New device aims to clear stroke clots faster and safer
NCT ID NCT05714501
First seen Jun 27, 2026 · Last updated Jul 10, 2026 · Updated 1 time
Summary
This study tested a new device called the Millipede System in 246 stroke patients with large blood clots in the brain. The device is designed to remove clots and restore blood flow. Researchers measured how often blood flow was successfully restored and tracked any side effects. The goal was to see if the device is safe and effective for treating acute ischemic stroke.
What this could mean
Our plain-language read of the trial. This is informational only, not medical advice or a prediction.
- Active substance
- Millipede System (a medical device used to remove blood clots from brain arteries)
- What this could lead to
- If successful, this device could offer a more effective and safer way to restore blood flow in stroke patients, potentially improving recovery and reducing disability.
- What could go wrong
- This is a completed early-stage study without a control group, so results may not prove superiority over existing treatments. Risks include bleeding or other complications from the procedure.
This is an AI summary of the original study and may miss details. Read our disclaimer.
Study facts
What this study's own registry entry says, in plain language.
- Phase
-
Not a phased trial
Phase numbers describe drug development. The registry uses this when they do not apply, as it does for trials of devices, procedures or behaviour changes, and for observational studies.
- Participants
-
235 people
The number who actually took part.
- Started
-
Oct 2023
- Finished
-
May 2025
- Lead sponsor
-
A company
The lead sponsor is a pharmaceutical, biotech, or medical-device company.
Who can take part
This study's own entry requirements. Only the study team can say for certain whether you qualify.
- Ages
-
18 to 85 years
- Sex
-
Anyone
- Healthy volunteers
-
Not accepted
This study is not open to healthy volunteers. The entry requirements below say who it is open to.
Show the full entry requirements Hide the full entry requirements
Copied word for word from the study's registry entry, so the wording is the study team's rather than ours.
Inclusion Criteria: 1. Subjects aged ≥ 18 and ≤ 85 years. 2. Pre-stroke mRS score of ≤ 1. 3. Baseline NIHSS score of ≥ 6. 4. A new focal disabling neurologic deficit consistent with acute cerebral ischemia. 5. Evidence of a large vessel occlusion of the intracranial ICA (including T or L occlusions), the M1 or M2 segments of the MCA, the intracranial vertebral artery, or the basilar artery on magnetic resonance angiography (MRA) or computed tomography angiography (CTA). 6. Subject belongs to one of the following subgroups: 1. Subject is ineligible for thrombolytic therapy, OR 2. Subject is eligible for thrombolytic therapy and thrombolytic therapy was administered without delay and per current practice guidelines. 7. For strokes in the anterior circulation, the following imaging criteria should be met: 1. Magnetic Resonance Imaging (MRI) criterion: volume of diffusion restriction visually assessed as ≤ 50 mL, or Alberta Stroke Program Early CT Score (ASPECTS) 6-10; OR 2. Computed Tomography (CT) criterion: Alberta Stroke Program Early CT Score (ASPECTS) 6-10 on baseline CT or Computed Tomography Angiography (CTA)- source images, or volume of significantly lowered relative Cerebral Blood Flow (rCBF) \<30% (volume of ≤ 50 mL if CT perfusion is performed). 8. For strokes in the posterior circulation, the following imaging criterion should be met: pcASPECTS score 8 to 10 on baseline CT, CTA-source images, or Diffusion- Weighted Imaging (DWI) MRI. 9. The interventionalist estimates that arterial puncture can be completed within 8 hours of onset/last known well. 10. Informed consent obtained in accordance with the applicable country-specific regulations and as approved by the IRB/ REC. 11. Angiographic confirmation of a single large vessel occlusion (mTICI of 0-1) of the intracranial ICA (including T or L occlusions), the M1 or M2 segments of the MCA, the intracranial vertebral artery, or the basilar artery that is accessible to the Millipede System. Exclusion Criteria: 1. Known previous stroke within the past 3 months. 2. Females who are known to be pregnant or breastfeeding. 3. In the Investigator's opinion, any known comorbidity (including COVID-19) that may complicate treatment or prevent improvement or follow-up. 4. Subject currently participating in or has previously participated in another trial involving an investigational device or drug within 30 days of enrollment. 5. Known history of severe contrast allergy. 6. Pre-existing neurological or psychiatric disease that would confound the neurological or functional evaluation. 7. Life expectancy of less than 6 months prior to stroke onset. 8. Known cocaine use at time of treatment. 9. Known history of coagulation factor deficiency or oral anti-coagulant therapy with an International Normalized Ratio (INR) of more than 3.0. 