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MRI-Compatible Microcirculation System Using Ultrasonic Pumps for Microvascular Imaging on 3T MRIopen access

Authors
Jung, Ju-YeonSeo, Dong-KyuLee, Yeong-BaeKang, Chang-Ki
Issue Date
Aug-2022
Publisher
MDPI
Keywords
microvascular imaging; MRI-compatible flow system; micro-tube phantom; piezoelectric pump
Citation
SENSORS, v.22, no.16
Journal Title
SENSORS
Volume
22
Number
16
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/85482
DOI
10.3390/s22166191
ISSN
1424-8220
Abstract
The diagnosis of small vessel disease is attracting interest; however, it remains difficult to visualize the microvasculature using 3 Tesla (T) magnetic resonance imaging (MRI). Therefore, this study aimed to visualize the microvascular structure and measure a slow flow on 3T MRI. We developed a microcirculation system using piezoelectric pumps connected to small tubes (0.4, 0.5, 0.8, and 1.0 mm) and evaluated various MR sequences and imaging parameters to identify the most appropriate acquisition parameters. We found that the system could image small structures with a diameter of 0.5 mm or more when using a 1 m-long tube (maximal signal intensity of 241 in 1 mm, 199 in 0.8 mm, and 133 in 0.5 mm). We also found that the highest signal-to-noise ratio (SNR) appeared on 2-dimensional time-of-flight low-resolution imaging and that the flow velocity (10.03 cm/s) was similar to the actual velocity (11.01 cm/s in a flowmeter) when velocity encoding of 30 cm/s was used in a 0.8 mm-diameter tube. In conclusion, this study demonstrates that a microcirculation system can be used to image small vessels. Therefore, our results could serve as a basis for research on vessels' anatomical structure and pathophysiological function in small vessel disease.
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