Rapid lung ventilation MRI using parahydrogen-induced polarization of propane gas

36Citations
Citations of this article
7Readers
Mendeley users who have this article in their library.

Abstract

Proton-hyperpolarized contrast agents are attractive because they can be imaged on virtually any clinical MRI scanner, which is typically equipped to scan only protons rather than heteronuclei (i.e., anything besides protons, e.g., 13C, 15N, 129Xe, 23Na, etc.). Even though the lifetime of the proton spin hyperpolarization is only a few seconds, it is sufficient for inhalation and scanning of proton-hyperpolarized gas media. We demonstrate the utility of producing hyperpolarized propane gas via heterogeneous parahydrogen-induced polarization for the purpose of ventilation imaging in an excised rabbit lung model. The magnetization of protons in hyperpolarized propane gas is similar to that of tissue water protons, making it possible to rapidly perform lung ventilation imaging with a 0.35 T clinical MRI scanner. Here, we demonstrate the feasibility of rapid (2 s) lung ventilation MRI in excised rabbit lungs using hyperpolarized propane gas with a 1 × 1 mm2 pixel size using a 50 mm slice thickness, and a 1.7 × 1.7 mm2 pixel size using a 9 mm slice thickness.

Cite

CITATION STYLE

APA

Chowdhury, M. R. H., Oladun, C., Ariyasingha, N. M., Samoilenko, A., Bawardi, T., Burueva, D. B., … Chekmenev, E. Y. (2024). Rapid lung ventilation MRI using parahydrogen-induced polarization of propane gas. Analyst , 149(24), 5832–5842. https://doi.org/10.1039/d4an01029a

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free