Citation: M. Logan et Mi. Sweeney, ADENOSINE-A1-RECEPTOR ACTIVATION PREFERENTIALLY PROTECTS CULTURED CEREBELLAR NEURONS VERSUS ASTROCYTES AGAINST HYPOXIA-INDUCED DEATH, Molecular and chemical neuropathology, 31(2), 1997, pp. 119-133
Citation: Bhj. Juurlink et Mi. Sweeney, MECHANISMS THAT RESULT IN DAMAGE DURING AND FOLLOWING CEREBRAL-ISCHEMIA, Neuroscience and biobehavioral reviews, 21(2), 1997, pp. 121-128
Citation: Mi. Sweeney, NEUROPROTECTIVE EFFECTS OF ADENOSINE IN CEREBRAL-ISCHEMIA, WINDOW OF OPPORTUNITY, Neuroscience and biobehavioral reviews, 21(2), 1997, pp. 207-217
Citation: Mi. Sweeney, ADENOSINE RELEASE AND UPTAKE IN CEREBELLAR GRANULE NEURONS BOTH OCCURVIA AN EQUILIBRATIVE NUCLEOSIDE CARRIER THAT IS MODULATED BY G-PROTEINS, Journal of neurochemistry, 67(1), 1996, pp. 81-88
Citation: Mi. Sweeney et Ac. Dolphin, ADENOSINE-A(1) AGONISTS AND THE CA2-8644 PRODUCE A SYNERGISTIC STIMULATION OF THE GTPASE ACTIVITY OF G(O) IN RAT FRONTAL CORTICAL MEMBRANES( CHANNEL AGONIST BAY K), Journal of neurochemistry, 64(5), 1995, pp. 2034-2042
Citation: Mi. Sweeney et al., CELLULAR MECHANISMS INVOLVED IN BRAIN ISCHEMIA, Canadian journal of physiology and pharmacology, 73(11), 1995, pp. 1525-1535
Authors:
DOLPHIN AC
PEARSON HA
MENONJOHANSSON AS
SWEENEY MI
SUTTON K
HUSTON E
CULLEN GP
SCOTT RH
Citation: Ac. Dolphin et al., G-PROTEIN MODULATION OF VOLTAGE-DEPENDENT CALCIUM CHANNELS AND TRANSMITTER RELEASE, Biochemical Society transactions, 21(2), 1993, pp. 391-395
Citation: Mi. Sweeney et Ac. Dolphin, ADENOSINE-A1 AGONISTS STIMULATE THE GTPASE ACTIVITY OF GI- AND GO-TYPE G-PROTEINS IN CORTICAL MEMBRANES - SYNERGISM WITH BAY K-8644, Journal of neurochemistry, 61, 1993, pp. 190000078-190000078
Citation: Mi. Sweeney et al., MORPHINE-EVOKED RELEASE OF ADENOSINE FROM THE SPINAL-CORD OCCURS VIA A NUCLEOSIDE CARRIER WITH DIFFERENTIAL SENSITIVITY TO DIPYRIDAMOLE ANDNITROBENZYLTHIOINOSINE (VOL 614, PG 301, 1993), Brain research, 618(1), 1993, pp. 179-179
Citation: Mi. Sweeney et al., MORPHINE-EVOKED RELEASE OF ADENOSINE FROM THE SPINAL-CORD OCCURS VIA A NUCLEOSIDE CARRIER WITH DIFFERENTIAL SENSITIVITY TO DIPYRIDAMOLE ANDNITROBENZYLTHIOINOSINE, Brain research, 614(1-2), 1993, pp. 301-307