Literature DB >> 31788858

Improved pulmonary 129 Xe ventilation imaging via 3D-spiral UTE MRI.

Matthew M Willmering1,2, Peter J Niedbalski1,2, Hui Wang3,4, Laura L Walkup1,2,4,5, Ryan K Robison6, James G Pipe7, Zackary I Cleveland1,2,4,5,8, Jason C Woods1,2,4,5.   

Abstract

PURPOSE: Hyperpolarized 129 Xe MRI characterizes regional lung ventilation in a variety of disease populations, with high sensitivity to airway obstruction in early disease. However, ventilation images are usually limited to a single breath-hold and most-often acquired using gradient-recalled echo sequences with thick slices (~10-15 mm), which increases partial-volume effects, limits ability to observe small defects, and suffers from imperfect slice selection. We demonstrate higher-resolution ventilation images, in shorter breath-holds, using FLORET (Fermat Looped ORthogonally Encoded Trajectories), a center-out 3D-spiral UTE sequence.
METHODS: In vivo human adult (N = 4; 2 healthy, 2 with cystic fibrosis) 129 Xe images were acquired using 2D gradient-recalled echo, 3D radial, and FLORET. Each sequence was acquired at its highest possible resolution within a 16-second breath-hold with a minimum voxel dimension of 3 mm. Images were compared using 129 Xe ventilation defect percentage, SNR, similarity coefficients, and vasculature cross-sections.
RESULTS: The FLORET sequence obtained relative normalized SNR, 40% greater than 2D gradient-recalled echo (P = .012) and 26% greater than 3D radial (P = .067). Moreover, the FLORET images were acquired with 3-fold-higher nominal resolution in a 15% shorter breath-hold. Finally, vasculature was less prominent in FLORET, likely due to diminished susceptibility-induced dephasing at shorter TEs afforded by UTE sequences.
CONCLUSION: The FLORET sequence yields higher SNR for a given resolution with a shorter breath-hold than traditional ventilation imaging techniques. This sequence more accurately measures ventilation abnormalities and enables reduced scan times in patients with poor compliance and severe lung disease.
© 2019 International Society for Magnetic Resonance in Medicine.

Entities:  

Keywords:  129Xe; FLORET; UTE; non-Cartesian; spiral; ventilation

Mesh:

Year:  2019        PMID: 31788858      PMCID: PMC7083696          DOI: 10.1002/mrm.28114

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  30 in total

1.  Sampling density compensation in MRI: rationale and an iterative numerical solution.

Authors:  J G Pipe; P Menon
Journal:  Magn Reson Med       Date:  1999-01       Impact factor: 4.668

2.  Graphical programming interface: A development environment for MRI methods.

Authors:  Nicholas R Zwart; James G Pipe
Journal:  Magn Reson Med       Date:  2014-11-10       Impact factor: 4.668

3.  Three-dimensional ultrashort echo-time imaging using a FLORET trajectory.

Authors:  Ryan K Robison; Ashley G Anderson; James G Pipe
Journal:  Magn Reson Med       Date:  2016-10-24       Impact factor: 4.668

4.  Hyperpolarized (3) He and (129) Xe MRI: differences in asthma before bronchodilation.

Authors:  Sarah Svenningsen; Miranda Kirby; Danielle Starr; Del Leary; Andrew Wheatley; Geoffrey N Maksym; David G McCormack; Grace Parraga
Journal:  J Magn Reson Imaging       Date:  2013-04-15       Impact factor: 4.813

5.  Hyperpolarized 129Xe for investigation of mild cystic fibrosis lung disease in pediatric patients.

Authors:  Robert P Thomen; Laura L Walkup; David J Roach; Zackary I Cleveland; John P Clancy; Jason C Woods
Journal:  J Cyst Fibros       Date:  2016-07-29       Impact factor: 5.482

Review 6.  The role of hyperpolarized 129xenon in MR imaging of pulmonary function.

Authors:  Lukas Ebner; Jeff Kammerman; Bastiaan Driehuys; Mark L Schiebler; Robert V Cadman; Sean B Fain
Journal:  Eur J Radiol       Date:  2016-09-16       Impact factor: 3.528

7.  Hyperpolarised 129Xe magnetic resonance imaging to monitor treatment response in children with cystic fibrosis.

Authors:  Jonathan H Rayment; Marcus J Couch; Nancy McDonald; Nikhil Kanhere; David Manson; Giles Santyr; Felix Ratjen
Journal:  Eur Respir J       Date:  2019-05-02       Impact factor: 16.671

8.  Hyperpolarized 129 Xe gas transfer MRI: the transition from 1.5T to 3T.

Authors:  Ziyi Wang; Mu He; Elianna Bier; Leith Rankine; Geoffry Schrank; Sudarshan Rajagopal; Yuh-Chin Huang; Christopher Kelsey; Samantha Womack; Joseph Mammarappallil; Bastiaan Driehuys
Journal:  Magn Reson Med       Date:  2018-07-19       Impact factor: 4.668

9.  Using Hyperpolarized 129Xe MRI to Quantify the Pulmonary Ventilation Distribution.

Authors:  Mu He; Bastiaan Driehuys; Loretta G Que; Yuh-Chin T Huang
Journal:  Acad Radiol       Date:  2016-09-09       Impact factor: 3.173

10.  Comparison of 3 He and 129 Xe MRI for evaluation of lung microstructure and ventilation at 1.5T.

Authors:  Neil J Stewart; Ho-Fung Chan; Paul J C Hughes; Felix C Horn; Graham Norquay; Madhwesha Rao; Denise P Yates; Rob H Ireland; Matthew Q Hatton; Bilal A Tahir; Paul Ford; Andrew J Swift; Rod Lawson; Helen Marshall; Guilhem J Collier; Jim M Wild
Journal:  J Magn Reson Imaging       Date:  2018-03-05       Impact factor: 4.813

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  4 in total

1.  Novel Thoracic MRI Approaches for the Assessment of Pulmonary Physiology and Inflammation.

Authors:  Jonathan P Brooke; Ian P Hall
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 2.622

Review 2.  In vivo methods and applications of xenon-129 magnetic resonance.

Authors:  Helen Marshall; Neil J Stewart; Ho-Fung Chan; Madhwesha Rao; Graham Norquay; Jim M Wild
Journal:  Prog Nucl Magn Reson Spectrosc       Date:  2020-12-09       Impact factor: 9.795

Review 3.  [Noninvasive functional lung imaging with hyperpolarized xenon : Breakthrough for diagnostics?]

Authors:  Mariia Anikeeva; Maitreyi Sangal; Oliver Speck; Graham Norquay; Maaz Zuhayra; Ulf Lützen; Josh Peters; Olav Jansen; Jan-Bernd Hövener
Journal:  Radiologie (Heidelb)       Date:  2022-04-11

Review 4.  [Imaging of the lung using low-field magnetic resonance imaging].

Authors:  Maximilian Hinsen; Rafael Heiss; Armin M Nagel; Simon Lévy; Michael Uder; Sebastian Bickelhaupt; Matthias S May
Journal:  Radiologe       Date:  2022-04-13       Impact factor: 0.635

  4 in total

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