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The Review of Scientific Instruments|October 2, 2017
Invited Review Article: Instrumentation for nuclear magnetic resonance in zero and ultralow magnetic fieldMichael C D Tayler, Thomas Theis, Tobias F Sjolander, et al.The Journal of Chemical Physics|June 28, 2013
Parahydrogen-induced polarization at zero magnetic fieldMark C Butler, Gwendal Kervern, Thomas Theis, et al.Physical Review Letters|April 16, 2013
Fundamental aspects of parahydrogen enhanced low-field nuclear magnetic resonanceJohannes Colell, Pierre Türschmann, Stefan Glöggler, et al.Ebiomedicine|July 14, 2022
Machine learning aided classification of tremor in multiple sclerosisAbdulnasir Hossen, Abdul Rauf Anwar, Nabin Koirala, et al.Angewandte Chemie (International Ed. in English)|June 9, 2020
Chemical Reaction Monitoring using Zero-Field Nuclear Magnetic Resonance Enables Study of Heterogeneous Samples in Metal ContainersDudari B Burueva, James Eills, John W Blanchard, et al.Chemical Communications (Cambridge, England)|July 14, 2023
Combined homogeneous and heterogeneous hydrogenation to yield catalyst-free solutions of parahydrogen-hyperpolarized [1-13C]succinateJames Eills, Román Picazo-Frutos, Dudari B Burueva, et al.Progress in Nuclear Magnetic Resonance Spectroscopy|September 5, 2025
Zero- to ultralow-field nuclear magnetic resonanceDanila A Barskiy, John W Blanchard, Dmitry Budker, et al.Science Advances|January 6, 2023
Search for exotic parity-violation interactions with quantum spin amplifiersYuanhong Wang, Ying Huang, Chang Guo, et al.Physical Review Letters|February 24, 2023
Ultrasensitive Atomic Comagnetometer with Enhanced Nuclear Spin CoherenceKai Wei, Tian Zhao, Xiujie Fang, et al.Magnetic Resonance in Medicine|March 25, 2011
Relaxivity of gadolinium complexes detected by atomic magnetometryDavid J Michalak, Shoujun Xu, Thomas J Lowery, et al.Pageof 13