View clinical trials related to Brain Metastases.
Filter by:This is a prospective, single arm, phase II trial to determine the local control at 6 months utilizing pre-operative stereotactic radiosurgery followed by surgery within 1 - 4 days in subjects with a diagnosis of 1-4 brain metastases and with an indication for surgical resection of at least one brain metastasis at the discretion of a neurosurgeon.
This research study is studying stereotactic radiation (focused/pinpoint radiation that targets each individual tumor but not the surrounding brain) instead of whole-brain radiation (radiation targeting the entire brain) as a possible treatment for patients with small cell lung cancer and 1-10 brain metastases. The intervention involved in this study is: -Stereotactic (focused, pinpoint) radiation
This study will be a non-randomized phase II trial for patients with one to six brain metastases, at least one of which is appropriate for surgical resection. Upon registration, patients will be assigned to receive neo-adjuvant stereotactic radiosurgery (NASRS).
This study evaluates hippocampus-sparing whole-brain radiotherapy with simultaneous integrated boost for patients with multiple brain metastases from non-small cell lung cancer. The primary endpoint is intracranial progression free survival, and secondary endpoints are verbal neurocognitive function, overall survival, adverse events according to CTCAE v4.03, and quality of life.
To observe the effectiveness and safety of apatinib combined with radiotherapy for brain metastasis from non-small cell lung cancer patients
The overall aim and primary outcome of this study will be a descriptive analysis of the current treatment practice of BM in Norway. Specifically, it may give answers to the following research questions: - What is the true incidence of BM in Norway? - How are patients with BM treated at present? - Do treatments differ between hospitals? - How do treatments impact quality of life of the patients? - Which factors (treatment, tumor and host variables) can explain disease control, survival, symptom relief, and general functions? - How can BM staging be improved?
A propensity- matched study was conducted to investigate the feasibility and safety of adding temozolomide to hypofractionated stereotactic radiotherapy for large brain metastases.
This is a Phase 1 study of E6201 plus dabrafenib for the treatment of CNS metastases in BRAF V600-mutated metastatic melanoma. A total of up to N=28-34 subjects with melanoma metastasized to the CNS will be included.
Upwards of 40% of cancer patients will develop brain metastases during their illness, most of which become symptomatic. The burden of brain metastases impacts the quality and length of survival. Thus the management of brain metastases is a significant health care problem. Standard treatment options include stereotactic radiosurgery and/or whole brain radiation. There is a great interest in studying the association between the functional characteristics of tumors - such as tumour hypoxia and lactate accumulation - and clinical outcomes in order to guide management. These characteristics may predict future tumor behavior and stratify risk of therapy failure. Hyperpolarized 13C MR imaging is a novel functional imaging technique that uses 13C-labeled molecules, such as pyruvate, and MRS to image in vivo tissue metabolism. There is significant clinical heterogeneity in patients with brain metastasis due to differences in underlying tumour biology. Biochemical differences in tumour metabolism have been shown to correlate with response to therapy. While the significance of tissue hypoxia for radiosensitivity has been established for years, the impact of lactate accumulation on radiosensitivity has only recently been recognized. Studies have shown that tissue lactate levels correlate with radioresistance in several human tumours. Hyperpolarized 13C pyruvate MRS has been shown in numerous pre-clinical studies and a recent clinical study to have great potential as a metabolic imaging tool. Our study seeks to establish the role of hyperpolarized 13C MRS in characterizing the metabolic features of intracranial metastasis. The results of this study will provide insight into intracranial metastatic disease signatures with MR spectroscopy and determine if there is added benefit for incorporation of this new technique into future clinical MRI protocols. If the technique can accurately differentiate between aggressive and indolent tumours based on MR spectroscopic patterns, hyperpolarized 13C MRS may have wide-ranging utility in the future. In the era of personalized medicine, the ability of imaging tests to predict response to therapy would open the door for individualized treatment options specific to each patient's disease biology.
For patients with cerebral oligometastases who are in adequate clinical condition stereotactic radiosurgery (SRS) is the treatment of choice, being recommended by international guidelines for the treatment of one to four lesions. Newer findings have shown that for patients with more than four lesions SRS can be considered as a favorable alternative to whole-brain radiotherapy (WBRT), the currently established standard-of-care treatment. With modern techniques highly conformal SRS of multiple lesions has become feasible with comparable clinical effort and minimal toxicity as compared to WBRT. Developments in magnetic resonance imaging (MRI- imaging) have produced highly sensitive contrast-enhanced three-dimensional fast spin echo sequences such as SPACE that facilitate the detection of very small and early-stage lesions in a fashion superior to the established Magnetization Prepared Rapid Gradient Echo (MPRAGE) series. Since it has been established that the response of brain metastases to SRS is better for smaller lesions and that WBRT can come at the price of significant neurotoxicity, the investigators hypothesize that 1) earlier detection of small brain metastases and 2) early and aggressive treatment of those by SRS will result in an overall clinical benefit by delaying the failure of repeated localized therapy and thus preserving quality of life and potentially prolonging overall survival. On the other hand however, overtreatment might be a valid concern with this approach since it has yet to be proved that a clinical benefit can be achieved. The current study aims to stretch the boundaries of the term "cerebral oligometastases" by performing SRS for up to ten cerebral metastases, compared to the established clinical standard of four, given that existing data supports the non-inferiority of this approach and given that modern Cyberknife SRS facilitates the treatment of multiple lesions with minimal treatment-associated toxicity.