Hemorrhage refers to bleeding that can occur in various parts of the body and may require careful medical attention. Clinical trials related to hemorrhage often explore treatment evaluations to manage bleeding, monitoring approaches to assess patient...
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Found 1207 Actively Recruiting clinical trials
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Many people experience wounds that do not heal well or take a long time to heal, including both chronic and acute wounds. This research aims to study the effects of 4-aminopyridine 4-AP, a drug currently used in neurological conditions, to see if it can help speed up wound healing in healthy adults. Previous animal studies showed promising results with faster healing and no adverse effects, making it important to evaluate 4-APs role in human wound repair. Participants in this study will be randomly assigned to receive either 4-aminopyridine capsules or placebo capsules taken every 12 hours. The treatment period lasts for 6 weeks, during which researchers will monitor wound healing progress. The study includes a phase where participants receive either the active drug or placebo to compare effects on skin integrity and wound closure. During the study, participants will have a skin punch biopsy wound that will be monitored for healing over 6 weeks. Researchers will assess the return of skin integrity, wound closure, and hair growth at the biopsy site. Participants must attend scheduled follow-up visits and may be asked to provide wound photographs. The study also tracks safety and tolerability, ensuring participants are able to report any sensory or motor changes. Total participation is about 6 weeks with regular evaluations.
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Researchers are evaluating the effect of involving caregivers in a rehabilitation approach called caregiver-assisted rehabilitation with strategy training CAR-ST to improve daily activity functions in adults who have had a stroke. The study aims to compare CAR-ST with strategy training alone and with an education program to see which approach leads to better improvements in activity performance and whether these improvements extend to other areas like participation and impairment. This is a single-blinded, three-arm randomized controlled trial conducted in multiple centers to assess the potential benefits of caregiver involvement in home-based post-stroke rehabilitation. Participants will be randomly assigned to one of three groups CAR-ST, strategy training alone, or an education program. The CAR-ST and strategy training groups receive up to 10 therapist-guided sessions over a maximum of 6 weeks, with sessions once or twice weekly lasting about 60 minutes each. CAR-ST involves caregivers actively assisting and motivating participants during at-home practice, while the strategy training group does not include caregiver participation. The education group receives 10 matched sessions focused on stroke information delivered through face-to-face talks, video calls, or phone calls. During the study, participants will be assessed at four time points before treatment, immediately after the intervention, and at 3- and 6-month follow-ups. Researchers will use various clinical tools to measure changes in activity performance, participation, quality of life, self-efficacy, motor function, cognition, and goal attainment. Qualitative interviews will also explore participant and caregiver experiences and satisfaction. The total involvement spans from baseline through six months after treatment, with continuous monitoring and data analysis to evaluate the interventions impact.
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Researchers are evaluating the progress of chronic venous leg ulcers in adults using a non-bordered foam dressing. This prospective, open, multi-center, interventional study aims to track wound healing over a 6-week period or until the wound heals. The study focuses on venous leg ulcers that produce moderate to large amounts of fluid and includes 20 participants across centers in the US and Canada. All participants will use the ALLEVYN Non-Adhesive foam dressing as the primary absorbent dressing. This device combines a breathable top film, a highly absorbent foam core, and a non-adhesive wound contact layer designed for comfort and optimal moist wound healing. The dressing will be worn continuously and changed every week during the treatment period. Participants will attend seven visits a baseline visit followed by weekly visits up to six weeks. At each visit, wound progress will be assessed by measuring wound size and evaluating wound condition. Researchers will also monitor pain, comfort, quality of life, dressing performance, and safety throughout the study. The main outcome measured is wound progress from baseline to last follow-up, with additional assessments including wound area reduction, tissue changes, exudate characteristics, skin condition, and adverse events.
