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1 es between the two, making a theoretical and neuroscientific account for their integration into model
2 cial for developing complete theoretical and neuroscientific accounts of altruistic behavior and more
3 cience fiction, but recent technological and neuroscientific advances have begun to make this possibl
4 is narrative, using specific examples of how neuroscientific advances have contributed to progress in
5 new approach integrating psychometrics with neuroscientific advances in identifying the computations
6 lue; and 3) clinical scales that incorporate neuroscientific advances in our understanding of anhedon
13 This article overviews a set of interrelated neuroscientific and clinical hypotheses, models, experim
14 can be powerful due to the accessibility to neuroscientific and genetic approaches, but these are ha
21 nding and essential questions using a modern neuroscientific approach that draws on diverse fields su
22 ure in the normative brain is critical for a neuroscientific approach to both typical and atypical ea
23 cross several model species, framing a broad neuroscientific approach to explore topics of neural ada
24 develop a truly social, or 'second-person', neuroscientific approach to these investigations in whic
25 d in SZ, we review evidence from an array of neuroscientific approaches addressing how these cognitiv
26 f personality, integrating psychological and neuroscientific approaches to personality in a testable
27 pite societal debates, few studies have used neuroscientific approaches to validate the claims empiri
29 make full use of the evidence available from neuroscientific, behavioral and societal levels of resea
30 r multidisciplinary research that integrates neuroscientific, behavioral, clinical, and sociocultural
31 ion modulator, which will broadly enable new neuroscientific, biological, neurological and psychiatri
32 our technique opens the avenue of predicting neuroscientific biomarkers of annotators, expanding the
35 ion, these data are of broad interest to the neuroscientific community because we have shown that pro
36 le has become an increasing focus within the neuroscientific community due to its variation across di
39 speech development; and support an emerging neuroscientific consensus which assigns a central role f
40 h prior work, and relevant computational and neuroscientific considerations; some argued for related
41 al Reports, another journal with significant neuroscientific content, was published between 1871 and
42 t practices, including psychotherapy, into a neuroscientific context may ultimately prove more useful
44 ing neural responses to sensory stimulation, neuroscientific data could complement behavioral results
48 e accounts explain a range of behavioral and neuroscientific data on language processing and discuss
50 ion properties, and then review the relevant neuroscientific data on which mechanism brains actually
51 gs potentially broaden the possibilities for neuroscientific data to inform legal decision-making acr
54 y subjects, and thus also contributes to the neuroscientific debate on the neural correlates of consc
58 The neuromodulation device may help advance neuroscientific discovery and preclinical investigations
61 ne of the enduring questions that has driven neuroscientific enquiry in the last century has been the
68 strain second language acquisition; however, neuroscientific evidence for this is scant, and even les
71 Theoretical works in social psychology and neuroscientific evidence have proposed that social rewar
73 advanced substantially since 2000, with new neuroscientific evidence linking early adversity and nur
80 tations in humans is not known, because most neuroscientific experiments on human navigation have foc
83 consistent with views emerging from several neuroscientific fields, suggesting that phase synchroniz
85 gularly does alter, negate, and even reverse neuroscientific findings and conclusions down to the mol
86 beyond previous accounts by bridging between neuroscientific findings and detailed behavioral data, a
91 re of the compassion pattern is reflected in neuroscientific findings, as well as in compassion pract
94 offer experimental findings that integrate a neuroscientific framework on the role of brain oscillati
96 rratives-allowing researchers to easily test neuroscientific hypotheses across multiple ecologically-
97 be useable as a probe for testing cognitive neuroscientific hypotheses that predict neuroanatomical
99 n-making have found empirical support, their neuroscientific implementations have received inconsiste
101 m neuroscientists but that may have profound neuroscientific implications: deep reinforcement learnin
102 etwork constructed solely based on empirical neuroscientific information and plausible assumptions fo
103 ould be sensitive to the social consequences neuroscientific information may have once it enters the
104 task-evoked functional connectivity-areas of neuroscientific inquiry typically considered separately.
107 ght sensitive and provide an overview of the neuroscientific insights gained from such approaches.
