Browsing by Author Taylor, J. M.

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Showing results 1 to 5 of 5
Issue DateTitleAuthor(s)Citation
2005Circulating CD10-/CD16low neutrophils provide a quantitative index of active bone marrow neutrophil release.Bannon, Paul; Kritharides, Leonard; Geczy, Carolyn; Orr, Y.; Taylor, J. M.; Central Clinical School: Surgery; Concord Clinical School: ANZAC Research InstituteCirculating CD10-/CD16low neutrophils provide a quantitative index of active bone marrow neutrophil release., British Journal of Haematology, vol.131,(4),2005,pp 508-519
2006A genome-wide screen in 1119 relative pairs with autoimmune thyroid disease.Robinson, Bruce; Brix, T; Chatterjee, K; Connell, J; et, al; Franklin, J; Gough, S; Hegedus, L; Hunt, P; Taylor, J. M.; Wiersinga, W; Northern Clinical School: MedicineA genome-wide screen in 1119 relative pairs with autoimmune thyroid disease., The Journal of Clinical Endocrinology & Metabolism (2005), vol.91,(2),2006,pp 646-653
2006A kinetic model of bone marrow neutrophil production which characterizes late phenotypic maturation.Bannon, Paul; Kritharides, Leonard; Davenport, M P; Geczy, Carolyn; Orr, Y; Taylor, J. M.; Wilson, D P; Central Clinical School: Surgery; Concord Clinical School: ANZAC Research InstituteA kinetic model of bone marrow neutrophil production which characterizes late phenotypic maturation., American Journal of Physiology: Regulatory, Integrative and Comparative Physiology, vol.N/A,(N/A),2006,pp N/A-N/A
2013Self-consistent measurement and state tomography of an exchange-only spin qubitBartlett, Stephen; Doherty, Andrew; Beil, J.; Divincenzo, D.P.; Gossard, A.C.; Lu, Hong; Marcus, Charles; Medford, J.; Rashba, E.I.; Taylor, J. M.; Physics; PhysicsSelf-consistent measurement and state tomography of an exchange-only spin qubit, Nature Nanotechnology, vol.8, 9, 2013,pp 654-659
2006Soluble TNFR1 inhibits the development of experimental autoimmune neuritis by modulating blood-nerve-barrier permeability and inflammation.Pollard, John; Taylor, J. M.; Central Clinical School: MedicineSoluble TNFR1 inhibits the development of experimental autoimmune neuritis by modulating blood-nerve-barrier permeability and inflammation., Journal of Neuroimmunology, vol.N/A,(N/A),2006,pp N/A-N/A