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Showing 1-20 of 88 trials
NCT05087888
This study determines whether non-invasive evaluation using repeated magnetic resonance imaging (MRI) scans and repeated blood biomarker measurements can be used to predict changes in a person's mental functions that result from radiation exposure to the brain. This study may let researchers monitor patient responses to treatment and the disease better and possibly make changes to patient treatment, if needed.
NCT02800486
Primary brain tumors are typically treated by surgery, radiation therapy and chemotherapy, either individually or in combination. Present therapies are inadequate, as evidenced by the low 5-year survival rate for brain cancer patients, with median survival at approximately 12 months. Glioma is the most common form of primary brain cancer, afflicting approximately 7,000 patients in the United States each year. These highly malignant cancers remain a significant unmet clinical need in oncology. GBM often has a high expression of EFGR (Epidermal Growth Factor Receptor), which is associated with poor prognosis. Several methods of inhibiting this receptor have been tested, including monoclonal antibodies, vaccines, and tyrosine kinase inhibitors. The investigators hypothesize that in patients with recurring GBM, intracranial superselective intra-arterial infusion of Cetuximab (CTX), at a dose of 250mg/m2 in conjunction with hypofractionated radiation, will be safe and efficacious and prevent tumor progression in patients with recurrent, residual GBM.
NCT05386108
This is a multi-site, global, open-label study that includes a phase 1b evaluation of elacestrant in combination with abemaciclib in women and men with brain metastases from estrogen receptor (ER)-positive, human epidermal growth factor receptor-2 (HER-2) negative breast cancer. Phase 1b was designed to select the recommended phase 2 dose (RP2D) and is followed by an ongoing phase 2 evaluation of elacestrant in combination with abemaciclib in participants with active brain metastases from ER-positive, HER-2 negative breast cancer.
NCT04475640
This clinical trial examines the integration of cancer genetic testing in various ethnic populations. Studying individuals and families at risk of cancer may help identify cancer genes and other persons at risk. The information from this study may provide an opportunity for cancer risk stratification and individualized screening in these ethnic populations.
NCT07499141
During brain tumor surgery, it can be difficult for surgeons to distinguish between tumor tissue and healthy brain tissue. To address this challenge, fluorescent agents such as sodium fluorescein or 5-ALA are sometimes used. These substances cause the tumor to "glow" under specific lighting conditions, making it easier to visualize. This study retrospectively analyzes medical records of patients treated at the University Hospital of Alessandria between June 2023 and March 2024. It compares surgeries performed with these fluorescent agents to those performed without them, in order to determine whether fluorescence-guided surgery leads to a higher rate of complete tumor removal (gross total resection), as confirmed by post-operative MRI scans. The aim is to evaluate how the use of fluorescent dyes (fluorochromes) influences surgical outcomes in patients with high-grade gliomas (aggressive brain tumors). The study will also assess the impact of these tools on operative time, patient safety, and the overall recovery process.
NCT06667726
This phase II trial studies how well the addition of 18F-DOPA (amino acid) positron emission tomography (PET)/computed tomography (CT) to standard of care (SOC) imaging can improve the clinical management of patients with brain tumors in over 50% of cases. PET is an imaging test that helps to measure the information about functions of tissues and organs within the body. A PET scan uses a radioactive drug (radiotracer) to show this activity. CT scan uses X-rays to create images of the bones and internal organs within the body. Combining a PET scan with a CT scan can help make the images easier to interpret. PET/CT scans are hybrid scanners that combine both of the two modalities into a single scan. This allows images of both anatomy (CT) and function (PET) to be taken during the same scan. The 18F-DOPA PET/CT scan is done with a very small amount of a radioactive tracer called FDOPA. The PET/CT scan is then used to detect the location of tumors. Using the 18FDOPA-PET/CT scan in addition to the SOC scan may improve the clinical management of patients with brain tumors.
