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1  that mediate autonomic responses, pain, and higher brain function.
2 secting cellular and molecular mechanisms of higher brain function.
3 , or whether it plays a more general role in higher brain function.
4 e fidelity of neural computations underlying higher brain function.
5 t complex and significant problems involving higher brain function.
6 les of this important subcortical network in higher brain function.
7 or energy flux in the execution of demanding higher brain functions.
8 itatory synapses that play a crucial role in higher brain functions.
9 rtical projection neurons is fundamental for higher brain functions.
10 in anxiety and suggest a role for TI-VAMP in higher brain functions.
11 hysiological glutamate signaling involved in higher brain functions.
12 in play important roles in the regulation of higher brain functions.
13 will facilitate investigation of its role in higher brain functions.
14 s, and might thus play a significant role in higher brain functions.
15 tions that together generate perceptions and higher brain functions.
16 echanisms for understanding basic as well as higher brain functions.
17 uggesting a critical role of amphiphysin for higher brain functions.
18 onous manner, are thought to be important in higher brain functions.
19  in modulating hippocampal activity and many higher brain functions.
20 tex is pivotal in information processing and higher brain function and its laminar structure of six d
21 rs may hold the keys to our understanding of higher brain functions and psychiatric disorders.
22 of ghrelin that links metabolic control with higher brain functions and suggest novel therapeutic str
23 ory and inhibitory synapses is essential for higher brain function, and impairment in this developmen
24 ed understanding of how such homeostatic and higher brain functions are integrated may pave the way f
25 em, implicated in supporting wakefulness and higher brain function, but has been difficult to selecti
26  These results indicate that KIBRA regulates higher brain function by regulating AMPAR trafficking an
27 a demonstrate that reward-timing activity-a "higher" brain function-can occur very early in sensory-p
28                                              Higher brain function depends on task-dependent informat
29    The forebrain cholinergic system promotes higher brain function in part by signaling through the M
30 arying levels of awareness, memory and other higher brain functions in patients with no behavioral ev
31 icance statement: The cerebral cortex exerts higher brain functions including perceptual and emotiona
32 en shown to underlie synaptic plasticity and higher brain functions, including learning and memory, a
33 l as for impaired motor coordination and the higher brain functions of learning and memory.
34                                              Higher brain function relies upon the ability to flexibl
35 ptic strength are thought to be critical for higher brain function such as learning and memory.
36 ine receptors (mAChR) has been implicated in higher brain functions such as learning and memory, and
37 mmalian neurons, and are directly related to higher brain functions such as learning and memory.
38  '40 Hz' rhythm, has been implicated both in higher brain functions, such as the 'binding' of feature

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