Related Experiment Videos
Unruptured intracranial vertebral artery dissection. Clinical course and serial radiographic imagings
1Department of Neurosurgery, Dokkyo University School of Medicine, Tochigi, Japan.
Insights
Intracranial vertebral artery dissection appears benign, with most patients recovering well. Spontaneous angiographic cure is common, though some cases may require intervention for persistent aneurysms.
Area of Science:
- Neurology
- Vascular Neurology
- Neuroradiology
Background:
- Intracranial vertebral artery dissection is an emerging cause of stroke.
- Limited understanding exists regarding its natural history and clinical presentation.
- Established management protocols are lacking.
Purpose of the Study:
- To elucidate the clinical course of intracranial vertebral artery dissection.
- To determine optimal management strategies for this condition.
Main Methods:
- Retrospective review of 11 patients (13 lesions) from 1990-1996.
- Exclusion of trauma and subarachnoid hemorrhage cases.
- Clinical and radiographic assessment, including MRI and MR angiography.
Main Results:
- 90% of patients achieved good recovery; 2 experienced recurrent ischemic attacks.
- Angiographic "string sign" resolved or progressed to occlusion in follow-up.
- Complete occlusions and aneurysmal dilations remained stable.
- MRI identified intramural thrombus and intimal flaps; MR angiography detected pseudolumen/dilatation.
Conclusions:
- Unruptured intracranial vertebral artery dissection has a generally benign natural history.
- A high rate (62%) of spontaneous angiographic cure was observed.
- Persistent aneurysmal dilatation may be treated with intravascular coil embolization.
Background And Purpose:
Intracranial vertebral artery dissection is an increasingly recognized cause of stroke. However, little is known about its natural history and clinical manifestations, and appropriate management protocol has not yet been established. This study was performed to clarify its clinical course and determine the best management protocol.
Methods:
This study is a retrospective clinical and radiographic review of 11 patients with 13 lesions who presented between 1990 and 1996. Patients with a history of trauma and those who presented with subarachnoid hemorrhage were excluded. The 11 patients comprised seven men and four women, who ranged in age from 34 to 71 years, with a mean age of 47 years. Ten patients presented with ischemic symptoms.
Results:
Although recurrent ischemic attacks were observed in two patients, most (90%) subsequently made a good recovery and returned to their previous lifestyle. Five arteries showed the typical "string sign" or "pearl and string sign" on initial angiography. They changed in the follow-up examinations, which demonstrated either resolution of the stenosis or progression to complete occlusion. In contrast, the angiographic signs of complete occlusion (three arteries) or aneurysmal dilatation without luminal stenosis (four arteries) remained unchanged during the observation period of 5 months to 2.5 years. MRI was a sensitive tool for diagnosing intracranial vertebral artery dissection; intramural thrombus and intimal flap were the two major findings. MR angiography was also useful for demonstrating abnormalities of the arterial signal column such as pseudolumen or aneurysmal dilatation.
Conclusions:
The natural history of unruptured intracranial vertebral artery dissection seems relatively benign, with a high probability (62%) of spontaneous angiographic cure. Some persistent aneurysmal dilatation may be amenable to intravascular coil embolization.