Shockwaves to the neck: new device aims to make artery stenting safer
NCT ID NCT07512128
First seen Jun 24, 2026 · Last updated Jul 31, 2026 · Updated 2 times
Summary
This study tests a device that uses sound waves (lithotripsy) to break up calcium buildup in the carotid arteries—the main arteries in the neck—before placing a stent to keep them open. The goal is to see if this approach reduces complications like stroke, heart attack, or death within 30 days. About 185 adults with calcified carotid arteries will be enrolled at multiple centers.
What this could mean
Our plain-language read of the trial. This is informational only, not medical advice or a prediction.
- Active substance
- Shockwave SkyRunner Carotid Intravascular Lithotripsy (IVL) Catheter
- What this could lead to
- If successful, this could provide a safer way to treat hardened neck arteries before placing a stent, potentially lowering the risk of stroke or heart attack during the procedure.
- What could go wrong
- This is an early-stage, single-arm study with no comparison group, so results may not prove the device is better than standard care. Risks include stroke, heart attack, or death from the procedure itself.
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
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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
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About 185 people
The number the study aims to enrol. It can still change while the study runs.
- Expected to start
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Jul 2026
An estimate. Start dates often move.
- Expected to finish
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Dec 2032
An estimate. End dates often move.
- Lead sponsor
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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
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18 years and older
- Sex
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Anyone
- Healthy volunteers
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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.
General Inclusion Criteria: 1. Age ≥ 18 years. 2. Patient is able and willing to comply with all assessments in the study. 3. Patient has been informed of the nature of the study, agrees to participate and has signed the approved informed consent form. 4. Patient approved for inclusion by a Patient Screening Committee. 5. Patient must have a life expectancy \> 1 year at the time of the index procedure, in the opinion of the investigator at the time of enrollment, with no planned major cardiac intervention or surgery within 30 days following the index procedure. Angiographic Inclusion Criteria: 6. Patient has a discrete lesion located in the internal carotid artery (ICA) with or without involvement of the carotid bifurcation. 7. Target lesion must meet all requirements for commercially available trans-femoral stent systems (refer to IFU for requirements) and investigator intends to treat the target lesion with a single stent. 8. Patient must meet one of the following criteria regarding neurological symptom status and degree of stenosis by duplex ultrasound in combination with CT or MR angiography: 1. Symptomatic: ≥ 50% stenosis of the internal carotid artery and the patient has a history of stroke, TIA and/or amaurosis fugax within 180 days of the procedure ipsilateral to the carotid artery to be treated. OR 2. Asymptomatic: ≥ 70% stenosis of the internal carotid artery without any neurological symptoms. 9. Patient has evidence of circumferential calcification of the stenotic lesion defined as ≥ 3 mm thickness of calcification as determined by Computed Tomography Angiography (CTA). MR angiography may be used in place of CTA for patients with a relative or absolute contraindication to CTA. 10. Patient is high risk for CEA defined as meeting at least one anatomic or clinical high-risk condition listed below: Anatomic High Risk Inclusion Criteria: * Target lesion at or above C2 (level of jaw) or below the clavicle * Inability to extend the head due to cervical arthritis or other cervical disorders * History of radiation treatment to the neck or radical neck dissection * Prior head and neck surgery in the region of the carotid artery * Spinal immobility of the neck * Tracheostomy or tracheostoma * Hostile neck or surgically inaccessible lesion * Laryngeal palsy or laryngectomy * Severe tandem lesions (total length must be ≤ 30 mm and must be covered with one stent) * Occlusion of the contralateral CCA or ICA * Severe bilateral ICA stenosis Clinical High-Risk Inclusion Criteria * Patient is ≥ 70 years of age. * Patient has congestive heart failure (CHF) - New York Heart Association (NYHA) Functional Class III or IV. * Patient has severe pulmonary disease (COPD) with either FEV \< 50% predicted or chronic oxygen therapy or resting PO2 of \< 60 mmHg (room air). * Patient has a history of angina Canadian Cardiovascular Society (CCS) class 3 or 4 or unstable angina. * Patient has known severe left ventricular dysfunction LVEF \< 30%. * Patient had a myocardial infarction \> 72 hours and \< 6 weeks prior to procedure. * Coronary artery disease with two or more vessels with ≥ 70% stenosis. * Planned coronary artery bypass grafting (CABG) or valve replacement surgery between 31 and 60 days after index procedure. * Patient has permanent contralateral cranial nerve injury/paralysis. * Patient has chronic renal insufficiency (serum creatinine ≥ 2.5 mg/dL). Note that patients on dialysis are excluded from study consideration per exclusionary criterion #13. * Planned abdominal aortic aneurysm repair or peripheral vascular surgery between 31 to 60 days after index procedure. General Exclusion Criteria: 1. Patient has alternative source of cerebral embolus, including but not limited to: 1. a history of chronic atrial flutter or atrial fibrillation, or paroxysmal atrial flutter or atrial fibrillation requiring chronic anticoagulation 2. knowledge of cardiac sources of emboli (e.g. left ventricular aneurysm, intracardiac filling defect, cardiomyopathy, aortic or mitral prosthetic heart valve, hemodynamically significant aortic stenosis, endocarditis, mitral stenosis, or left atrial myxoma) 3. recently (\< 60 days) replaced/repaired heart valve (either surgically or percutaneously). 2. Patient has a history of spontaneous intracranial hemorrhage within the past 12 months, a hemorrhagic transformation of an ischemic stroke within the past 60 days or has had a recent stroke (\< 7 days) of sufficient size (on CT or MRI) to place the patient at risk of hemorrhagic conversion during the procedure. 