NCT06914479
This phase I trial tests the safety, side effects and best dose of AdV-HSV1-TK and AdV-Flt3L in combination with valacyclovir for the treatment of patients with primary cancerous (malignant) brain tumors that can be removed by surgery (resectable) and that have come back after a period of improvement (recurrent). AdV-HSV1-TK and AdV-Flt3L use a virus modified in the laboratory to kill tumor cells and stimulate the immune system to recognize the tumor cells as "invaders" which can lead to tumor shrinkage. For this process to work, an oral anti-herpes medication called valacyclovir is also needed. Giving AdV-HSV1-TK, AdV-Flt3L and valacyclovir may be safe, tolerable and/or effective in treating patients with resectable, recurrent primary malignant brain tumors.
NCT04988009
This study evaluates patient perceptions around quality of care through telemedicine in neuro-oncology. Studying questionnaires related to perceptions quality of care through telemedicine in patients with brain cancer may help doctors to improve the delivery of care through this modality.
NCT07238322
This study is designed to prospectively analyze \[18F\]FET PET image data obtained retrospectively in the routine clinical care of glioma patients. The study will analyse the data from participants with grade (1-4) glioma after primary treatment according to local clinical practice and with suspicion of progression/recurrence on magnetic resonance imaging (MRI).
NCT07339085
This clinical trial studies whether advanced magnetic resonance imaging (MRI) techniques, including diffusion-relaxation correlation spectrum imaging (DR-CSI) and sodium imaging, can be used to identify the difference between brain tumors that come back after a period of improvement (recurrent) and treatment-related tissue damage (radiation necrosis \[RN\]). Radiation therapy is often used in the treatment of brain tumors. Radiation treatment response can be difficult to assess and is usually done using conventional MRI, which uses radio waves and a powerful magnet linked to a computer to create detailed pictures of areas inside the body. Current imaging techniques have a limited ability to identify the difference between recurrent brain tumor and RN due to their similar appearance on conventional MRI and overlapping clinical presentation. This makes it hard for doctors to plan the best way to treat these tumors. DR-CSI is a new MRI technique with the potential to detect microscopic tissue components with different characteristics. Sodium imaging is an MRI technique that estimates the total sodium concentration in the obtained images. It may be able to identify the small structures within the tissue of brain tumors. Advanced MRI techniques like DR-CSI and sodium imaging may be effective in identifying the difference between recurrent brain tumors and RN.
NCT02698254
This pilot clinical trial studies the side effects and best dose of radiation therapy in patients with brain tumors that have come back after previous treatment with radiation therapy. Radiation therapy uses high energy x-rays to kill tumor cells and shrink tumors. Giving radiation therapy in different ways may kill more tumor cells.
NCT07286396
This research protocol focuses on the pre- and post-operative evaluation of ICP using non-invasive methods, particularly in the context of surgery for brain tumor removal. By utilizing ocular ultrasound to measure ONSD and ONSD/ETD ratios, this study hypothesizes that the utility of these parameters in monitoring ICP pre- and post-operative periods could be effective.
NCT06930846
The purpose of this study is to assess the ability of the home-based intervention, HOBSCOTCH-CA, to improve the quality of life and cognitive function in Service Members, Veterans and civilians who are survivors of brain cancer or a brain tumor (CA participants). This study will also assess the ability of the HOBSCOTCH-CA program to improve quality of life in caregivers of patients with brain cancer/tumor and to reduce caregiver burden. Enrolling with a Caregiver is optional for CA participants. Investigators will compare two groups of CA participants and their Caregiver (enrolling with a Caregiver is optional): one who receives HOBSCOCTCH-CA immediately (Group 1) and another group that will receive HOBSCOTCH-CA (Group 2) after a 3-month waiting period. Participants will be in the study for about 6 months total. HOBSCOTCH-CA involves 45 to 60 minute one on one virtual sessions with a certified Cognitive Coach including a "pre" program session and 8 weekly sessions thereafter. Participants will learn about problem solving therapy and mindfulness or relaxation training. CA participants are asked to do short homework assignments and keep a brief daily diary on a smart phone app. All participants complete study questionnaires or surveys at enrollment, 3 months later and at 6 months (at the end of the study).
