View clinical trials related to Brain Metastases.
Filter by:This clinical trial was designed to investigate the efficiency and toxicity of tomotherapy for refractory brain metastases.
Based on evidence that radiation-induced damage to the hippocampus plays a considerable role in neurocognitive decline after cranial irradiation, hippocampal-sparing whole brain radiation therapy (HS-WBRT) has been proposed. This study will investigate the neurocognitive function and prognosis between HS-WBRT and conventional WBRT for the treatment of brain metastases from breast cancer.
Dabrafenib and trametinib are drugs that are usually given for the treatment of melanoma. Combinations of dabrafenib and trametinib have also been studied and when used together have shown to increase tumour shrinkage in animals compared to either drug alone. Dabrafenib and trametinib have also shown potential to penetrate the blood-brain-barrier when given together and have an effect on brain metastases. Giving these drugs at the same time and then giving brain stereotactic radiosurgery (SRS) may also be preferred in patients with brain metastases
The study aims to investigate the efficacy and safety of AZD9291 in brain metastases from patients with EGFR T790M positive NSCLC who have received prior therapy with an EGFR-TKI.
This research study is studying Pembrolizumab as a possible treatment for this diagnosis for metastases in the central nervous system (brain and spinal cord).
To compare presurgical motor mapping by navigated transcranial magnetic stimulation for surgery (nTMS) of rolandic lesions to surgery with mapping without implementing these data into neuronavigation as control. Primary objective: Permanently new postoperative deficit is lower when the preoperative motor mapping is available to the surgeon
The study is a prospective, randomized controlled phase III trial, to test the efficacy, safety and neurocognitive outcomes of advanced NSCLC patients, following stereotactic radiosurgery (SRS) for 1 inoperable brain metastasis or 2-10 brain metastases, treated with NovoTTF-200M and supportive treatment compared to supportive treatment alone. The device is an experimental, portable, battery operated device for chronic administration of alternating electric fields (termed TTFields or TTF) to the region of the malignant tumor, by means of surface, insulated electrode arrays.
RATIONALE: Radiation therapy uses high-energy x-rays to damage tumor cells. AGuIX particles may increase the effectiveness of radiation therapy by making tumor cells more sensitive to radiation. PURPOSE: This first-in-man Phase I trial will study the side effects and best dose of AGuIX when injected together with whole brain radiation therapy in treating patients with multiple brain metastases. The effectiveness of the combination of AGuIX and radiation therapy will be also assessed.
This is a randomized study to determine if not treating planning target volume (PTV) margins during radiation therapy worsens progression free survival rates in patients with brain metastases.
This is a single arm pilot study of 64Cu-MM-302 and unlabeled MM-302 in combination with trastuzumab in 10 patients with advanced HER2+ cancer with new or progressive brain metastases. Patients will receive standard imaging at baseline, including FDG-PET/CT plus MR brain imaging. Patients will subsequently start protocol therapy with MM-302 and trastuzumab given on day 1 of an every 21-day dosing cycle, at the recommended phase 2 dose of 30 mg/m2. Patients will receive 64Cu-labeled MM-302 (3-5 mg/m2 doxorubicin) three hours after unlabeled dose of MM-302. Integrated MR/PET imaging of the brain and whole body will be performed at two time points following 64Cu-labeled MM-302 administration: (1) within 3 hours (+/- 1 hour) of labeled drug injection, and (2) 24 hours (+/- 6 hours) post-injection. Patients will continue to receive subsequent doses of unlabeled MM-302 plus trastuzumab every 3 weeks until clinical or radiographic disease progression (either in the brain or systemically) or unacceptable toxicity, whichever occurs soonest. MR brain imaging and FDG-PET/CT scans will be performed every 9 weeks to monitor for treatment response and disease progression.