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NERVOUS SYSTEM: NEURAL TISSUE
NERVOUS SYSTEM: NEURAL TISSUE

... Forms a 8p at the end of an axon  Directs the route and final target for the axon  Guided along glial cells  Synapses become ac8ve before matura8on  •  Determines final func8on  ...
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Nervous System - Downey Unified School District
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...  Releasing _______________________ that regulate neuronal activity Blood-Brain Barrier: Allows only certain compounds to enter brain  Formed by capillary specializations in brain; appear to be induced by astrocytes  Capillaries are not as _________________ as those in body  Gaps between adjacent ...
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... simplicity that the pinwheels are organized in a square lattice, though similar results were obtained for other geometries. The parameters of the network were chosen to place the network close to a static instability, consistent with experimental measurements (Marino et al., 2005). In this state, de ...
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The Nervous System

... -Original stimulation must be above threshold level in order for an impulse to be started (all or nothing) Transmission of impulses between neurons -Communication between cells occurs at synapses (gap between axon and neighboring dendrite) -Pre-synaptic cells contain synaptic vesicles which contain ...
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Feature detection (nervous system)

Feature detection is a process by which the nervous system sorts or filters complex natural stimuli in order to extract behaviorally relevant cues that have a high probability of being associated with important objects or organisms in their environment, as opposed to irrelevant background or noise. Feature detectors are individual neurons – or groups of neurons – in the brain which code for perceptually significant stimuli. Early in the sensory pathway feature detectors tend to have simple properties; later they become more and more complex as the features to which they respond become more and more specific. For example, simple cells in the visual cortex of the domestic cat (Felis catus), respond to edges – a feature which is more likely to occur in objects and organisms in the environment. By contrast, the background of a natural visual environment tends to be noisy – emphasizing high spatial frequencies but lacking in extended edges. Responding selectively to an extended edge – either a bright line on a dark background, or the reverse – highlights objects that are near or very large. Edge detectors are useful to a cat, because edges do not occur often in the background “noise” of the visual environment, which is of little consequence to the animal.
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