.

Sponsors

Mariella Enoc
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
10 Years to 18 Years
Healthy volunteers
No

Inclusion criteria

* Under-weight (BMI less than 5th percentile)1 with Clinical diagnosis of AN as described in the 5th edition of the Diagnostic and Statistical Manual of Mental Disorders (DSM-5) * Over-weight/Obesity (OW/OB) (BMI above the 85th percentile)1 with diagnosis of BED, or with food craving behaviors * Ability to give informed consent under parents' surveillance and guidance

Exclusion criteria

* Having a comorbidity with an important medical condition; * Having neurological diseases * Having Epilepsy o family history of epilepsy * Pregnant or planning to become pregnant; * Suicide risk; * Receiving counseling or psychological therapies during the study; * Receiving a treatment for an eating disorder in the previous three months before the baseline screening visit.

Design outcomes

Primary

MeasureTime frameDescription
The primary end-point of the study is the mean change in the Overcontrol composite score of Eating Disorder Inventory - Three (EDI-3) questionnaire, using an approach based on the magnitudes of change.6 weeksthe mean change in the Overcontrol composite score of the EDI-3 questionnaire gives a measure of the basic characteristics of the eating disorders and is a prognostic measure of outcome of eating disorders. Indeed, patterns of treatment response revealed significantly changes in terms of reduced eating disorder symptoms and fewer psychological problems.

Secondary

MeasureTime frame
The proportion of patients in the two arms with improvement in the total scores of other psychopathological measures as the BINGE EATING SCALE (BES) questionnaire6 weeks
The proportion of patients in the two arms with improvement in the neuropsychological measure of executive control and reward sensitivity by the 'Bechara Iowa Gambling' Task6 weeks
The proportion of patients in the two arms with improvement in the neuropsychological measure of the ability to stop by THE STOP-SIGNAL REACTION-TIME (SSRT) task.6 weeks
The proportion of patients in the two arms with improvement in the neuropsychological measure of visual attention and task switching by the TRAIL MAKING TEST6 weeks
The proportion of patients in the two arms with normalization of different physiological measures specifically the BMI index12 months follow up
The proportion of patients in the two arms with normalization of different physiological measures specifically the values of bloody pressure12 months follow up
The proportion of patients in the two arms with normalization of different physiological measures specifically the values of cardiac frequency12 months follow up
The proportion of patients in the two arms with improvement in the total scores of other psychopathological measures as the Yale-Brown-Cornell Eating Disorder Scale (YBC-EDS) questionnaire6 weeks
In the AN group, significant changes in intra-cortical inhibitory/excitatory motor circuits using paired pulse TMS, measured as SICI/ICF: the ratio between MEPs amplitude (mV) conditioning stimulus and MEPs amplitude test stimulus alone for each ISI.6 weeks
In the AN group, significant changes in sensory-motor integration using paired pulse TMS, measured as SICI/ICF: the ratio between MEPs amplitude (mV) conditioning stimulus (electrical stimulation) and MEP amplitude test stimulus alone for each ISI.6 weeks
In the AN group, significant changes in cortical oscillatory patterns (synchronization and desynchronization) in theta, alpha and beta frequencies (Hz) over motor and premotor cortex, using TMS-EEG co-registration.6 weeks
In the AN group, normalization of endogenous stress response, measured with CAR.6 months follow up
In the AN group, significant changes in cortical connectivity, through the analysis of the waveform, latency and cortical distribution of TMS-evoked potentials (TEPs) in micronV, using TMS-EEG co-registration.6 weeks
In the AN group, significant changes in cortical reactivity in terms of TMS-evoked potentials (TEPs) amplitude for time domain (micronV) and frequency bands for spatial domain (Hz), using TMS-EEG co-registration.6 weeks
In the AN group, significant changes in Cortical Plasticity evoked by repetitive TMS in terms of different MEP amplitude (mV) recorded at different time-points after repetitive TMS perturbations.6 weeks
The proportion of patients in the two arms with normalization of different physiological measures specifically the values of body composition12 months follow up

Countries

Italy

Contacts

Primary ContactFloriana Costanzo
floriana.costanzo@opbg.net0668597091
Backup ContactValeria Zanna
valeira.zanna@opbg.net

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026