Intraventricular Hemorrhage

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11 Intraventricular Hemorrhage Trials Near You

Power is an online platform that helps thousands of Intraventricular Hemorrhage patients discover FDA-reviewed trials every day. Every trial we feature meets safety and ethical standards, giving patients an easy way to discover promising new treatments in the research stage.

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No Placebo
Highly Paid
Stay on Current Meds
Pivotal Trials (Near Approval)
Breakthrough Medication
This trial is testing a new medicine to see if it can prevent a serious lung condition in very premature babies. The goal is to see if this new treatment works better at protecting their lungs and reducing the chances of developing chronic lung disease.
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Phase 2
Age:0 - 24

338 Participants Needed

This trial is testing a new device called IRRAflow, which actively cleans out fluid, blood, and bacteria from certain areas in the brain. It targets patients with brain bleeding or infections. The device works by flushing out harmful substances to keep the brain areas clean and reduce complications.
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased

240 Participants Needed

The primary goal of this study is to assess the occurrence of flushing interventions to address occlusions during the treatment of interventricular hemorrhage (spontaneous primary IVH or secondary IVH due to ruptured aneurysm).
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased

109 Participants Needed

Indomethacin for Premature Birth

Pittsburgh, Pennsylvania
In Canada, about 900 babies each year are born very early (\<26 weeks of gestation) and have a high chance of dying or having a serious bleed in the brain. Families of these extremely preterm babies consider preventing severe brain bleeding as critical to their child's health and well-being. A medicine called indomethacin, when given intravenously in 3-doses, is known to reduce severe brain bleeding. But use of this drug is variable among clinicians working in the neonatal intensive care unit (NICU) due to (a) its side effects on the gut; (b) possible harm when used with other medications; (c) a notion that despite reducing brain bleeds, the child's long-term brain development is not improved. Emerging evidence suggests that a single low-dose indomethacin regimen may be equally effective in reducing severe brain bleeding as compared to a traditional 3-dose regimen. The investigators propose a blinded randomized controlled trial, a study design where babies born \<26 weeks will be randomly assigned within 12 hours of birth to either a single dose of intravenous indomethacin or similar looking placebo in the form a saline solution. The study will test if a single dose indomethacin regimen is effective in improving survival of these babies without the devastating complication of severe brain bleeding. In this study the care providers and researchers will be unaware as to which baby receives indomethacin and which baby receives placebo to ensure no one's expectations or biases can influence the results. The investigators will conduct the study in multiple NICUs across Canada, the United States and Australia and will enroll 500 babies born \<26 weeks or \<750 g birth weight over a period of 3 years. This study will help the investigators determine in the most unbiased way whether a single dose of indomethacin given immediately after birth in the smallest babies born \<26 weeks of gestation can safely and effectively reduce severe brain bleeding.
Pivotal Trial (Near Approval)

Trial Details

Trial Status:Not Yet Recruiting
Trial Phase:Phase 3
Age:0 - 12

500 Participants Needed

Study Aims Pilot study: Due to the large recruitment goal and length of the project, the study team/PIs will evaluate the first cohort of 6-10 participants to refine study procedures and study-related materials. If no major modifications are made to the protocol as a result of this evaluation, data from these participants will be included for analysis. Aim 1: Evaluate the efficacy of an early, evidence-based, clinical experience-based therapeutic intervention (from the NICU to 12-months corrected age) on improving motor function and reducing severity of motor delays in infants at 12-months corrected age. The investigators hypothesize that the intervention group will demonstrate an average 8-point difference (0.5 standard deviation) compared to the standard of care group. \[an 8-point difference is considered a clinically meaningful difference\] Aim 2: Evaluate the early effects (i.e., before 12 months) of a therapeutic intervention, provided from NICU to 12-months corrected age, on motor function and severity of motor delay. The Investigators hypothesize that a statistically significant higher percentage of infants in the intervention group will demonstrate improved motor function and reduced severity of motor delays, compared to the standard of care group-assessed using sensors, the NSMDA and TIMP-as early as 3-months corrected age. Aim 3: Evaluate whether an early intervention that focuses on caregiver engagement improves caregiver well-being. The invetigators hypothesize that an intervention that focuses on supporting and addressing the individual needs of the caregiver will improve caregiver well-being. The investigators will evaluate these effects using the PedsQL (Family Impact Module).
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased
Age:33 - 48

222 Participants Needed

This trial is testing melatonin and erythropoietin in very premature babies with severe brain bleeding. The goal is to see if these substances can protect the brain and prevent a condition that currently requires surgery. If successful, this could reduce lifelong complications for these infants. Erythropoietin has been shown to have protective effects on the brain and is often used in premature infants.