110 We foresee SPRiNT responding to growing neuroscientific interests in the parameterization of tim
111 journals did overlap in terms of some shared neuroscientific interests, Brain evidently had a broader
112 cycling in rat and human brains facilitate a neuroscientific interpretation of functional imaging dat
113 a full clinical trial to link decision-based neuroscientific interventions directly with clinical out
114 n of treatments for depression, and inspired neuroscientific investigation based on a new perspective
116 variety of non-human animals, no systematic neuroscientific investigation of animal consciousness ha
118 present a novel approach that starts from a neuroscientific investigation of insect sensory systems
125 is regarded as a promising tool to translate neuroscientific knowledge into brain-guided psychiatric
126 vioral decision-making literature and review neuroscientific knowledge on two contextual influences:
127 sociated with subjects smoking in the modern neuroscientific laboratory environment, however electron
129 arge body of earlier work from the cognitive neuroscientific literature implies a role for delta-band
132 nical trials combining clinical outcomes and neuroscientific measures such as electroencephalogram, m
133 ibute valuable insights into the fundamental neuroscientific mechanisms of action regulation, and ope
134 en, determinants for precision in a range of neuroscientific methods (MRI, M/EEG, EDA, Eye-Tracking,
136 have increasingly sought to employ cognitive neuroscientific methods and data as evidence to influenc
137 ght of the growing prominence of alternative neuroscientific methods and the growing emphasis on more
140 indings also challenge the prospect of using neuroscientific methods to measure utility in a context-
141 Recent evolutions in behavioral paradigms, neuroscientific methods, and computational modeling have
142 of Game Theory with modern psychological and neuroscientific methods, the neuroeconomic approach to t
143 ing, illuminating economic models of choice, neuroscientific models of affective learning, and the wo
145 ther messages from these workshops were that neuroscientific models of decision making could provide
152 account, deeply rooted in psychological and neuroscientific perspectives on animal behaviour, of how
153 ng learning and highlight several avenues of neuroscientific, phylogenetic, and genomic research that
155 neuroscience, the extent and means by which neuroscientific progress will translate into clinical ca
157 hroughout childhood is not only an important neuroscientific question but could also shed light on th
162 interface (BMI), are gaining momentum in the neuroscientific realm, with potential applications rangi
164 People who are involved in neurological and neuroscientific research and practice, as clinicians, re
174 rrently with the wider use of advanced human neuroscientific research methods; principally neuroimagi
179 I review results from a number of strands of neuroscientific research that bear upon our intuitive no
180 direct implications affect a current area of neuroscientific research, and indicates how Hughlings Ja
181 he past two decades between neurological and neuroscientific research, which have seen notable innova
189 ables visualization and analysis of dMRI for neuroscientific studies and patient-specific anatomic as
195 processing, and have implications for future neuroscientific studies of decision making involving ext
197 p; second, he reviews experimental cognitive neuroscientific studies of perception, emotion, and memo
198 puter vision has long drawn inspiration from neuroscientific studies of the human and non-human prima
200 (VSTM) have been well documented, and recent neuroscientific studies suggest that VSTM performance is
201 ve virtual reality (VR) enables naturalistic neuroscientific studies while maintaining experimental c
202 nal philosophical inquiry, and more recently neuroscientific studies, have investigated the sources o
203 cularly important for the advancement of the neuroscientific study of different psychiatric condition
204 pose a unified theoretical framework for the neuroscientific study of general resilience mechanisms.
205 ate a unifying theoretical framework for the neuroscientific study of general resilience mechanisms.
208 ies from across the neurosciences permit the neuroscientific study of the role of sleep in off-line m
211 ngs in light of at least one of four leading neuroscientific theories of consciousness (N = 412 exper
215 luding the ready falsifiability of our view, neuroscientific theories that allow everything but deman
219 bases of a given phenotype, advancing basic neuroscientific understanding and identifying circuits t
221 rpret, making it difficult to evaluate their neuroscientific validity and contribution to understandi
223 domain-general process, the vast majority of neuroscientific work has hitherto focused on individual