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1 historically (regular migration and nomadic wandering).
2 subjects concentrate on a task, their minds wander.
3 c patterns may also be related to true polar wander.
4 isode of approximately 80 degrees true polar wander.
5 explain the observed low rate of true polar wander.
6 timulation, increased the propensity to mind-wander.
7 ge-scale shape, gravity and history of polar wander.
8 rtbeats while human participants freely mind-wandered.
9 ning future and past events, and during mind wandering.
10 work that are consistent with decreased mind-wandering.
11 application of JH III or JHM at the onset of wandering.
12 he "resting" brain to the occurrence of mind-wandering.
13 might be linked with the continuity of mind wandering.
14 of G proteins is required to constrain patch wandering.
15 ically sampled their thoughts to assess mind wandering.
16 ask need to be considered when studying mind wandering.
17 on of attention rather than spontaneous mind wandering.
18 cognitive control brain regions during mind wandering.
19 gions whose activation was modulated by wind wandering.
20 istent with deformation caused by true polar wander--a change in the orientation of a planet with res
21 hat cause persistent activity to diffusively wander about the network, degrading memory over time.
22 rs, will leave the area of a food source and wander about their environment in an apparent search for
23 of surface motility, causing the bacteria to wander across the surface instead of forming cell cluste
24 manner that discourages task-irrelevant mind wandering activities, encourages task-relevant note-taki
26 ithin two genetically similar populations of wandering albatross Diomedea exulans from the Crozet and
28 e analyse a new, high-resolution data set of wandering albatross flights, and find no evidence for Le
29 ion-exploitation strategy using wide ranging wandering albatrosses (Diomedea exulans) as a model syst
32 ted increase in body mass of a population of wandering albatrosses (Diomedea exulans) with increasing
34 We find that total prey masses captured by wandering albatrosses during Levy movements exceed daily
35 al biological system presented evidence that wandering albatrosses perform Levy flights when searchin
42 ing contain a random component, which causes wandering among synaptic configurations with equivalent
44 reflects are only partially related to mind-wandering and include also attentional state fluctuation
45 isingly small, and in some cases (e.g., mind-wandering and sustained attention), older adults perform
48 havioral symptoms such as repetitive speech, wandering, and sleep disturbances are a core clinical fe
50 nformation on whether and how the system may wander around an inter-layer synchronous configuration.
51 swarm edge moved inward for the first 20 s, wandered around in place for the next 40 s, and then mov
54 led out a general lapse in attention or mind wandering as being predictive of subsequent reductions i
55 monstrate that individual tendencies to mind wander away from pain, in the absence of explicit manipu
58 N) deactivations were attenuated during mind wandering away from pain; (ii) functional connectivity f
60 be cognitively impaired, exhibit symptoms of wandering, be verbally abusive, and have socially inappr
64 easured varying levels of self-reported mind-wandering, behavioral variability, and brain activity wi
66 al representation of different types of mind wandering, but also highlights the importance of taking
67 find the default network active during mind wandering, but these studies have yielded mixed results
69 urther examine the neural correlates of mind wandering by examining mind wandering during strategic r
70 the first time, to our knowledge, that mind wandering can be enhanced externally using brain stimula
73 l levels were best explained by intense mind-wandering combined with stable behavior simultaneously,
75 maly (with or without the ocean), true polar wander could have moved the feature towards the Pluto-Ch
76 Global Positioning System (GPS) tracking of wandering (Diomedea exulans) and black-browed albatrosse
78 d six phases of slow, oscillatory true polar wander during which the Earth's axis of minimum moment o
80 examination of the neural correlates of mind wandering during discourse comprehension and shows that
82 hotspot reference frames-that is, true polar wander-during the past 100 million years, which implies
83 ing pain coupled with thought probes of mind wandering, dynamic resting state activity fluctuations,
84 atter phenomenon may represent a rapid polar wander episode (3 to 10 degrees per million years) whose
