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Brain Edema clinical trials

View clinical trials related to Brain Edema.

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NCT ID: NCT01954290 Withdrawn - Cerebral Edema Clinical Trials

Study of Stroke Related Edema Treatments

Start date: September 2015
Phase: Phase 2
Study type: Interventional

Stroke remains the fourth leading cause of death in the United States (second worldwide) and a leading cause of long-term disability, resulting in total direct and indirect costs of approximately $73.7 billion annually. The failure of novel therapies in clinical trials demonstrates that the complex neural response to stroke must be targeted at multiple levels to improve patient outcomes. Despite significant improvements in stroke treatment and management, 1 year survival rate among stroke patients aged 65 years or more is around 25%, and 5- year survival rate amounts to approximately 50%. The highest chances of death are within 30 days of stroke. Mortality increases due to worsening brain dysfunction, elevated intracranial pressure (ICP), and other comorbid conditions. Treatments aimed at reducing post-stroke cytotoxic edema may reduce the risk for development of malignant stroke and mortality. Current treatments such as osmo-therapy and hemicraniectomy have substantial limitations, and mortality remains high, despite these measures outcomes remain unsatisfactory. There is a great need for alternative medical approaches which are safe, predictable, and help to ameliorate post stroke edema.

NCT ID: NCT01830894 Not yet recruiting - Clinical trials for Intra Cerebral Hemorrhage

Feasibility Study of New MRI Protocol in Assessing Early Blood Brain Barrier Disruption (BBBD)in Related to Delay Brain Edema

BBBD
Start date: April 2013
Phase: Phase 1/Phase 2
Study type: Interventional

MRI research Group in the Advanced Technology Center of the Sheba Medical Center has developed an innovative methodology based on leakage (extravasation) contrast agent that allows to map the entire brain with high resolution and high sensitivity to check and describe disorders BBB (blood brain barrier). The aim of the current study is to evaluate the feasibility of the BBB disruption detection method to predict delayed peri - hemorrhage edema.

NCT ID: NCT01698619 Recruiting - Clinical trials for Acute Mountain Sickness

Hemodynamic Changes in Altitude Adaptation

Start date: August 2012
Phase: N/A
Study type: Observational

We use a new technology (Nexfin from BMEYE-Inventive Hemodynamics) to monitor Cardiac Output, Blood Pressure, Fluid Responsiveness, Pulse Oximetry, Hemoglobin Concentration, Oxygen Delivery in Climbers during their process of acclimatization on a expedition to Mount Aconcagua.

NCT ID: NCT01605357 Withdrawn - Clinical trials for Traumatic Brain Injury

Hypernatremia for the Prevention and Treatment of Cerebral Edema in Traumatic Brain Injury

Start date: July 2012
Phase: Phase 1/Phase 2
Study type: Interventional

Cerebral edema is seen heterogenous group of neurological disease states that mainly fall under the categories of metabolic, infectious, neoplasia, cerebrovascular, and traumatic brain injury disease states. Regardless of the driving force, cerebral edema is defined as the accumulation of fluid in the brain's intracellular and extracellular spaces. This occurs secondary to alterations in the complex interplay between four distinct fluid compartments within the cranium. In any human cranium; fluid is contained in the blood, the cerebrospinal fluid, interstitial fluid of the brain parenchyma, and the intracellular fluid of the neurons and glia. Fluid movement occurs normally between these compartments and depends on specific concentrations of solutes (such as sodium) and water. In brain-injured states, the normal regulation of this process is disturbed and cerebral edema can develop. Cerebral edema leads to increased intracranial pressure and mortality secondary to brain tissue compression, given the confines of the fixed-volume cranium. Additionally, secondary neuronal dysfunction or death can occur at the cellular level secondary to the disruption of ion gradients that control metabolism and function. While studies utilizing bolus dosing of hyperosmolar therapy to target signs or symptoms of increased intracranial pressure secondary to cerebral edema are numerous, there is a paucity of studies relating to continuous infusion of hyperosmolar therapy for targeted sustained hypernatremia for the prevention and treatment of cerebral edema. The investigators hypothesize that induced, sustained hypernatremia following traumatic brain injury will decrease the rate of cerebral edema formation and improve patient outcomes.

