Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Matthew E. Swierzbinski"'
Publikováno v:
Frontiers in Physiology, Vol 9 (2018)
Crayfish are capable of two rapid, escape reflexes that are mediated by two pairs of giant interneurons, the lateral giants (LG) and the medial giants (MG), which respond to threats presented to the abdomen or head and thorax, respectively. The LG ha
Externí odkaz:
https://doaj.org/article/58685075fb234cf083da08aaed83a06f
Activation of Microwave Signals in Nanoscale Magnetic Tunnel Junctions by Neuronal Action Potentials
Autor:
Ilya Krivorotov, Edo Waks, Ricardo C. Araneda, Benjamin Shapiro, Jordan A. Katine, J. M. Algarin, Jens Herberholz, Bharath Ramaswamy, Matthew E. Swierzbinski, Lucy Venuti, Yu-Jin Chen, Irving N. Weinberg, James Baker-McKee
Publikováno v:
IEEE Magnetics Letters. 10:1-5
Action potentials are the basic unit of information in the nervous system, and their reliable detection and decoding holds the key to understanding how the brain generates complex thought and behavior. Transduction of these signals into microwave sig
Publikováno v:
Journal of comparative physiology. A, Neuroethology, sensory, neural, and behavioral physiology. 205(5)
High-speed video recordings of escape responses in freely behaving crayfish revealed precisely coordinated movements of conspicuous head appendages, the antennal scales, during tail-flips that are produced by giant interneurons. For tail-flips that a
Publikováno v:
The Biological Bulletin. 230:152-164
Like most social animals, crayfish readily form dominance relationships and linear social hierarchies when competing for limited resources. Competition often entails dyadic aggressive interactions, from which one animal emerges as the dominant and on
Publikováno v:
The Journal of experimental biology. 220(Pt 8)
The effects of alcohol on society can be devastating, both as an immediate consequence of acute intoxication and as a powerful drug of abuse. However, the neurocellular mechanisms of alcohol intoxication are still elusive, partly because of the compl