Literature DB >> 21752680

Relaxation of hyperpolarized 129Xe in a deflating polymer bag.

Harald E Möller1, Zackary I Cleveland, Bastiaan Driehuys.   

Abstract

In magnetic resonance imaging with hyperpolarized (HP) noble gases, data is often acquired during prolonged gas delivery from a storage reservoir. However, little is known about the extent to which relaxation within the reservoir will limit the useful acquisition time. For quantitative characterization, 129Xe relaxation was studied in a bag made of polyvinyl fluoride (Tedlar). Particular emphasis was on wall relaxation, as this mechanism is expected to dominate. The HP 129Xe magnetization dynamics in the deflating bag were accurately described by a model assuming dissolution of Xe in the polymer matrix and dipolar relaxation with neighboring nuclear spins. In particular, the wall relaxation rate changed linearly with the surface-to-volume ratio and exhibited a relaxivity of κ=0.392±0.008 cm/h, which is in reasonable agreement with κ=0.331±0.051 cm/h measured in a static Tedlar bag. Estimates for the bulk gas-phase 129Xe relaxation yielded T1bulk=2.55±0.22 h, which is dominated by intrinsic Xe-Xe relaxation, with small additional contributions from magnetic field inhomogeneities and oxygen-induced relaxation. Calculations based on these findings indicate that relaxation may limit HP 129Xe experiments when slow gas delivery rates are employed as, for example, in mouse imaging or vascular infusion experiments.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21752680      PMCID: PMC3163736          DOI: 10.1016/j.jmr.2011.06.017

Source DB:  PubMed          Journal:  J Magn Reson        ISSN: 1090-7807            Impact factor:   2.229


  19 in total

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Authors:  H E Möller; M S Chawla; X J Chen; B Driehuys; L W Hedlund; C T Wheeler; G A Johnson
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Authors:  Harald E Möller; X Josette Chen; Brian Saam; Klaus D Hagspiel; G Allan Johnson; Talissa A Altes; Eduard E de Lange; Hans-Ulrich Kauczor
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4.  Imaging alveolar-capillary gas transfer using hyperpolarized 129Xe MRI.

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5.  Nuclear relaxation of 3He in the presence of O2.

Authors: 
Journal:  Phys Rev A       Date:  1995-07       Impact factor: 3.140

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7.  Molecular MRI for sensitive and specific detection of lung metastases.

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8.  Gradient-induced longitudinal relaxation of hyperpolarized noble gases in the fringe fields of superconducting magnets used for magnetic resonance.

Authors:  Wangzhi Zheng; Zackary I Cleveland; Harald E Möller; Bastiaan Driehuys
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  6 in total

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2.  A portable ventilator with integrated physiologic monitoring for hyperpolarized 129Xe MRI in rodents.

Authors:  Rohan S Virgincar; Jerry Dahlke; Scott H Robertson; Nathann Morand; Yi Qi; Simone Degan; Bastiaan Driehuys; John C Nouls
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3.  Preclinical hyperpolarized 129 Xe MRI: ventilation and T2 * mapping in mouse lungs at 7 T using multi-echo flyback UTE.

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4.  In vivo MR imaging of pulmonary perfusion and gas exchange in rats via continuous extracorporeal infusion of hyperpolarized 129Xe.

Authors:  Zackary I Cleveland; Harald E Möller; Laurence W Hedlund; John C Nouls; Matthew S Freeman; Yi Qi; Bastiaan Driehuys
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5.  Continuous flow production of concentrated hyperpolarized xenon gas from a dilute xenon gas mixture by buffer gas condensation.

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6.  The Effect of Tedlar Bags on the Composition of Exhaled Human Breath Samples.

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Journal:  Evid Based Complement Alternat Med       Date:  2022-09-30       Impact factor: 2.650

  6 in total

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