NCT02754544
This pilot clinical trial studies how well electrocorticography works in mapping functional brain areas during surgery in patients with brain tumors. Using a larger than the standard mapping grid currently used during brain tumor surgery or a high-definition grid for electrocorticogram brain mapping may help doctors to better identify which areas of the brain are active during specific limb movement and speech during surgery in patients with brain tumors.
NCT04553757
This study investigates how seizures can vary over time with changes in low grade gliomas and its treatments. This study may help doctors find symptoms or triggers of seizures earlier than normal, and ultimately earlier care or treatment for seizures.
NCT04543188
First-in-human study to assess safety, tolerability, PK, and preliminary activity of PF-07284890 as a single agent and in combination with binimetinib in participants with BRAF V600-mutated advanced solid tumor malignancies with and without brain involvement.
NCT06630338
This study investigates the role of intraoperative shear wave elastography ultrasound (ISWEU) in identifying healthy brain and tumor tissue stiffness differences. This data may be used to guide tumor resection in future patients.
NCT06377696
This phase III trial evaluates whether patient care can be done remotely for patients having cranial (skull) radiation or who have previously had cranial radiation. In addition, this trial compares study outcomes between patients who get metformin and those who do not. Cranial radiation, an essential component of brain tumor treatment, can result in significant negative effects on cognitive (the ability to clearly think, learn, and remember) function. Wearable devices have been used in the field of neurology for seizure detection and assessment of patients with movement disorders. Wearable device technology has also been implemented for remote monitoring of cancer patients and for cancer clinical trials. Metformin is the active ingredient in a drug used to treat type 2 diabetes mellitus (a condition in which the body cannot control the level of sugar in the blood). It is also being studied in the treatment of cancer. Use of metformin may reduce risk of cognitive decline following radiation therapy within the skull (intracranial). These effects may be further strengthen by addition of device-based physical activity promotion. Mayo Test Drive is a web-based platform for remote self-administered cognitive assessment. Using Mayo Test Drive may help determine whether patient care can be done remotely, while simultaneously evaluating benefits of health promotion through use of a wearable watch device and metformin in preventing radiation-related cognitive decline.
NCT07046481
The project intends to study physical functional capacity and degree of physical activity health related quality of life and fatigue. Also, we aim to study if the Physical Activity on Prescription (PAP) intervention is a useful method among physically inactive childhood cancer survivors to increase level of activity. The questions the study aim to answer: * What is the physical functional capacity, degree of physical activity, health related quality of life and fatigue among childhood cancer survivors 5- 10 yars after dignosis? * Is the Physical Activity on Prescription intervention feasible for physically inactive childhood cancer survivors and what effect do they experience in terms of physical functioning, physical activity, sedentary behavior, fatigue and health-related quality of life? Participants aged 5-17 years who have been treated for leukemia or brain tumor will be invited to participate. Physical functional capacity and degree of physical activity are assessed with standardized assessment instruments by a physiotherapist. Prior to the visit, participants are also asked to complete questionnaires on HRQoL and fatigue. Participants identified as physically inactive are offered to participate in a PAP intervention. Functional ability scores from previous studies are used as a baseline and are supplemented with objective measurements of physical activity and followed up after the intervention.
NCT00308165
This study will evaluate the safety and efficacy of a chemotherapeutic drug (topotecan) as it is given directly into brain tumors by a delivery technique called convection-enhanced delivery. This drug has been used for different types of cancer, but in this study it will be given by an experimental delivery technique designed to maximize the amount of drug delivered to the brain tumor and minimize the side effects in other parts of the body. This study will also evaluate advanced magnetic resonance (MR) imaging techniques. The study will assess quality of life parameters throughout the follow-up period.