Mugler et al., MR Imaging and Spectroscopy Using Hyperpolarized .sup.129 Xe Gas: Preliminary Human Results, Magn. Reson. Med., vol. 37, No. 6, pp. 809-815 (May-Jun./1997). |
Patyal et al., Longitudinal Relaxation and Diffusion Measurements Using Magnetic Resonance Signals from Laser-Hyperpolarized 129Xe Nuclei, J. Magn. Reson., vol. 126, No. 1, pp. 58-65 (May 1997). |
Albert et al., Measurement of .sup.129 Xe T1 in Blood to Explore the Feasibility of Hyperpolarized .sup.129 Xe MRI, Jour. Comp. Ass. Tomography, vol. 19, No. 6, pp. 975-978 (1995). |
Wagshul et al., In Vivo MR Imaging and Spectroscopy Using Hyperpolarized .sup.129 Xe, Magn. Reson. Med., vol. 36, No. 2, pp. 183-191 (Aug. 1996). |
Wilson, E.K., Hyperpolarized Gases Set NMR World Spinning, Chem. & Eng. News, vol. 74, No. 52, pp. 21-24 (Dec. 23, 1996). |
Borman, S., Xenon used to expand magnetic imaging, Chem. & Eng. News, vol. 72, No. 30, pp. 7-8 (Jul. 25, 1994). |
Martin et al., The Pharmacokinetics of Hyperpolarized Xenon: Implications for Cerebral MRI, Jour. Magn. Reson. Imag., vol. 7, No. 5, pp. 848-854 (Sep./Oct. 1997). |
Gatzke et al., "Extraordinarily Slow Nuclear Spin Relation In Frozen Laser-Polarized .sup.129 Xe", Physical Review Letters, vol. 70, No. 5, pp. 690-693 (1993). |
Becker et al., "Study Of Mechanical Compression Of Spin-Polarized .sup.3 He Gas", Nuclear Instruments And Methods In Physics Research, vol. A 346, pp. 45-51 (1994). |
Middleton et al., "MR Imaging With Hyperpolarized .sup.3 He Gas", Magnetic Resonance In Medicine, vol. 33, pp. 271-275 (1995). |
Bhaskar et al., "Efficiency of Spin Exchange between Rubidium Spins and .sup.129 Xe Nuclei in a Gas", Physical Review Letters, vol. 49, p. 25 (1982). |
Zeng et al., "Experimental determination of the rate constants for spin exchange between optically pumped K, Rb, and Cs atoms and .sup.129 Xe nuclei in alkali-metal--noble-gas van der Waals molecules", Physical Review A, vol. 31, p. 260 (1985). |
Cates et al., "Rb-.sup.129 Xe spin-exchange rates due to binary and three-body collisions at High Xe pressures", Physical Review A, vol. 45, p. 4631 (1992). |
Miller et al., "Xenon NMR: Chemical shifts of a general anesthetic common solvents, proteins, and membranes", Proc. of the Nat. Academy of Science (USA), vol. 78, No. 8 (1981). |
Albert et al., ".sup.129 Xe Relaxation Catalysts by Oxygen", Abstracts of the 11th Annual Meetings of the Society for Magnetic Resonance Medicine, (1992). |
Albert et al., "Relaxation of .sup.129 Xe in Model Biological Systems: On Probing the Mechanism of General Anesthesia", Abstracts of the 11th Annual Meetings of the Society for Magnetic Resonance Medicine, (1992). |
Raftery, D. et al., "NMR of optically pumped xenon this films", Chem. Phys. Lett., vol. 191, pp. 385-390 (1992). |
Sauer et al., "Laser Polarized Liquid Xenon", Chem. Phys. Lett., vol. 277, pp. 153-158 (1997). |
Driehuys et al., "High-volume production of laser polarized .sup.129 Xe", Appl. Phys. Lett., vol. 69, No. 12 (1996). |
Cummings et al., "Optical pumping of Rb vapor using high-power Ga.sub.1-x A.sub.x As diode laser arrays", Phys. Rev. A, vol. 51, No. 6, pp. 4842-4851 (1995). |
Cates et al., "Laser Production of Large Nuclear-Spin Polarization in Frozen Xenon", Phys. Rev. Lett., vol. 65, No. 20, pp. 2591-2594 (1990). |
Middleton, "The Spin Structure of The Neutron Determined Using A Polarized .sup.3 He Target", Ph.D. Dissertation, Princeton University (1994). |