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Journal Article

NO-HYPE: a novel hydrodynamic phantom for the evaluation of MRI flow measurements

Giacomo Gadda; Sirio Cocozza; Mauro Gambaccini; Angelo Taibi; Enrico Tedeschi; Paolo Zamboni; Giuseppe Palma
Medical & Biological Engineering & Computing · Vol. 59, Issue 9 · pp. 1889-1899 · 2021

Abstract

Accurate and reproducible measurement of blood flow profile is very important in many clinical investigations for diagnosing cardiovascular disorders. Given that many factors could affect human circulation, and several parameters must be set to properly evaluate blood flows with phase-contrast techniques, we developed an MRI-compatible hydrodynamic phantom to simulate different physiological blood flows. The phantom included a programmable hydraulic pump connected to a series of pipes immersed in a solution mimicking human soft tissues, with a blood-mimicking fluid flowing in the pipes. The pump is able to shape and control the flow by driving a piston through a dedicated software. Periodic waveforms are used as input to the pump to move the fluid into the pipes, with synchronization of the MRI sequences to the flow waveforms. A dedicated software is used to extract and analyze flow data from magnitude and phase images. The match between the nominal and the measured flows was assessed, and the scope of phantom variables useful for a reliable calibration of an MRI system was accordingly defined. Results showed that the NO-HYPE phantom is a valuable tool for the assessment of MRI scanners and sequence design for the MR evaluation of blood flows. Graphical abstract

Bibliographic Information

JournalMedical & Biological Engineering & Computing
PublisherSpringer
Publication Date2021-09-01
Publication Year2021
Volume59
Issue9
Pages1889-1899
Document TypeJournal Article
Print ISSN0140-0118
eISSN1741-0444
DOI10.1007/s11517-021-02390-2

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NARA Access Coverage1963-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11517
Publisher PageOpen Publisher Page
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