View clinical trials related to Depressive Disorder, Major.
Filter by:The purpose of this research study is to use a specific type of non-invasive brain stimulation known as transcranial alternating current stimulation (tACS) to determine its effects on brain activity (measured with EEG) and mood in patients with Major Depressive Disorder (MDD).
Cognitive behavioral therapy (CBT) is a brief, efficient, and effective psychotherapy for individuals with depressive and PTSD. However, CBT is largely underutilized within Veteran Affairs Medical Centers (VAMCs) due to the cost and burden of trainings necessary to deliver the large number of CBT protocols. Transdiagnostic Behavior Therapy (TBT), in contrast, is specifically designed to address numerous distinct disorders within a single protocol. The transdiagnostic approach of TBT has the potential to dramatically improve the accessibility of CBT within VAMCs and therefore improve clinical outcomes of Veterans. The proposed research seeks to evaluate the efficacy of a group version of TBT (G-TBT) by assessing clinical outcomes and quality of life in VAMC patients with major depressive disorder and PTSD throughout the course of treatment and in comparison to two existing group disorder-specific therapies (G-DST), CBT for Depression and Cognitive Processing Therapy for PTSD.
The objective of the proposed study is to examine the relationship between serum concentrations of HNK and changes in the Hamilton Depression Rating Scale (HDRS), Beck Depression Inventory (BDI), and the Profile of Mood States (POMS), as well as glutamatergic/GABAergic response. To achieve these aims the investigators propose a double-blind, uncontrolled (no placebo, no healthy control subjects) study with several different doses of ketamine. The investigators will conduct MRI scans to measure Glu and GABA before and during the ketamine treatment.
According to the World Health Organization, MDD is attributed as the leading cause of disability worldwide, leaving 300 million individuals affected. Despite the efficacy of pharmacotherapy, a subset of MDD patients, classified as TRD, exhibit suboptimal response and thus require alternative treatment options such as rTMS. Emotional-laden "hot"and Neutral "cold" cognitions are shown to be dysfunctional in depression. Potential pro-cognitive effects remain inconclusive. In this study the investigators seek to investigate whether visual scanning patterns of emotionally laden images may be a biological marker and predictor of rTMS antidepressant efficacy. If so, then changes in visual scanning patterns are expected to precede clinical symptom improvement. Furthermore, changes in visual scanning patterns (which characterizes the state of hot cognition) are compared simultaneously to changes in cold cognition in order to elucidate the neural mechanisms underlying rTMS-induced changes in cognition. It is hypothesized that participants who are responders to rTMS will exhibit a decrease in the amount of time spent looking at dysphoric images will precede clinically detectable changes in mood as measured by a reduction in the scores on the 17-item Hamilton Depression Rating Scale (HDRS-17). The hypothesis for this study corresponds to the alleviation of the dysfunction within the hot cognitive system as a result of rTMS and a potential compensatory effect of cold cognition as a natural reaction of resetting the allocation of cognitive resources.
Background: Most drugs that treat mood disorders take a long time to work. Ketamine works within hours. A dose can last for a week or more. Certain receptors in the brain might help ketamine work. A drug that blocks these receptors might affect how it works. Objective: To see if the antidepressant response of ketamine is linked to AMPA receptors. Eligibility: Adults ages 18-70 with major depression disorder without psychotic features Design: Participants will be screened under protocol 01-M-0254. They will have blood tests and a physical exam. Participants will stay at the NIH Clinical Center for 5 weeks. Phase 1 lasts 4 weeks. For 2 weeks, participants will taper off their psychiatric medicine. Then they will have the following tests: - Blood draws - Psychological tests - MRI: Participants will lie in a machine that takes pictures of their brain. - MEG: Participants will lie down and do tasks. A cone lowered on their head will record brain activity. - Optional sleep tests: Electrodes on the scalp and body and belts around the body will monitor participants while they sleep. - Optional TMS: Participants will do tasks while a wire coil is held on their scalp. An electrical current will pass through the coil that affects brain activity. For phase 2, on day 0 participants will take the study drug or a placebo orally. While having a MEG, they will get ketamine infused into a vein in one arm while blood is drawn from a vein in the other arm. On day 1, participants will again take the study drug or a placebo orally. On days 3-7, they will repeat many of the phase 1 tests. Days 8 and 9 are optional and include an open label ketamine treatment and many of the phase 1 tests.
In this study, the investigators test whether a 4-week 12-session attention bias modification treatment (ABMT) could reduce depressive symptoms relative to placebo controls in young adults with major depressive disorder at post-training and 3-month follow-ups. Meanwhile, the investigators also test whether a 2-week 4-session ABMT booster training for every three months could reduce residual depressive symptoms and recurrences relative to placebo controls for 1-year follow-up
To evaluate the efficacy and safety of adjunctive pimavanserin compared to placebo in subjects with major depressive disorder who have an inadequate response to antidepressant therapy
The purpose of the study is to determine the efficacy, safety and pharmacokinetics of inhaled Esketamine in participants with treatment-resistant depression (TRD) in the course of Major Depressive Disorder (MDD). The study is to determine the efficacy and dose response of three Esketamine doses, compared with placebo.
The goal of the study is to address the unmet need of TRD patients by identifying brain networks critical for treating depression and to use next generation precision DBS with steering capability to engage these targeted networks. The study's goal will be achieved through 3 specific aims: Demonstrate device capability to selectively and predictably engage distinct brain networks Delineate depression-relevant networks and demonstrate behavioral changes with network-targeted stimulation Demonstrate that chronic DBS using steered, individualized targeting is feasible and safe for reducing depressive symptoms
People experiencing severe mental illnesses (SMI), including schizophrenia, psychosis, bipolar disorder and major depressive disorder, are prone to poorer physical health and increased incidences of premature mortality when compared to the general population (De Hert et al., 2009; Hert et al., 2011; Hennekens et al., 2005; Tiihonen et al., 2009 . High-intensity-interval-training (HIIT) is a type of exercise involving alternating short bursts of high intensity exercise with recovery periods of rest/ light exercise (Weston, Wisløff & Coombes, 2014). HIIT improves physical health, quality of life and cognition in the general population and in those with physical health disorders (Gomes-Neto et al., 2017; Hwang, Wu & Chou, 2011; Wen et al., 2019). It has been proposed that HIIT may improve symptoms, physical health and time to discharge among inpatients with SMI. The research will involve three stages: 1) Focus groups, 2) A pilot study, 3) Follow-up qualitative interviews and focus groups. Firstly, a series of focus groups with inpatients with SMI, carers of individuals with SMI and clinical staff will be conducted. The focus groups will scope perceptions of attitudes, and practicalities of a pilot RCT. The information gained will be used to inform a pilot HIIT trial which will evaluate whether HIIT is acceptable and feasible amongst this population group. Each focus group will run for ≈2 hours and will involve an open discussion about the benefits and barriers of conducting HIIT exercise sessions in a population with SMI. Secondly, the HIIT pilot study will be trialed. The final protocol will be developed with feedback from the focus group but will involve an RCT where 12 weeks of HIIT will be compared to 12 weeks of treatment-as-usual (TAU). HIIT will be conducted, twice a week, in a supervised environment using a stationary bike. Inpatients with a diagnosis of SMI will be eligible to participate. Thirdly, follow-up qualitative interviews, with pilot study participants, those that withdrew and those that did not want to take part, and focus groups with clinical staff will address the acceptability and feasibility of HIIT.