Trial Details

Trial Status:Recruiting
Trial Phase:Phase 1
Age:12 - 2

60 Participants Needed

The primary purpose of this study is to serve as a pilot study of the EFIL device treatment feasibility of IVH grades 3,4 to guide development of a larger trial. Primary outcomes will assess the following: safety of intervention, recruitment and consent process, acceptability of intervention by parents, retention rates, selection of most appropriate outcome measures, provide sample size estimates for a larger trial, increase the researchers\&#39; experience with the study intervention. A complete list of objectives and aims are listed under "Objectives". This study hopes to treat 12-24 neonates using 650nm light of irradiance 10mW/cm2 for 5 minutes twice a day each day for 12 days. We will also call the parents at 6 months and 12 months to track developmental milestones.
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased
Age:0 - 1

24 Participants Needed

This trial is testing a special tube called the IRRAflow® System to help drain fluid from the brain and reduce pressure. It targets patients with severe brain bleeding conditions. The system works by washing out blood and continuously checking brain pressure to prevent complications.
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased

120 Participants Needed

Care Bundle for Stroke

Ottawa, Ontario
Spontaneous intracerebral haemorrhage (ICH) accounts for approximately 10-15% of all strokes but stands for 50% of stroke-related morbidity and mortality. Approximately half of all patients with ICH have a decreased level of consciousness at hospital admission. Despite this, intensive care and neurosurgical interventions are uncommon. A study conducted in low- and middle-income countries has demonstrated a beneficial effect of a treatment package consisting of early intensive blood pressure lowering, as well as the treatment of pyrexia and elevated blood glucose levels. The I-CATCHER team is now planning to conduct a similar study in Sweden and Australia, as well as in other high-income countries. The study has a clear focus on implementation, aiming to improve treatment and prognosis for patients with ICH within a few years. The purpose of I-CATCHER is to investigate whether a structured treatment package (Care Bundle) improves 3-month prognosis in patients with spontaneous ICH compared to standard care.

Trial Details

Trial Status:Recruiting
Trial Phase:Phase 4

3500 Participants Needed

This study is designed to answer one of the fundamental gaps in knowledge in the resuscitation of preterm infants at birth: What is the optimal target oxygen saturation (SpO2) range that increases survival without long-term morbidities? Oxygen (O2) is routinely used for the stabilization of preterm infants in the delivery room (DR), but its use is linked with mortality and several morbidities including bronchopulmonary dysplasia (BPD). To balance the need to give sufficient O2 to correct hypoxia and avoid excess O2, the neonatal resuscitation program (NRP) recommends initiating preterm resuscitation with low (≤ 30%) inspired O2 concentration (FiO2) and subsequent titration to achieve a specified target SpO2 range. These SpO2 targets are based on approximated 50th percentile SpO2 (Sat50) observed in healthy term infants. However, the optimal SpO2 targets remain undefined in the preterm infants. Recent data suggest that the current SpO2 targets (Sat50) may be too low. The investigators plan to conduct a multicenter RCT of Sat75 versus Sat50 powered for survival without BPD. The investigators will randomize 700 infants, 23 0/7- 30 6/7 weeks' GA, to 75th percentile SpO2 goals (Sat75, Intervention) or 50th percentile SpO2 goals (Sat50, control). Except for the SpO2 targets, all resuscitations will follow NRP guidelines including an initial FiO2 of 0.3. In Aim 1, the investigators will determine whether targeting Sat75 compared to Sat50 increases survival without lung disease (BPD). In addition, the investigators will compare the rates of other major morbidities such as IVH. In Aim 2, the investigators will determine whether targeting Sat75 compared to Sat50 increases survival without neurodevelopmental impairment at 2 years of age. In Aim 3, the investigators will determine whether targeting Sat75 compared to Sat50 decreases oxidative stress.
No Placebo Group

