View clinical trials related to Major Depressive Disorder.
Filter by:All subjects completing the randomized treatment period in Protocol NS2014-1 will discontinue study drug and be asked to provide consent to be followed in this 6-month study, at their final safety visit. The study will consist of an enrollment visit, followed by bi-monthly in-clinic visits with monthly telephone visits between in-clinic visits.
This study will assess the helpfulness of the integrated call center in optimizing use of the Digital Medicine System in adult subjects with Schizophrenia, Major Depressive Disorder, or Bipolar Disorder taking oral aripiprazole.
This study's primary objective is to compare the efficacy and tolerability of switching patients with inadequate relief on generic SSRIs to levomilnacipran versus adding a new treatment (quetiapine) to the participants' existing treatment with people diagnosed with depression (major depression disorder). The secondary objective is to examine the response and remission rates following the switch from a generic SSRI to levomilnacipran ER and augmentation with quetiapine along with examining changes in neurocognitive and apathy measures after the switch.
Although the last decade has brought major advances with respect to our knowledge of certain risks associated with fetal exposure to psychiatric medications, critical information regarding the long-term neurobehavioral impact of fetal exposure is lacking. With a prevalence rate of selective serotonin reuptake inhibitor (SSRI) use across pregnancy in Western countries noted to be as high as 5-8%, this study aims to close the gap in knowledge regarding long-term neurobehavioral sequelae of in utero exposure to this class of antidepressants. Importantly, the assessment of the impact of antenatal psychotropic medication use must be conducted with an appreciation of the potential direct and indirect effects of maternal psychiatric illness during pregnancy and throughout childhood. The outcomes of this study will help to inform the care of reproductive age women treated with psychiatric medications as they, along with the clinicians prescribing for them, weigh the relative risks of using these agents during pregnancy.
Major depressive disorder (MDD) is a common, recurrent, and frequent chronic disorder. Among others, deficient cognitive control over emotional distraction is a central characteristic of MDD (Ochsner & Gross 2005; Disner et al. 2011; Beck 2008). Hypoactivation of the dorsolateral prefrontal cortex (DLPFC) has been linked with this deficit (Dolcos & McCarthy 2006). Moreover, aberrant functional connectivity patterns have been found in MDD patients (Kaiser et al. 2015). Transcranial direct current stimulation (tDCS) is a non-invasive brain stimulation method that has been largely investigated in experimental neurosciences and tDCS of the prefrontal cortex (PFC) has been proposed as novel treatment in MDD. In addition, it is increasingly investigated as treatment for negative symptoms in schizophrenia (SCZ) (Brunelin et al. 2012). So far, prefrontal tDCS has been shown to enhance cognitive control over emotional distraction in MDD patients (Wokenstein & Plewnia 2013). Also, tDCS-induced connectivity changes found in fMRI studies comparing resting-state networks configurations before and after prefrontal tDCS may reflect a state of enhanced alertness (Keeser, Meindl, et al., 2011; Park et al., 2013). The aim of this study is to investigate the neurophysiological correlates of tDCS effects in patients with different psychiatric disorders for which tDCS is a possible intervention, in particular MDD and SCZ, as compared to healthy individuals. For this purpose, we determine the most promising protocol in from investigations in healthy volunteers and apply this protocol in the patient sample including age- and gender-matched controls. First, functional magnetic resonance imaging (fMRI) data is collected during the execution of a cognitive control task as well as during a resting-state condition together with application of real or sham tDCS inside the scanner. It is hypothesized that prefrontal tDCS as compared to sham a) reduces distractibility by compensating for deficient DLPFC activity and b) enhances functional connectivity in networks associated with externally directed attention or cognitive engagement. Second, magnetic resonance spectroscopy (MRS) is performed to measure concentrations of GABA and glutamate in target regions of tDCS. It is hypothesized that tDCS effects are mediated via modulation of the inhibitory/excitatory systems and GABA and glutamate are used as markers of these systems. In this placebo-controlled study healthy volunteers and patients with a diagnosis of MDD or SCZ receive a single treatment with prefrontal tDCS (anode over electrode position F3, cathode over F4, 20 min, 2mA intensity) or sham tDCS (frequency and duration correspondent active tDCS, ramp in and ramp out periods only without intermittent stimulation). We conduct resting-state and MRS measurements combined with application of tDCS in the fMRI scanner. Subsequently, participants perform the cognitive control task (in dependence of Plewnia, C., Schroeder, P. A., & Wolkenstein, L. (2015)) in the scanner. The participants are assigned to either the real or sham tDCS condition according to a randomised, double-blind parallel design.
