1990•PubMedRequires access

Cerebral angiography and ultrasonic quantitative flow measurement of common carotid artery in patients with cerebral infarction.

Satoshi Imamura, Hiroshi Sugihara, Kihei Yoneyama, Kayoko KAWANA, Nobuyoshi Narita, M Senbo, H Kamo, Tsutomu Kamo, Tooru Shimizu

Open publisher page 0 citations

Abstract

Blood flow rate and velocity in the common carotid artery were measured with an ultrasonic quantitative flow measurement (QFM) system and cerebral angiography was performed in 98 patients about four weeks after the onset of cerebral infarction. Angiography revealed complete occlusion in 13 patients (CO group), visible stenosis in 45 patients (S group), and no apparent stenosis in 40 patients (N group). In the CO group, damaged-side blood flow (DF; 4.80 ml/sec) and velocity (DV; 10.5 cm/sec) were significantly lower (P less than 0.01) than intact-side blood flow (7.19 ml/sec) and velocity (14.86 cm/sec). Both DF and DV were significantly lower in group CO than group S (7.55 ml/sec and 15.04 cm/sec) and in group S than group N (9.32 ml/sec and 18.07 cm/sec). Degree of stenosis in the internal carotid and middle cerebral arteries was significantly associated with reduced DF (P less than 0.05). Of the 24 patients with a mean DF of under 6.5 ml/sec, 15 had stenosis of 75% or more; of the 74 patients with a mean DF of 6.5 ml/sec or more, 66 had stenosis of less than 25%. The results indicate that blood flow determined by QFM reflects the degree of occlusion or stenosis in the intracranial trunk arteries and may thus provide a practical, noninvasive method of assessing the severity of cerebrovascular lesions.

About this research paper

What this paper is about

Blood flow rate and velocity in the common carotid artery were measured with an ultrasonic quantitative flow measurement (QFM) system and cerebral angiography was performed in 98 patients about four weeks after the onset of cerebral infarction. Angiography revealed complete occlusion in 13 patients (CO group), visible stenosis in 45 patients (S group), and no apparent stenosis in 40 patients (N group). In the CO group, damaged-side blood flow (DF; 4.80 ml/sec) and velocity (DV; 10.5 cm/sec) were significantly lower (P less than 0.01) than intact-side blood flow (7.19 ml/sec) and velocity (14.86 cm/sec). Both DF and DV were significantly lower in group CO than group S (7.55 ml/sec and 15.04 cm/sec) and in group S than group N (9.32 ml/sec and 18.07 cm/sec). Degree of stenosis in the internal carotid and middle cerebral arteries was significantly associated with reduced DF (P less than 0.05). Of the 24 patients with a mean DF of under 6.5 ml/sec, 15 had stenosis of 75% or more; of the 74 patients with a mean DF of 6.5 ml/sec or more, 66 had stenosis of less than 25%. The results indicate that blood flow determined by QFM reflects the degree of occlusion or stenosis in the intracranial trunk arteries and may thus provide a practical, noninvasive method of assessing the severity of cerebrovascular lesions.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Blood flow rate and velocity in the common carotid artery were measured with an ultrasonic quantitative flow measurement (QFM) system and cerebral angiography was performed in 98 patients about four weeks after the onset of cerebral infarction. Angiography revealed complete occlusion in 13 patients (CO group), visible stenosis in 45 patients (S group), and no apparent stenosis in 40 patients (N group). In the CO group, damaged-side blood flow (DF; 4.80 ml/sec) and velocity (DV; 10.5 cm/sec) were significantly lower (P less than 0.01) than intact-side blood flow (7.19 ml/sec) and velocity (14.86 cm/sec). Both DF and DV were significantly lower in group CO than group S (7.55 ml/sec and 15.04 cm/sec) and in group S than group N (9.32 ml/sec and 18.07 cm/sec). Degree of stenosis in the internal carotid and middle cerebral arteries was significantly associated with reduced DF (P less than 0.05). Of the 24 patients with a mean DF of under 6.5 ml/sec, 15 had stenosis of 75% or more; of the 74 patients with a mean DF of 6.5 ml/sec or more, 66 had stenosis of less than 25%. The results indicate that blood flow determined by QFM reflects the degree of occlusion or stenosis in the intracranial trunk arteries and may thus provide a practical, noninvasive method of assessing the severity of cerebrovascular lesions.

Key concepts: Medicine, Stenosis, Angiography, Occlusion, Blood flow, Internal carotid artery, Middle cerebral artery, Cardiology

Related papers

Back to paper searchBrowse research topicsOriginal source
Cerebral angiography and ultrasonic quantitative flow measurement of common carotid artery in patients with cerebral infarction. — Research Paper | ScholarLens