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Displaying 1 - 8 of 8

Study of MTX110 in Combination with Gadolinium in Children & Young Adults with Newly Diagnosed Brain Cancer (Diffuse Midline Gliomas)

Condition: Cancer / Brain Cancer
Investigator: James Hinkley Garvin Jr, MD
Status: Closed
The purpose of this study is to find the best dose of a drug called MTX110 and a contrast agent called gadolinium that can be given safely in children with newly diagnosed diffuse midline gliomas, which is a kind of brain tumor. All patients enrolled in the study will receive infusion of MTX110 and Gadolinium delivered with a…
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Study of Focused Ultrasound (FUS) with DEFINITY Microbubbles in Children and Young Adults with Progressive Diffuse Midline Glioma (DMG)

Condition: Cancer / Brain Cancer
Investigator: Stergios Zacharoulis, MD
Status: Closed
Children and young adults with diffuse midline glioma will be treated with Focused Ultrasound (FUS) with DEFINITY microbubbles and neuro-navigator-controlled sonication. The overall goal of this study is to see if the study treatment plan will improve the outcome of participants with diffuse midline glioma, for which no known cure exists, and determine…
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Brain imaging in bipolar depression to be able to predict who will respond to antidepressant treatment

Condition: Psychiatric Disorders / Bipolar Disorder
Investigator: Martin Lan, MD, PhD
Status: Closed
We are trying to understand what causes bipolar disorder and how medications treat bipolar depression. If you participate, you will have two different brain scans (MRI and PET scan). You will also have antidepressant treatment for free. We will then be able to see whether information on the brain…
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Brain imaging in bipolar depression to understand the role of inflammation in its treatment.

Condition: Psychiatric Disorders / Bipolar Disorder
Investigator: Martin Lan, MD, PhD
Status: Closed
This is a research study to understand what causes bipolar disorder and how medications treat bipolar depression. Particularly, we are looking at the importance of inflammation in the process. If you participate, you will receive an experimental medication for your depression named ethyl eicosapentaenoic acid (ethyl EPA), an omega 3 fatty acid. You will…
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Brain imaging in bipolar depression to understand the antidepressant mechanism of lurasidone (Latuda).

Condition: Psychiatric Disorders / Bipolar Disorder
Investigator: Martin Lan, MD, PhD
Status: Closed
We are trying to understand what causes bipolar disorder and how medications treat bipolar depression. Particularly, we are looking at the importance of dopamine signaling in the process. If you participate, you will have two different brain scans (MRI and PET scan). You will also have treatment for your depression with an…
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Study of Lutathera in Patients with Glioblastoma (GB)

Condition: Cancer / Brain Cancer
Investigator: Mikhail Doubrovin, MD
Status: Closed
The purpose of the study is to evaluate the safety of Lutathera alone in patients with recurrent glioblastoma and the combination of Lutathera with radiotherapy with temozolomide (TMZ) in patients with newly diagnosed glioblastoma (GB) and to establish the appropriate dose of this combination. Lutathera is a radioligand therapy, which is a targeted…
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MRI Effects of D-cycloserine & Lurasidone in Bipolar Depression

Condition: Psychiatric Disorders / Bipolar Disorder
Investigator: Joshua Kantrowitz, Md
Status: Closed
We will evaluate the D-cycloserine (DCS) and lurasidone with MRI measurement of brain responses to DCS. DCS is a drug that works on the same brain receptor as ketamine. DCS is not approved by the FDA for bipolar depression. Study participants will receive a dose of lurasidone or placebo in one…
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Research Study offering Treatment for Self-Injury (Bipolar Disorder)

Condition: Psychiatric Disorders / Bipolar Disorder
Investigator: Jeffrey Miller, MD
Status: Closed
The goal of this study is to examine how effective and well-tolerated a possible new treatment for individuals who injure themselves frequently will be. All research procedures can be done from home no in-person visits are required. We are studying a minimal-risk form of electrical brain stimulation called transcranial direct…
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