Selective serotonin reuptake inhibitors (SSRIs) raise serotonin (5-HT) in the synaptic cleft and are the current first line of pharmacological antidepressive treatment. Yet, there is a missing link between this first molecular step in their mechanism of action and observed clinical improvement. We have determined to establish a framework combining genuine molecular and functional imaging, i.e. hybrid pharmaco-PET/MR imaging, of the human serotonergic system in order to predict antidepressant treatment response. Objectives: 1. To predict antidepressant treatment response from data obtained using hybrid PET/MR with acute pharmacological challenge. 2. To discriminate healthy from depressed subjects using this paradigm. 3. To establish models connecting regional changes in occupancy of serotonin transporters (5-HTT) following citalopram infusion, with changes in brain activation and connectivity of major resting-state hub networks. Design: Randomized, double-blind, placebo-controlled, cross-over mono-center study. Materials and methods: 40 major depressed (MDD) and 40 healthy subjects will undergo 2 PET/MR scans on a 3T SIEMENS mMR Biograph scanner: 1. challenge with citalopram 8mg 2. placebo (saline). After structural imaging, functional MRI will be continuously acquired. [11C]DASB will be applied using a bolus + constant infusion paradigm to probe 5-HTT binding potentials and monitor 5-HTT occupancy with drug challenge, applied after 70min, in a single session. Scanning will be terminated 80min after challenge. MDD patients will receive subsequent escitalopram treatment with repeated evaluation of response for 3 months.
The purpose of this study is to determine the clinical efficacy of augmenting cognitive-behavioral therapy with real-time functional magnetic resonance imaging neurofeedback (rtfMRI-nf) training to increase the amygdala's response to positive autobiographical memories.
The study will consist of a screening period and a randomized treatment. Approximately 220 subjects who meet eligibility during the screening period will be randomized to initiate a 12-week, double-blind treatment with NSI-189 80 milligrams/day (provided as 40 milligrams twice per day), NSI-189 40 milligrams once a day, or placebo.
Major depressive disorder (MDD) is a highly prevalent and disabling disorder associated with persistent low mood, loss of the capacity to experience pleasure (i.e. anhedonia), reduced social functioning, and impaired quality of life. MDD is estimated to affect approximately 2% of Canadian women and 1% of Canadian men at any point in time. The World Health Organization affirms that depression is the leading cause of disability worldwide, with increasing global economic impact. Standard treatments for depression include basic psychosocial support combined with antidepressant medication or psychotherapy. It has been observed, however, that only 50% of individuals respond to psychological treatment, and only 30-40% of patients achieve full remission after initial treatment with antidepressants. Music- and sound-related therapies have the potential to serve as adjuncts to, or facilitators of, medication. In this study we will examine the effectiveness of a new therapeutic tool, known as Rhythmic Sensory Stimulation, as an adjunctive treatment for Major Depressive Disorder. Rhythmic Sensory Stimulation is a non-invasive brain stimulation technique that uses periodic pulses of light, sound, or tactile stimulus, to induce changes in the patterns of brain activity. Participants in this study will undertake 30 minutes of daily music intervention self-administered at home, for 5 days per week, for a total of 5 weeks. We will assess depression symptoms, sleep quality, quality of life, and brain activity pre- and post-treatment. The results of the present study will help to better understand the effectiveness of Rhythmic Sensory Stimulation to the treatment of mood disorders, and contribute to the development of future studies to investigate the neural driving effects of therapies based on Rhythmic Sensory Stimulation.
The proposed work aims to examine the neural changes associated with fast-acting antidepressant treatments in order to develop imaging-based biomarkers of treatment response for depression.