10. Known history of treatment with heparin within 48 hours with a Partial Thromboplastin Time (PTT) more than two times the laboratory normal. 11. Known history of treatment with a direct thrombin inhibitor within 48 hours with a PTT more than 1.5 times the laboratory normal. 12. Known glucose level\< 50 mg/dl (2.78 mmol/L) or \> 400 mg/dl (22.20 mmol/L). 13. Known platelet count \<50,000/µL. 14. Clinical history, past imaging or clinical judgement suggest that the intracranial occlusion is chronic. 15. For all patients, severe sustained hypertension with SBP \>220 mmHg and/or DBP \>120 mmHg; for patients treated with thrombolytic therapy, sustained hypertension despite treatment with SBP \>185 mmHg and/or DBP \> 110 mmHg. 16. Renal failure with serum creatinine ≥3 mg/dL or Glomerular Filtration Rate (GFR) \<30 mL/min. 17. Ongoing seizure due to stroke. 18. Initially treated with intra-arterial thrombolytics or a different neurothrombectomy device before use of the Millipede System. 19. Clinical symptoms of bilateral stroke or stroke in multiple territories. 20. Known history of cerebral vasculitis. 21. Evidence of active systemic infection (e.g. septicemia). Exceptions: common cold, hepatitis B virus (HBV), hepatitis C virus (HCV). 22. Any known hemorrhagic or coagulation deficiency. 23. Evidence of current intracranial hemorrhage on imaging. 24. Significant mass effect with midline shift. 25. Known arterial condition in a proximal vessel that requires treatment or prevents access to the site of occlusion or safe recovery of the investigational device (for example, severe stenosis, complete occlusion in the cervical ICA, tandem occlusion). 26. Suspicion or evidence of aortic dissection, septic embolus, or bacterial endocarditis. 27. Evidence of dissection in the extracranial or intracranial cerebral arteries. 28. Excessive arterial tortuosity that may preclude device placement as determined by CTA/Magnetic Resonance Angiography (MRA) and/or conventional angiography. 29. Evidence of multiple vascular occlusions (e.g., bilateral anterior circulation, anterior/posterior circulation, concurrent occlusions in the anterior cerebral artery (ACA) and MCA, other concurrent ipsilateral occlusions in the same or different territories). 30. CT or MRI showing mass effect or intracranial tumor (apart from small meningioma, ≤ 2 cm in diameter). 31. Known cancer with metastases. 32. Known aneurysm at or near the target treatment segment. 33. Angiographic evidence of known or suspected underlying intracranial vasculopathy or atherosclerotic lesions responsible for the target occlusion
Get updates
Get notified about this study
Sign up to get updates when this study changes or when new studies for Acute ischemic stroke are added.
Genom att skicka in godkänner du våra Användarvillkor
Conditions
The condition(s) this trial relates to.
As listed by the trial registrant
The condition terms exactly as the trial's registrant entered them.
Contacts and locations
Locations
-
Baptist Health Research Institute
Jacksonville, Florida, 32207, United States
-
CHRU Strasbourg
Strasbourg, 67200, France
-
CHRU de Nancy
Nancy, France
-
CHU Bordeaux
Bordeaux, 33076, France
-
CHU Montpellier
Montpellier, France
-
CHU de Nantes - HGRL
Nantes, 44093, France
-
Emory
Atlanta, Georgia, 30322, United States
-
Hospital Universitario La Paz
Madrid, 28046, Spain
-
Mercy Health
Toledo, Ohio, 43608, United States
-
Oregon Health & Science University (OHSU)
Portland, Oregon, 97239, United States
-
ProMedica Toledo Hospital
Toledo, Ohio, 43606, United States
-
Semmes Murphey Foundation
Memphis, Tennessee, 38120, United States
-
Stony Brook University Hospital
Stony Brook, New York, 11794, United States
-
Tampa General Hosital
Tampa, Florida, 33612, United States
-
Toulouse University Hospital -CHU Purpan
Toulouse, France
-
UT Houston
Houston, Texas, 77225, United States
-
University Of Rochester Medical Center (URMC)
Rochester, New York, 14620, United States
-
University of Chicago
Chicago, Illinois, 60637, United States
-
University of Pittsburgh Medical Center (UPMC)
Pittsburgh, Pennsylvania, 15213, United States
-
University of Toledo
Toledo, Ohio, 43614, United States
-
Vall d'Hebron
Barcelona, Spain
-
Valley Baptist Medical Center
Harlingen, Texas, 78550, United States
-
Yale University Hospital
New Haven, Connecticut, 06510, United States
More trials for these conditions
Other studies related to the condition(s) this trial covers.
- Can a kidney protein drug boost stroke recovery after clot removal?
- Can PET scans reveal hidden heart inflammation after a stroke?
- Can an implanted heart monitor catch hidden irregular heartbeats after stroke?
- China builds national watchdog for brain blood vessel devices
- Cancer patients face a hidden Second-Stroke threat, and 24 hospitals are mapping it
- Can a stent retriever plus suction clear stroke clots faster?