GREEN 发表于 2025-3-23 12:26:07
Michael J. Kuhar,F. Ivy Carroll,Anita H. Lewin,John W. Boja,Ursula Scheffel,Dean F. Wonges how control boundary conditions may be defined for the moThis monograph explores the modeling of conservation and balance laws of one-dimensional hyperbolic systems using partial differential equations. It presents typical examples of hyperbolic systems for a wide range of physical engineering apeak-flow 发表于 2025-3-23 15:46:01
Deborah C. Mash,Julie K. Staleyes how control boundary conditions may be defined for the moThis monograph explores the modeling of conservation and balance laws of one-dimensional hyperbolic systems using partial differential equations. It presents typical examples of hyperbolic systems for a wide range of physical engineering aInterstellar 发表于 2025-3-23 18:27:54
Nian-Hang Chen,Maarten E. A. Reith educators is to transmit culture from one generation to the next. The clarity of his vision was aided by the era, the place, and the actors in the learning environment. His was an era when the relatively seamless web of western culture, although ripping and straining, was still intact. The place, pBARGE 发表于 2025-3-24 01:49:49
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Cloned Sodium- (and Chloride-) Dependent High-Affinity Transporters for GABA, Glycine, Proline, Betigh-affinity, sodium-dependent, plasma membrane transport processes. Only recently, however, through the development of modern molecular cloning techniques, has it been realized that despite significant variability in the chemical and biochemical natures of these substances, there is remarkable simi剥削 发表于 2025-3-24 19:26:53
Sodium-Coupled GABA and Glutamate Transporters,ransmitter levels below those which are neurotoxic. Moreover, they help, in conjunction with diffusion, to terminate its action in synaptic transmission. Such a termination mechanism operates with most transmitters, including γ-aminobutyric acid (GABA), .-glutamate, glycine, dopamine, serotonin, andhallow 发表于 2025-3-25 01:35:04
The High-Affinity Glutamate Transporter Family,l transporter subtypes with distinct tissue distributions and kinetic and pharmacologic properties. High-affinity (K. = 1−50 µ.) and low-affinity (K. > 100 µ.) Na.- and K.-dependent glutamate transporters were identified in brain, kidney, and intestine (.). Similar systems were also described in epi