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Researchers are evaluating the progress of chronic wounds, specifically venous leg ulcers VLU and diabetic foot ulcers DFU, using an absorbent dressing called Mepilex Up. This study is a prospective, open, multi-center, interventional trial designed to observe wound healing over a period of up to six weeks. The goal is to track changes in wound area and condition while participants receive treatment according to local standards of care. Participants will use the Mepilex Up dressing, which is a soft, silicone-based absorbent foam dressing designed to manage wound exudate and protect the skin. The dressing will be applied as the primary dressing and changed weekly for up to six weeks or until the wound heals. The study includes seven visits a baseline visit followed by weekly visits to monitor wound healing and dressing performance. During each visit, researchers will assess wound progress through measurements and evaluations of wound area, volume, tissue quality, exudate, and skin condition. Participants will report on pain, comfort, and quality of life related to wound care. Safety will be monitored at all visits. The total treatment period is a maximum of 44 days or until healing occurs, with detailed tracking of dressing wear time, wound changes, and any adverse events.
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Researchers are evaluating whether combining two non-invasive brain stimulation methodsmuscle stimulation of the arm using functional electrical stimulation FES and neurostimulation through the tonguecan improve recovery after stroke. This study focuses on adults who have experienced a stroke and have upper extremity motor impairments, aiming to measure changes in motor function and brain plasticity using behavioral tests and functional MRI scans. Participants are divided into several groups including stroke patients with upper extremity impairments receiving EEG-guided brain-computer interface BCI training combined with muscle and tongue stimulation, stroke patients receiving traditional rehabilitation before starting BCI-FES-tongue therapy, stroke patients receiving standard FES therapy only, healthy controls, and people with stroke risk factors. The study involves training sessions with the EEG-BCI system, muscle and tongue stimulation, and the use of the recoveriX system, which provides real-time visual and tactile feedback paired with imagined hand movements. The intervention periods vary, with some groups receiving delayed therapy and others immediate BCI therapy. Participants will undergo multiple assessments including behavioral tests of upper extremity function, EEG recordings, and functional MRI scans at the start and after about four months of therapy. The researchers will monitor changes in arm function using the Action Research Arm Test and observe brain activity changes through EEG and fMRI. The study includes up to six BCI training sessions and regular evaluations over approximately 10 weeks, with some groups receiving additional follow-up MRI and behavioral testing. Safety screening excludes those with allergies to electrode materials or contraindications for MRI, and pregnant women are not eligible.
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This research aims to evaluate a digital treatment combining an iPad-based cognitive training program called AKL-T01 with metacognitive strategy coaching to improve executive dysfunction, depression symptoms, and daily function in individuals who have experienced a stroke. The study focuses on those with post-stroke depression and executive dysfunction, conditions linked to ongoing mood and cognitive challenges. Researchers will assess whether this combined treatment enhances brain connectivity and overall functioning compared to a control group. Participants in the intervention group will use the AKL-T01 program for 25 minutes a day, five days a week, over six weeks. This program involves multitasking exercises in a video game-like environment using an iPad. Alongside this, they will receive weekly 45-minute coaching sessions with a clinician to reflect on their experiences and develop strategies for daily activities. The control group will engage in general cognitive games on the iPad for the same duration and frequency, also paired with similar coaching sessions. Throughout the study, participants will undergo assessments at the start and end of the six-week treatment period. These include tests measuring executive function, depression symptoms, daily functioning, and brain connectivity through MRI scans. Researchers will monitor adherence to the treatment and evaluate changes using standardized tools such as the Oral Symbol Digit Modalities Test, Montgomery Asberg Depression Rating Scale, and resting state functional MRI. The total study duration for each participant is six weeks.
