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February 8, 2023Japanese Journal of Applied Physics4 citationsOpen Access

Ultrasonic measurement of thickness of carotid arterial wall using its natural longitudinal displacement

YNYoshifumi NagaiSMShohei MoriMAMototaka Arakawa

Structured PICO

I
Intervention
Novel method using displacement of the carotid arterial wall in the lateral direction during one heartbeat
C
Comparator
Standard B-mode imaging
O
Outcome
Measurement of local and minute thicknesses of the carotid arterial wallsurrogate

A novel ultrasonic method utilizing natural longitudinal displacement allows for smoother and more precise measurement of carotid arterial wall thickness compared to standard B-mode imaging.

Abstract

Abstract The thickness of the carotid arterial wall obtained from B-mode imaging using ultrasonic diagnostic devices is widely used for the diagnosis of atherosclerosis. However, the measurement interval in the lateral direction of the B-mode image depended on the beam interval (>100 μm). Therefore, the B-mode image is discrete in the lateral direction and cannot reflect changes in local and minute thicknesses. A method for measuring the roughness of the luminal surface of the wall was proposed using the displacement of the carotid arterial wall in the lateral direction during one heartbeat. In this method, the lateral measurement interval is much shorter than the beam interval, enabling a smooth measurement of the luminal surface. By simultaneously applying the method to the lumen-intima and medial-adventitia boundaries of the wall, we propose a novel method to measure the local and minute thicknesses of the carotid arterial wall.

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Cite This Study

Nagai et al. (2023) studied this question.

synapsesocial.com/papers/6a70c87635aa2c282ce21b01https://doi.org/10.35848/1347-4065/acba26
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