Trial Details

Trial Status:Recruiting
Trial Phase:Unphased
Age:0 - 10

700 Participants Needed

This trial tests whether giving preterm babies different oxygen levels while delaying umbilical cord clamping helps them breathe better. It focuses on very early preterm infants who often have trouble breathing. The goal is to see which method helps these babies get enough oxygen in their blood more quickly.
No Placebo Group

Trial Details

Trial Status:Active Not Recruiting
Trial Phase:Unphased
Age:22 - 28

140 Participants Needed

Why Other Patients Applied

"I was diagnosed with stage 4 pancreatic cancer three months ago, metastatic to my liver, and I have been receiving and responding well to chemotherapy. My blood work revealed that my tumor markers have gone from 2600 in the beginning to 173 as of now, even with the delay in treatment, they are not going up. CT Scans reveal they have been shrinking as well. However, chemo is seriously deteriorating my body. I have 4 more treatments to go in this 12 treatment cycle. I am just interested in learning about my other options, if any are available to me."

ID
Pancreatic Cancer PatientAge: 40

"I've tried several different SSRIs over the past 23 years with no luck. Some of these new treatments seem interesting... haven't tried anything like them before. I really hope that one could work."

ZS
Depression PatientAge: 51

"I changed my diet in 2020 and I’ve lost 95 pounds from my highest weight (283). I am 5’3”, female, and now 188. I still have a 33 BMI. I've been doing research on alternative approaches to continue my progress, which brought me here to consider clinical trials."

WR
Obesity PatientAge: 58

"I have dealt with voice and vocal fold issues related to paralysis for over 12 years. This problem has negatively impacted virtually every facet of my life. I am an otherwise healthy 48 year old married father of 3 living. My youngest daughter is 12 and has never heard my real voice. I am now having breathing issues related to the paralysis as well as trouble swallowing some liquids. In my research I have seen some recent trials focused on helping people like me."

AG
Paralysis PatientAge: 50

"My orthopedist recommended a half replacement of my right knee. I have had both hips replaced. Currently have arthritis in knee, shoulder, and thumb. I want to avoid surgery, and I'm open-minded about trying a trial before using surgery as a last resort."

HZ
Arthritis PatientAge: 78

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Frequently Asked Questions

How much do Intraventricular Hemorrhage clinical trials pay?

Each trial will compensate patients a different amount, but $50-100 for each visit is a fairly common range for Phase 2–4 trials (Phase 1 trials often pay substantially more). Further, most trials will cover the costs of a travel to-and-from the clinic.

How do Intraventricular Hemorrhage clinical trials work?

After a researcher reviews your profile, they may choose to invite you in to a screening appointment, where they'll determine if you meet 100% of the eligibility requirements. If you do, you'll be sorted into one of the treatment groups, and receive your study drug. For some trials, there is a chance you'll receive a placebo. Across Intraventricular Hemorrhage trials 30% of clinical trials have a placebo. Typically, you'll be required to check-in with the clinic every month or so. The average trial length for Intraventricular Hemorrhage is 12 months.

How do I participate in a study as a "healthy volunteer"?

Not all studies recruit healthy volunteers: usually, Phase 1 studies do. Participating as a healthy volunteer means you will go to a research facility several times over a few days or weeks to receive a dose of either the test treatment or a "placebo," which is a harmless substance that helps researchers compare results. You will have routine tests during these visits, and you'll be compensated for your time and travel, with the number of appointments and details varying by study.

What does the "phase" of a clinical trial mean?

The phase of a trial reveals what stage the drug is in to get approval for a specific condition. Phase 1 trials are the trials to collect safety data in humans. Phase 2 trials are those where the drug has some data showing safety in humans, but where further human data is needed on drug effectiveness. Phase 3 trials are in the final step before approval. The drug already has data showing both safety and effectiveness. As a general rule, Phase 3 trials are more promising than Phase 2, and Phase 2 trials are more promising than phase 1.

Do I need to be insured to participate in a Intraventricular Hemorrhage medical study?

Clinical trials are almost always free to participants, and so do not require insurance. The only exception here are trials focused on cancer, because only a small part of the typical treatment plan is actually experimental. For these cancer trials, participants typically need insurance to cover all the non-experimental components.

What are the newest Intraventricular Hemorrhage clinical trials?

Most recently, we added Indomethacin for Premature Birth, Care Bundle for Stroke and Light Therapy for Intraventricular Hemorrhage to the Power online platform.

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