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Researchers are evaluating the effectiveness of a smart upper limb rehabilitation system combined with exoskeleton robot devices and an Internet of Things IoT application for home-based training in patients recovering from stroke and those with spinal cord injuries. The study aims to improve motor function, daily living activities, and quality of life by remotely monitoring rehabilitation progress and assisting patient movements. Participants are adults aged 20 to 79 years with specific cognitive and physical criteria depending on their condition. Participants are randomly assigned to one of two groups the TIGER group, which uses a tenodesis-induced-grip exoskeleton robot system, or the TOT group, which receives task-oriented training. Each group follows a home-based training program for 4 weeks. For stroke patients, training is 30 minutes twice daily, 5 days a week for spinal cord injury patients, training is 40 minutes once daily, 5 days a week. The TIGER system offers passive range of motion warm-up and functional training, while the TOT group practices sensorimotor techniques and functional tasks. Participants will undergo assessments before and after the intervention, including motor function tests like the Fugl-Meyer Assessment and Box and Block Test, range of motion measurements, and quality of life evaluations. Researchers will monitor progress in motor activity, independence, and satisfaction with assistive technology. The total study duration spans from baseline through 4 weeks of training, with outcome measures collected at baseline and after the intervention period.
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Researchers are studying brain activation patterns in stroke patients during mirror movement to understand upper limb function. This observational study focuses on patients who have had their first stroke, either cerebral infarction or cerebral hemorrhage, with specific muscle strength and muscle tone conditions. The study takes place in a hospital rehabilitation ward where patients receive detailed information and provide informed consent before participation. The study involves two types of hand movements mirror image and healthy hand movement. In the mirror image intervention, patients place their affected hand in a mirror box and observe the reflection of the healthy hand moving, imagining the affected hand performing the same actions. In the healthy hand movement intervention, patients quickly open and grasp their healthy hand while focusing on the affected hand. The primary outcome is brain activation measured by functional near-infrared spectroscopy fNIRS after one week of hand function rehabilitation training. Participants will be closely monitored throughout the trial with full communication and support from the research team. The study involves observing brain activation and hand movement activity with attention to patients questions and responses. The total participation period includes the initial week of rehabilitation training followed by assessments to measure the brains response to the interventions.
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Researchers are investigating neural biomarkers that may help track and predict recovery of movement and walking ability in patients after a stroke. This study focuses on both natural walking and enhanced therapy using a robotic device. Understanding these biomarkers could improve personalized rehabilitation and recovery outcomes for stroke survivors who often face long-term motor impairments like difficulty walking and balance problems. The study involves training stroke patients with an overground wearable robotic device across 12 treatment sessions. Evaluations occur before treatment, after the 12 sessions, and one month later. During the first and last sessions, brain and muscle activity, as well as ground reaction forces, are recorded using EEG, EMG, and force sensors to monitor progress and interaction with the robotic device. Participants will undergo motor and cognitive assessments commonly used in clinical practice at multiple time points. Researchers will measure motor outcomes from enrollment through the end of treatment at 4 weeks and at a 4-week follow-up. The study aims to gather detailed data on brain-muscle connectivity and mobility improvements to better understand and optimize robotic gait rehabilitation after stroke.
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This research aims to evaluate intravenous thrombolysis treatments given beyond the usual time window for people who have experienced an acute ischemic stroke. The study is observational and collects data from multiple centers to better understand outcomes for patients treated between 4.5 and 24 hours after stroke onset. It focuses on comparing two thrombolytic agents, Alteplase and Tenecteplase, for stroke management in this extended time frame. Participants received either Alteplase or Tenecteplase within 4.5 to 24 hours after the stroke symptoms began. The study groups consist of those treated with Alteplase and those treated with Tenecteplase, and researchers observe the effects without assigning treatments themselves. This retrospective design allows gathering clinical data on the timing and type of thrombolysis used in real-world settings. During the study, researchers review clinical information such as modified Rankin Scale mRS scores and National Institutes of Health Stroke Scale NIHSS scores at specific time points, including 24 hours and 90 days after treatment. They measure functional outcomes, mortality rates, and risks like symptomatic intracranial hemorrhage. This data collection helps assess recovery and safety profiles of the treatments over time, with a focus on long-term outcomes at about three months after stroke onset.
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