NCT ID: NCT01565603 Active, not recruiting - Clinical trials for Acute Mountain Sickness

Sleep and Cerebral Responses to High Altitude

VALLOT 2011
Start date: July 2011
Phase: N/A
Study type: Observational

Mechanisms underlying high-altitude intolerance as well as exercise performance limitation in hypoxia still remain to be fully understood. Recent data suggest that sleep disturbances on one hand and cerebral perturbations on teh other hand may be key mechanisms. The investigators evaluated 12 healthy subjects at sea level and at 4400 m of altitude for 7 days in order to better describe sleep and cerebral responses. The investigators hypothesized that sleep and cerebral disturbances play a critical role for the developement of acute mountain sickness and for exercise performance limitation during acute high-altitude exposure.

NCT ID: NCT01369121 Terminated - Brain Tumor Clinical Trials

Tolerability Study of Xerecept® in Pediatric Patients

Start date: June 2010
Phase: Phase 1/Phase 2
Study type: Interventional

This study is being conducted to evaluate the safety and tolerability of Xerecept® in children with central nervous system tumors and to identify appropriate doses of Xerecept® to be used in subsequent pediatric clinical trials.

NCT ID: NCT01365793 Completed - Clinical trials for Diabetic Ketoacidosis

Randomized Control Trial of Fluid Therapy for Pediatric Diabetic Ketoacidosis

Start date: November 2010
Phase: Phase 3
Study type: Interventional

The investigators will conduct a randomized controlled trial comparing four different intravenous (IV) fluid treatment protocols for pediatric diabetic ketoacidosis (DKA). Two rates of rehydration will be compared; a more rapid rate and a slower rate. Within each of these two basic rehydration protocols, the investigators will vary the type of rehydration fluid used (0.9% saline or 0.45% saline). The investigators will compare the different treatments by conducting assessments of neurological injury, by measuring the frequency of significant cerebral edema, and by measuring long-term neurocognitive function. These studies will allow us to determine whether variations in IV fluid treatment protocols affect acute neurological outcomes of DKA. Additionally, they will provide important data regarding the impact of DKA and DKA treatment on long-term neurocognitive function in children. In this way, the investigators hope to identify a more ideal fluid management strategy for children with DKA. Previous studies have suggested that DKA may cause blood flow to the brain to be reduced and that brain injury might result from this reduction in blood flow and/or the effects of re-establishment of normal blood flow during DKA treatment with insulin and iv fluids. The investigators hypothesize that more rapidly re-establishing normal blood flow to the brain during DKA, by giving fluids more rapidly and using fluids with a higher sodium (salt) content, will help to minimize brain injury caused by DKA.

NCT ID: NCT01060969 Completed - Pulmonary Edema Clinical Trials

Tadalafil and Acetazolamide Versus Acetazolamide in Acute Mountain Sickness Prevention

Start date: January 2006
Phase: N/A
Study type: Interventional

To evaluate the additive value of tadalafil given together with Diamox (acetazolamide) in preventing acute mountain sickness in travelers to high altitude areas.

NCT ID: NCT01054404 Terminated - Dehydration Clinical Trials

Furosemide vs Placebo for Brain Relaxation

Start date: February 2010
Phase: N/A
Study type: Interventional

Increased brain bulk may be problematic during brain surgery for tumors because it may limit surgical exposure and access to the surgical site. Mannitol, an osmotic diuretic, is commonly given to alleviate brain bulk, and sometimes furosemide in a small dose is added if mannitol alone is insufficient. It is unclear if adding this furosemide truly helps to diminish brain bulk, and it is possible that furosemide may cause too much diuresis, leading to dehydration and its side effects (e.g., low blood pressure). Our purpose is to investigate what the effects of furosemide are in the setting of brain surgery for tumors, specifically with regards to decreasing brain bulk and/or causing dehydration. Study Hypothesis: The addition of furosemide to mannitol will result in improved brain relaxation in human subjects undergoing craniotomy for brain tumor resection than that seen with mannitol alone. However, the combination of mannitol and furosemide will also lead to more significant intravascular volume depletion than that seen with mannitol alone.

NCT ID: NCT00691522 Terminated - Clinical trials for PRIMARY MALIGNANT and METASTATIC BRAIN TUMORS

Imaging Study of XERECEPT® Treatment for Peritumoral Brain Edema (PBE)

Start date: November 2008
Phase: Phase 2
Study type: Interventional

This is a phase II, multicenter, open-label, imaging study of hCRF in the reduction of PBE in patients with primary malignant or metastatic brain tumors. Approximately 30 to 60 patients will be assigned to 1 of 3 treatment groups and receive study drug for up to 28 days