3. Patient with a history of major stroke with substantial neurological deficit (NIHSS ≥ 5 or mRS ≥ 3) within 1 month of index procedure. 4. Patient has had a TIA, or amaurosis fugax within 48 hours prior to the procedure. 5. Patient has neurologic illnesses within the past 2 years characterized by fleeting or fixed neurologic or cognitive deficit which cannot be distinguished from TIA or stroke. 6. Patient has an intracranial tumor. 7. Patient has an unresolved/uncorrected bleeding disorder. 8. Patient had a myocardial infarction (MI) within last 72 hours prior to index procedure. 9. Patient has history of intolerance or allergic reaction to contrast material that cannot be adequately premedicated or to any of the required study medications (i.e., antiplatelet agents, statins) or device materials (refer to IFUs). 10. Female patients who are pregnant, nursing, or may become pregnant. 11. Patient is participating in another research study involving an investigational agent (pharmaceutical, biologic, or medical device) that has not reached its primary endpoint. 12. Patient has other medical, social, or psychological problems that, in the opinion of the investigator, would present difficulty in complying with protocol requirements. 13. Patient is on renal replacement therapy (i.e., dialysis). Angiographic Exclusion Criteria: 14. Presence of a previously placed intravascular stent in the target vessel or ipsilateral CCA. 15. A significant CCA inflow or distal/intracranial lesion. 16. Occlusion (TICI 0) or "string sign" \> 1 cm of the ipsilateral common or internal carotid artery. 17. An intraluminal filling defect consistent with thrombus. 18. Presence of extensive or diffuse atherosclerotic disease involving the aortic arch or proximal common carotid artery that would preclude the safe introduction of the study device. 19. Cerebral aneurysm, symptomatic or \> 5 mm or AVM (arteriovenous malformation) of the cerebral vasculature. 20. Massive exophytic (mushroom-like) or irregular endoluminal calcification seen on CTA or fluoroscopy. 21. Failure to successfully cross the guidewire across the target lesion; successful crossing defined as tip of the guidewire distal to the target lesion. 22. Type III or Bovine aortic arch anatomy. 23. Angulation or tortuosity (≥ 90 degree) of the innominate and common carotid artery (CCA) that precludes safe, expeditious sheath placement or that will transmit a severe loop to the internal carotid after sheath placement.
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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.
How to take part
Only the study team decides who joins. These are the ways to reach them.
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The places running it
25 sites. The list below names each one and where it is.
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The official record
ClinicalTrials.gov lists the study team's own contact details, including names and phone numbers. We don't republish those.
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A doctor treating you
A doctor who knows your case can contact a study site on your behalf, and can tell you whether this study is worth pursuing at all.
Contacts and locations
Locations
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Ascension Sacred Heart
Pensacola, Florida, 32504, United States
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Ascension St. Vincent's
Jacksonville, Florida, 32204, United States
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Baptist Health Research Institute
Jacksonville, Florida, 32207, United States
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Baylor Scott & White Plano
Plano, Texas, 75093, United States
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Cleveland Clinic
Cleveland, Ohio, 44195, United States
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HCA HealthOne Swedish
Aurora, Colorado, 80012, United States
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Houston Methodist
Houston, Texas, 77030, United States
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Lexington Health
West Columbia, South Carolina, 29169, United States
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Main Line Health System
Wynnewood, Pennsylvania, 19096, United States
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Mercy South Hospital
St Louis, Missouri, 63128, United States
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Mount Sinai
New York, New York, 10029, United States
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NC Heart and Vascular
Raleigh, North Carolina, 27607, United States
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North Central Heart, Avera Heart Hospital
Sioux Falls, South Dakota, 57108, United States
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Pulse Institute
Scottsdale, Arizona, 85258, United States
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St. Francis Hospital & Heart Center
Roslyn, New York, 11576, United States
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Stern Cardiovascular Center
Germantown, Tennessee, 38138, United States
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Tennova Healthcare
Knoxville, Tennessee, 37934, United States
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The Miriam Hospital
Providence, Rhode Island, 02906, United States
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UT MD Anderson Cancer Center
Houston, Texas, 77030, United States
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University of Buffalo Neurosurgery
Buffalo, New York, 14203, United States
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University of Oklahoma Health Sciences Center
Oklahoma City, Oklahoma, 73104, United States
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WakeMed
Raleigh, North Carolina, 27610, United States
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Wellmont Cardiology Services - CVA Heart Institute
Kingsport, Tennessee, 37660, United States
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Wellstar Kennestone Hospital
Marietta, Georgia, 30060, United States
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Willis-Knighton
Shreveport, Louisiana, 71103, United States
More trials for these conditions
Other studies related to the condition(s) this trial covers.
- Can a forehead light sensor spot hidden brain oxygen drops during carotid surgery?
- Could a stent double the chance of a good recovery after severe stroke?
- New PET tracer could spot dangerous plaques before they cause strokes
- Neck scan could predict heart attacks in arthritis patients
- Shorter blood thinner course may be safer after carotid stenting for High-Risk patients
- Blood test may predict stroke after carotid surgery