85 h has the geometry expected for a true polar wander event that postdates the formation of the massive
87 sults provide direct, in vivo evidence for a wandering form of neuronal migration involved in the add
88 rect evidence suggests that acyl-CoAs do not wander freely within cells, but instead, are channeled i
91 Studies exploring the phenomenology of mind wandering highlight the importance of its content and re
93 help identify the neural correlates of mind wandering in a causal manner, in contrast to the correla
94 atent cognitive processes, we show that mind wandering in humans is characterized by inefficiencies i
95 ions was associated with more sustained mind wandering in particular thought domains during resting-s
98 ure is illustrated by the experience of mind wandering, in which attention switches from a current ta
99 nt embryos, motor axons were error prone and wandered inefficiently at choice points within embryos,
100 y in lunar history, which implies that polar wander initiated billions of years ago and that a large
103 lso highlights the importance of taking mind wandering into consideration when studying brain organiz
106 current investigation demonstrated that mind-wandering is associated with activity in a default netwo
109 Enhanced locomotory activity (ELA), such as wandering, is a normal behavior that occurs at the end o
110 resistance to apoptosis, however, is lost in wandering L3 animals after acquiring a heightened sensit
111 ause- and non-diapause-destined third instar wandering larvae, and are then downregulated throughout
112 circles to each supercontinent's true polar wander legacy, we determine that the arc distances betwe
113 g to a ubiquitous tendency of human minds to wander, little is known about the neural operations that
118 ies reflect the dynamic tension between mind-wandering, meta-awareness, and directed attention, and m
119 grew into the limb more slowly than normal, wandering more widely, branching more frequently, and so
122 instar transition from foraging (feeding) to wandering (non-feeding) behavior occurs prior to puparia
123 f inertia about which oscillatory true polar wander occurs owing to the prolate shape of the non-hydr
131 sociated with self-reported episodes of mind-wandering, or thoughts that are unrelated to the present
132 ate Cretaceous-early Tertiary apparent polar wander path for the Pacific plate using 27 paleomagnetic
134 ing gastrulation, (2) matrix associated with wandering, phagocytic hemocytes, (3) basement membranes
135 ses some OR111-7-expressing sensory axons to wander posteriorly after exiting the olfactory pit, away
138 eptor gene cause the axons of these cells to wander rather than converge on a specific glomerulus.
139 ovement is sensitive to pheromone dose, with wandering reduced on the up-gradient side of the cell, r
146 th of the wing imaginal disks of non-feeding wandering stage Manduca sexta can be stopped by removal
147 al fat body but not in epidermis from either wandering stage or allatectomized larvae, which lack hig
150 e information-processing demands of the mind-wandering state suggests that it involves perceptual dec
152 regions are at times more active during mind wandering than during a task with low control demands, s
153 cospinal neurons, exhibited similar abducens wandering that paralleled previously reported gait alter
154 notion that transient polarity patches that wander the cell surface at the onset of mating are discr
157 onses, moments of unoccupied rest free us to wander through thoughts of the past and future, create d
158 has shown that brain activity at rest slowly wanders through a repertoire of different states, where
160 et with respect to its spin axis (true polar wander, TPW), which is responsible for the present equat
161 A second step introduced the meandering, or wandering, trajectories observed in natural dendritic br
163 change in the spin axis, known as true polar wander, was caused by a low-density thermal anomaly bene
164 tic reference frame corrected for true polar wander, we have developed a model for absolute plate mot
165 s' reports of the tendency of their minds to wander were correlated with activity in this network.
166 spin axis relative to the mantle (true polar wander), which may have been related to global changes i
167 lt mode of humans appears to be that of mind-wandering, which correlates with unhappiness, and with a
168 gulation and cerebral representation of mind wandering, which occurs unavoidably during resting-state
169 trategies may minimize the downsides of mind wandering while maintaining its productive aspects.
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