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Augmenting Cerebral Blood Flow in Acute Ischemic Stroke

Augmenting Cerebral Blood Flow Using a Novel Combined Treatment Approach in Patients With Ischemic Stroke: Protocol Development

Status
Not yet recruiting
Phases
Phase 1Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06911385
Enrollment
150
Registered
2025-04-04
Start date
2026-09-15
Completion date
2027-05-31
Last updated
2026-08-13

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Stroke

Keywords

Remote ischemic conditioning, Pneumatic Lower limb Compression, Stroke, Cerebral blood flow, Functional near infrared spectroscopy

Brief summary

The most common type of stroke is ischemic (lack of blood flow to the brain due to a clot blocking a blood vessel). Time is brain and an average of 1.9 million brain nerve cells per minute are destroyed in patients experiencing a typical LVO. The main goal of treatment is to help restore blood flow as quickly as possible and prevent brain tissue and cell death. Acute treatments like clot-busting medication or clot removal by wire are standard of care but are available in comprehensive stroke centers in a few urban centers. Often, patients need to be transferred to these centers via ground or air ambulance, sometimes over hours, and no active treatment can be provided during these transfers. Enhancing or increasing blood flow to the brain is associated with good outcomes in stroke. This study involves an innovative approach combining two treatment interventions - Remote ischemic conditioning (arms) and Air compression therapy (legs, applied simultaneously to all four limbs, that may help improve blood flow to the brain. Remote Ischemic Conditioning is a type of treatment delivered with the help of a regular blood pressure machine. This does not involve any drug. A typical treatment involves the application of a blood pressure cuff followed by brief sessions of compressions and relaxation on the arm muscles, much akin to blood pressure measurement, but for 5 min. It leads to a transient safe state of less blood flow in arm muscles which initiates the release of molecules and signals transmitted by blood. These signals may then go on to improve blood flow in the brain. Air Compression is delivered by a commercially available device (Normatech Elite). They are inflatable sleeves resembling puffy thigh-high boots that deliver compressive pulses stimulating blood flow in the legs, in a graded manner from the ankles to the thighs. We believe this air compression device may help improve and divert blood flow to stroke-affected areas in the brain.

Interventions

DEVICEArm Remote Ischemic Conditioning plus Pneumatic Compression lower limb

Arm Remote Ischemic Conditioning (4 cycles) plus Pneumatic Compression lower limb (100 mmHg for 1 hour)

Sponsors

University of Alberta
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

1. Age \> 18 years 2. Both male and female participants will be included 3. History of Stroke Symptoms 4. Baseline modified Rankin scale score \< 2 5. Participant or substitute decision-maker able to provide informed consent.

Exclusion criteria

1. Injury to the upper arms, lower limbs (from ankles to thighs), or any other musculoskeletal disability/pain that precludes tolerating RIC and/or Pneumatic compression therapy. 2. History of dermatological conditions affecting application of RIC cuff with tissue perfusion sensor and pneumatic compression boots. 3. History of peripheral arterial disease 4. Treatment of ongoing malignancy with expected survival \< 6 months 5. Presence of hypertensive urgency and emergency 6. Presence of hemodynamic instability and ongoing pulmonary edema 7. Presence of clinical or imaging signs of raised intracranial, intrathoracic, and /or intra-abdominal pressure. 8. Presence of ongoing systemic infection with antibiotic therapy 9. Pregnant and lactating women 10. Participant not part of other clinical intervention trial

Design outcomes

Primary

MeasureTime frameDescription
Feasibility of intervention completionEnd of intervention at 1 hourThe primary outcome measure is the feasibility of intervention completion as assessed by proportion of patients able to complete the treatment protocol including pre-treatment assessment, intervention, and post-treatment assessment.

Secondary

MeasureTime frameDescription
Tolerability of interventionEnd of intervention at 1 hourThe secondary outcome measure is tolerability of intervention as assessed by the 5-point Likert scale (1 Very comfortable, 2 Comfortable, 3 neither comfortable nor uncomfortable, 4 uncomfortable, 5 very uncomfortable).
Change in cortical oxygenation contentEnd of intervention at 1 hourThe secondary physiological outcome measure is change in cortical oxygenation content as assessed by continuous wave-fNIRS before and after treatment.
Feasibility of ease of delivery of the interventionEnd of intervention at 1 hourThe secondary feasibility outcome measure is ease of delivery of the intervention individual patients by study team member as assessed by 5-point Likert scale (1-very easy, 2-easy, 3-neither easy nor difficult, 4-difficult and 5-very difficult).

Contacts

CONTACTEmmanuella Osuji, PMP, MSc
osuji@ualberta.ca780-492-4137
PRINCIPAL_INVESTIGATORMahesh Kate, MD, DM

University of Alberta

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 14, 2026