Relaxation Dynamics of Nuclear Long-Lived Spin States in Propane and Propane-d6 Hyperpolarized by Parahydrogen
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Summary
The presented findings may be useful for improving the levels of polarization of HP propane produced by HET-PHIP via the use of an inert buffer gas; increasing the lifetime of the HP state during preparation and storage; and developing efficient approaches for ultrafast MR imaging ofHP propane in the context of biomedical applications of HP Propane gas, including its potential use as an inhalable contrast agent.
- Type
- article
- Published
- 2019-04-11
- Cited by
- 19
- References
- 74
- Access
- Open access
- OpenAlex
- https://openalex.org/W2937332609
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:145964151
Keywords
Propane, Spin isomers of hydrogen, Relaxation (psychology), Hyperpolarization (physics), Materials science
References
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- Quantitative Assessment of Lung Ventilation and Microstructure in an Animal Model of Idiopathic Pulmonary Fibrosis Using Hyperpolarized Gas MRI
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Cited by
- Clinical-Scale Batch-Mode Production of Hyperpolarized Propane Gas for MRI
- Parahydrogen-induced Hyperpolarization of Gases
- Catalytic hydrogenation with parahydrogen: a bridge from homogeneous to heterogeneous catalysis
- Parahydrogen-Induced Polarization of Diethyl Ether Anesthetic
- Parawasserstoff‐induzierte Hyperpolarisation von Gasen
- Heterogeneous Parahydrogen-Induced Polarization of Diethyl Ether for Magnetic Resonance Imaging Applications
- High-Pressure Clinical-Scale 87% Parahydrogen Generator.
- Clinical-Scale Production of Nearly Pure (>98.5%) Parahydrogen and Quantification by Benchtop NMR Spectroscopy
- Gas-Phase NMR of Hyperpolarized Propane with 1H-to-13C Polarization Transfer by PH-INEPT
- Discriminationof PHIP signals through their evolution in multipulse sequences.
- Instrumentation for Hydrogenative Parahydrogen-Based Hyperpolarization Techniques
- Adaptable Singlet-Filtered Nuclear Magnetic Resonance Spectroscopy for Chemical and Biological Applications.
- Recent advances in the application of parahydrogen in catalysis and biochemistry
- Geometrization for Energy Levels of Isotropic Hyperfine Hamiltonian Block and Related Central Spin Problems for an Arbitrarily Complex Set of Spin-1/2 Nuclei
- Selective filtration of NMR signals arising from weakly- and strongly-coupled spin systems.
- Ultra-Low-Cost Disposable Handheld Clinical-scale Propane Gas Hyperpolarizer for Pulmonary MRI Sensing
- Developing Hyperpolarized Butane Gas for Ventilation Lung Imaging
- Rapid lung ventilation MRI using parahydrogen-induced polarization of propane gas
- Parahydrogen-Hyperpolarized Propane-d6 Gas Contrast Agent: T1 Relaxation Dynamics and Pilot Millimeter-Scale Ventilation MRI
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