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Rolf Färeit stoichiometry (α4).(β2). and accounts for >90% of the high affinity nicotine binding in mammalian brains. Chronic treatment of cells transfected with α4β2 AChRs causes an increase in the amount of AChR with pharmacological characteristics and a time course that parallel the nicotine-induced incre按时间顺序 发表于 2025-3-22 07:47:23
King-Tim Makit stoichiometry (α4).(β2). and accounts for >90% of the high affinity nicotine binding in mammalian brains. Chronic treatment of cells transfected with α4β2 AChRs causes an increase in the amount of AChR with pharmacological characteristics and a time course that parallel the nicotine-induced increcorpus-callosum 发表于 2025-3-22 11:32:52
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Wolfgang Teuschit stoichiometry (α4).(β2). and accounts for >90% of the high affinity nicotine binding in mammalian brains. Chronic treatment of cells transfected with α4β2 AChRs causes an increase in the amount of AChR with pharmacological characteristics and a time course that parallel the nicotine-induced increDefraud 发表于 2025-3-22 20:10:19
Kimberly D. Zieschangit stoichiometry (α4).(β2). and accounts for >90% of the high affinity nicotine binding in mammalian brains. Chronic treatment of cells transfected with α4β2 AChRs causes an increase in the amount of AChR with pharmacological characteristics and a time course that parallel the nicotine-induced incre可触知 发表于 2025-3-23 00:09:57
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Derek L. Bosworth,Peter J. Dawkinsdom. Such theories are attractive for phenomenological applications since they are mostly unconstrained by current experiments. Non-locality has played an increasingly important role in the physics of the last decades, appearing in effective actions in quantum field theory, and arising naturally inDappled 发表于 2025-3-23 07:26:35
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