View clinical trials related to Brain Metastases.
Filter by:As treatments improve and patients live longer with cancer, even after it has spread to the brain, efforts to improve quality of life are growing. Neurocognitive function (thinking ability and memory) is an area of particular concern for patients with brain metastases (cancer that can spread to the brain). Although there are established tests to measure neurocognitive function, these require a face-to-face assessment and can take a long time to complete. As a result, efforts to use these tests to measure changes in neurocognitive function in patients following treatment for brain metastases have resulted in a large proportion of patients who do not return for follow-up. This has limited the ability to evaluate the impact of current treatments on neurocognitive function. This study aims to evaluate a shorter, telephone-based neurocognitive assessment tool, which would make it easier for patients to complete these tests in follow-up. If this new tool is found to reliably measure neurocognitive function, it could be used for future studies evaluating new interventions that prevent or treat neurocognitive deterioration following treatment of brain metastases. This is the first prospective study to evaluate the feasibility and reliability of a novel telephone-based brief neurocognitive assessment battery (Toronto BNB) compared with the same battery delivered face-to-face in this population. The investigators hypothesize that telephone administration of this brief neurocognitive battery will reliably evaluate neurocognitive function and improve patient ability to complete follow-up assessments.
Brain metastases occur in 20-40% of patients with metastatic cancer. The standard treatment is based on whole brain radiation therapy and local treatment of metastases as neurosurgery or radiosurgery. However, many cases can not receive a standard local treatment, and local relapse occurs in almost 50% of cases treated with only whole brain irradiation. There are retrospective studies of increased radiation dose at the site of metastasis with hypofractionated stereotactic radiotherapy (HSRT) with favorable results, but there are no controlled studies regarding the safety of radiation dose in these situations. This study is a phase I study to evaluate the maximum tolerance dose (MTD) with HSRT as a way to increase the dose of radiation after the WBRT for patients with 1-3 brain metastases not eligible for surgery or RS.
1.1. Primary Objectives 1. To determine if nab-paclitaxel and temozolomide can be combined with full dose of bevacizumab for the therapy of patients with newly diagnosed brain metastases of metastatic malignant melanoma. - To define the MTD of the combination (Phase I component). - To determine progression free survival (Phase II component). 1.2. Secondary Objectives 1. To separately evaluate the response rate and duration of both the brain and extra-cranial systemic metastases. 2. To define the toxicity of the regimen. 3. To tabulate the toxicity of the radiotherapy to the brain and compare with known toxicities of radiotherapy to the brain in melanoma and brain metastases. 4. To use the data generated to plan definitive controlled clinical trials of the combination. 5. To determine the overall response rate (Phase II component).
The purpose of this study is to collect and bank samples of blood and tissues (such as brain tissue or lymph nodes), as well as cerebrospinal fluid (CSF), which is the fluid that bathes and cushions the spinal cord. The investigator will analyze DNA biomarkers in the samples. The investigator hopes that by studying the biomarkers, he can develop tests in the future that can detect central nervous system (CNS) metastasis in blood samples before they show up on x-ray and develop medicines that can specifically target CNS metastasis.
This is a Phase 2 study to see if an investigational drug, ANG1005, can shrink tumor cells in breast cancer patients with recurrent brain metastases.
The main purpose of this study is to determine the distribution of 18F Fluorocholine (18F-FCH) in the brain which can help distinguishing radiation-induced scarring from tumor regrowth. In addition, the study will measure levels of 18F-FCH in the blood and (if applicable) in the brain lesion tissue that is removed as part of the planned brain surgery.
This study aims to assess changes in vascular permeability in the brain tumor, and in the surrounding brain, due to radiation therapy, using Magnetic Resonance Imaging (MRI).
This is a randomized, double blind placebo controlled study to evaluate safety and efficacy of lucanthone administered as an adjunct to patients receiving whole brain radiation therapy (WBRT) as primary treatment for brain metastases secondary to non-small cell lung cancer.
The purpose of this study is to collect prospective data for use as a comparator for future subsequent studies attempting to increase the efficacy or reduce the toxicity of gamma knife radiosurgery.
This is a study to determine the safety and effectiveness of BKM120 plus capecitabine in breast cancer patients with brain metastases. Both capecitabine and BMK120 have previously shown activity in patients with breast cancer. Like capecitabine, BMK120 is also effective in crossing the blood brain barrier making it a preferred candidate for its evaluation in patients with metastatic breast cancer (MBC).