Percutaneous Transluminal Angioplasty and Stenting Using an Aspiration Catheter
Nobuaki Yamamoto1,2, Yuki Yamamoto1, Izumi Yamaguchi
1Department of Neurology, Tokushima University Hospital, Tokushima, Tokushima, Japan.
Insights
Aspiration catheters (AC) offer a solution for preventing distal embolization during percutaneous transluminal angioplasty (PTA) when guiding catheter placement is challenging. These cases demonstrate AC
Area of Science:
- Neuroendovascular procedures
- Cerebrovascular interventions
- Interventional neuroradiology
Background:
- Percutaneous transluminal angioplasty (PTA) is used for vertebral artery stenosis.
- Preventing distal embolism during PTA is crucial.
- Aspiration catheters (AC) can be used for mechanical thrombectomy.
Observation:
- Two cases of intracranial vertebral artery PTA are presented.
- An AC was used as an intermediate catheter for thrombectomy and aspiration.
- Challenging anatomy made guiding catheter placement difficult in both cases.
Findings:
- PTA and stenting were performed for vertebral artery stenosis using an AC.
- Mechanical thrombectomy was performed via the AC for basilar artery occlusion.
- Both procedures were completed without complications, utilizing manual aspiration through the AC.
Implications:
- Aspiration catheters can be a valuable tool when guiding catheter placement is difficult during PTA.
- ACs can effectively prevent distal embolization in complex neurovascular cases.
- This technique facilitates safe and effective treatment of intracranial atherosclerotic lesions.
Objective:
During percutaneous transluminal angioplasty (PTA) for the vertebral artery, occlusion of the subclavian artery using a balloon guiding catheter may be useful to prevent embolism of clots and/or debris distal to an atherosclerotic lesion. However, when placing a balloon guiding catheter at the intended vessels is difficult, it may be useful to use an aspiration catheter (AC) for mechanical thrombectomy as an intermediate catheter to suction way clots and/or debris. We report two cases in which PTA was performed for an atherosclerotic lesion at the intracranial vertebral artery using an AC, which ended without complications.
Case Presentations:
Case 1: A 74-year-old man presented with dysarthria and was admitted to our hospital. MRI revealed severe left vertebral artery stenosis and diffuse cerebral infarct areas at the territory of the posterior circulation. The patient had an abdominal aortic aneurysm and abnormally shaped left tortuous subclavian artery. Therefore, we performed PTA and stenting via the left brachial artery. We guided a 6-Fr long sheath to the left subclavian artery, and a 6-Fr AC for thrombectomy was guided through the long sheath to the V4 portion of the left vertebral artery. Thereafter, PTA was carried out under manual aspiration from the AC. As restenosis at the atherosclerotic lesion occurred after PTA, we performed stenting using a coronary stent system for this lesion under manual aspiration from the AC. No new infarct areas were observed on post-procedural MRI. Case 2: A 74-year-old woman presented with dysarthria and was admitted to our hospital. MRI demonstrated basilar artery occlusion and diffuse cerebral infarct areas at the territory of the posterior circulation. As her symptom worsened after admission, we performed urgent mechanical thrombectomy. We first performed thrombectomy using a stent retriever and then performed PTA and stenting (PTAS) for residual basilar artery stenosis via the AC under manual aspiration.
Conclusion:
When it is difficult to place a guiding catheter at the intended vessels during PTA, an AC may be useful to prevent distal embolization.
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