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1 ce showing a link between their activity and spatial behavior.
2 may be the main determinant of an intricate spatial behavior.
3 st a possible role of this area in mediating spatial behavior.
4 rticipate in a neural circuit that regulates spatial behavior.
5 ed value despite the effect of that value on spatial behavior.
6 dissociation of the hippocampal circuit from spatial behavior.
7 tangling the relationship between social and spatial behavior.
8 tially driven by ENSO's complex temporal and spatial behavior.
9 icate to synchronize both their temporal and spatial behavior.
10 e highlight the role of sociality in shaping spatial behavior.
11 nimal with a neural compass to guide ongoing spatial behavior.
12 types, enabling comparisons to reveal shared spatial behaviors.
13 eys, are believed to support a wide range of spatial behaviors.
14 Using long-term data on winter social and spatial behavior across 10 y, we show that i) sparrows e
15 y may play an increasingly important role on spatial behavior across the lifetime of this migratory b
17 selective translational events consequent to spatial behavior and suggests a role for immediate-early
18 Visual landmarks exert stimulus control over spatial behavior and the spatially tuned firing of place
20 plets, enabling comparisons to reveal shared spatial behaviors and underlying morphological patterns.
21 sex differences in reproductive strategies, spatial behavior, and androgen levels in three species o
22 T MRI scanner would also alter goal-directed spatial behavior, as is known from other types of vestib
23 to developing accurate predictions of animal spatial behavior but is typically not accounted for in a
24 x (RSG) is critical for both spatial and non-spatial behaviors, but the underlying neural codes remai
25 e-brain activation patterns in four distinct spatial behaviors from young and aged rhesus macaques: c
27 tate (hunger and thirst), memory demand, and spatial behavior in 2 tasks: hippocampus-dependent conte
28 To understand and test predictions about spatial behavior in an invasive large mammal, the wild p
32 ng of finger movement, auditory stimuli, and spatial behaviors - including a novel representation of
33 widely believed to subserve visually guided spatial behavior, including the control of visual attent
34 network (GRN) models with a specific dynamic spatial behavior is an inverse problem without analytica
35 f collision signaling is that the collective spatial behavior is much less variable than the individu
39 uantitative measurements of the temporal and spatial behavior of extensive animal groups in the wild,
40 el above chance, providing evidence that the spatial behavior of laboratory rats (and the associated
41 in stochastic simulations, we find that the spatial behavior of nucleation complexes delicately bala
42 ractions between 2% and 40% depending on the spatial behavior of the sources (stationary or mobile),
44 s model can explain the complex and emergent spatial behaviors of cell populations that change their
45 THQ MOFs and the correlation of temporal and spatial behaviors of charge carriers with their photocon
51 n about how different inputs interact during spatial behavior to generate such robust firing patterns
52 spatial information, and attempts to relate spatial behavior to neuronal representations of directio
55 is unknown if and how visitors change their spatial behavior within a park due to daily weather cond