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Brain Metastases clinical trials

View clinical trials related to Brain Metastases.

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NCT ID: NCT02504788 Recruiting - Brain Metastases Clinical Trials

A Prospective Study of the Impact of Hippocampal Avoidance During Whole Brain Radiotherapy on Neurocognitive Function Decline

Start date: January 18, 2013
Phase: N/A
Study type: Interventional

Whole brain radiotherapy (WBRT) has long been a practical and effective therapeutic modality for various settings of management in radiation oncology. For example, the indications for WBRT should include brain metastasis or metastases, the setting of prophylactic cranial irradiation (PCI) used mainly for patients with limited-stage small cell lung cancer, and even some patients with extensive-stage small cell lung cancer. The rationales for WBRT are essentially based on that it can target both microscopic and gross intracranial disease. In addition to providing rapid alleviation of neurologic symptoms and enhanced intracranial disease control, WBRT might also prolong the time to develop neurocognitive function (NCF) decline. However, paradoxically NCF decline can also occur due to a sequel of WBRT. In terms of the time course of WBRT-induced NCF decline, it might vary considerably according to the specific domains which are selected to be measured. Early neurocognitive decline occurs within the first 1 - 4 months after WBRT for brain metastases. The domains of early neurocognitive decline principally involve verbal and short-term memory recall. Since several decades ago, it has been understood that hippocampus plays an essential role in memory function. Not little evidence supports that radiation-induced damage to hippocampus should be strongly associated with NCF impairment. Furthermore, several studies have shown that isodose distribution in hippocampus is closely related to neurocognitive function in patients with benign or low-grade brain tumors. As a consequence, it is hypothesized that conformal hippocampal sparing during the course of WBRT (HS-WBRT) might provide significant preservation in terms of cognitive function. This prospective cohort study aims to explore and evaluate the impact of the delivery of HS-WBRT on the pattern of NCF change and the extent of NCF decline in patients receiving prophylactic or therapeutic WBRT. As compared with previous related and relevant studies, it will also be investigated whether neurocognitive functional preservation can be achieved via the integration of hippocampal sparing with the course of WBRT.

NCT ID: NCT02490878 Terminated - Brain Metastases Clinical Trials

Corticosteroids + Bevacizumab vs. Corticosteroids + Placebo (BEST) for Radionecrosis After Radiosurgery for Brain Metastases

Start date: April 2016
Phase: Phase 2
Study type: Interventional

This randomized phase II study aims to investigate whether the addition of bevacizumab to standard corticosteroid therapy results in greater improvement in symptoms and less treatment-induced symptoms compared with standard corticosteroid therapy for patients with symptomatic brain radionecrosis following radiosurgery. It is hypothesized that the addition of bevacizumab to standard care corticosteroids will reduce treatment-induced toxicities and improve neurologic impairments in patients with brain radionecrosis following radiosurgery for brain metastases.

NCT ID: NCT02460874 Terminated - Brain Metastases Clinical Trials

Glyburide vs Placebo as Prophylaxis Against Cerebral Edema in Patients Receiving Radiosurgery for Brain Metastases (RAD 1502/UAB 1593)

Start date: August 16, 2017
Phase: Phase 1/Phase 2
Study type: Interventional

Primary Objectives: Pilot Portion: To determine the feasibility and safety of administering oral glyburide to non-diabetic patients receiving stereotactic radiosurgery (SRS) for newly diagnosed brain metastases. Randomized Portion: To determine the number of patients with newly diagnosed brain metastases who have an increase in edema as measured on volumetric FLAIR imaging and the number of patients that require dexamethasone administration (or any corticosteroid administration with the purpose of treating cerebral edema) from the day of SRS to one month follow-up MRI in the group receiving glyburide versus placebo.

NCT ID: NCT02460068 Recruiting - Brain Metastases Clinical Trials

A Study of Fotemustine(FTM) Vs FTM and Ipilimumab (IPI) or IPI and Nivolumab in Melanoma Brain Metastasis

NIBIT-M2
Start date: December 2012
Phase: Phase 3
Study type: Interventional

This Phase 3, open-label, triple arm study aims to evaluate the overall survival (OS) of fotemustine versus the combination of ipilimumab and fotemustine or the combination of Ipilimumab and nivolumab in patients with metastatic melanoma with brain metastasis.

NCT ID: NCT02390518 Recruiting - Brain Metastases Clinical Trials

Stereotactic Radiosurgery Dose Escalation for Brain Metastases

Start date: May 7, 2015
Phase: Phase 1
Study type: Interventional

This is a Phase I dose escalation and expansion trial. The purpose of this study is to determine the maximum tolerated dose of radiation received during stereotactic radiosurgery in patients with brain metastases who have never received radiation to the brain before.

NCT ID: NCT02374242 Active, not recruiting - Melanoma Clinical Trials

Anti-PD 1 Brain Collaboration for Patients With Melanoma Brain Metastases

ABC
Start date: November 4, 2014
Phase: Phase 2
Study type: Interventional

The purpose of this research project is to test the effectiveness of nivolumab versus nivolumab together with ipilimumab for the treatment of melanoma brain metastases. Patients are eligible to join this study if they are aged 18 years or above and have been diagnosed with melanoma with brain metastases.

NCT ID: NCT02338011 Recruiting - Clinical trials for Non-Small Cell Lung Cancer

Comparator-Controlled Study for EGFR(+) Patients With Multiple BMs From NSCLC (BROKE) (EGFR-epidermal Growth Factor Receptor;BM-brain Metastases)

EGFR
Start date: November 2014
Phase: Phase 2/Phase 3
Study type: Interventional

1. Compare the effect and safety of gefitinib alone with gefitinib plus concomitant WBRT(whole-brain radiotherapy ) in treatment of NSCLC patients harboring an EGFR mutation with multiple BM. 2. Verify the failure pattern of NSCLC patients harboring an EGFR mutation with multiple BM. 3. Explore the rescuable therapy after progression of disease.

NCT ID: NCT02328300 Withdrawn - Brain Metastases Clinical Trials

FLT PET/MR for Evaluation of Pseudoprogression in Patients With Brain Lesions

Start date: May 7, 2014
Phase:
Study type: Observational

This is a single arm, single center study of 15 patients with brain lesions being treated at UNC Hospitals. Subjects will undergo one (1) FLT-PET-MRI scan before their scheduled surgical biopsy of their brain lesion(s).

NCT ID: NCT02311556 Completed - Brain Metastases Clinical Trials

Response of Brain Metastases After Gamma-Knife Radiosurgery Using Dynamic Susceptibility-weighted Contrast-enhanced Perfusion Magnetic Resonance Imaging

Start date: May 7, 2013
Phase: Phase 1
Study type: Interventional

This study is designed to evaluate whether advanced magnetic resonance imaging (MRI) techniques such as dynamic susceptibility-weighted contrast-enhanced perfusion MRI may be used to predict treatment response of brain metastasis after radiosurgery.

NCT ID: NCT02308020 Completed - Breast Cancer Clinical Trials

A Study of Abemaciclib (LY2835219) in Participants With Breast Cancer, Non-small Cell Lung Cancer, or Melanoma That Has Spread to the Brain

Start date: April 20, 2015
Phase: Phase 2
Study type: Interventional

The main purpose of this study is to evaluate the safety and effectiveness of the study drug known as abemaciclib in participants with hormone receptor positive breast cancer, non-small cell lung cancer (NSCLC), or melanoma that has spread to the brain.