Default: Human Brain Mapping

ISSN: 1065-9471

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Human Brain Mapping Q1 Unclaimed

Wiley-Liss Inc. United States
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Human Brain Mapping is a journal indexed in SJR in Neurology (clinical) and Anatomy with an H index of 209. It has a price of 2500 €. It has an SJR impact factor of 1,688 and it has a best quartile of Q1. It is published in English. It has an SJR impact factor of 1,688.

Human Brain Mapping focuses its scope in these topics and keywords: brain, connectivity, functional, fmri, evidence, networks, parkinsons, state, activity, human, ...

Type: Journal

Type of Copyright:

Languages: English

Open Access Policy: Open Choice

Type of publications:

Publication frecuency: -

Metrics

Human Brain Mapping

1,688

SJR Impact factor

209

H Index

374

Total Docs (Last Year)

1158

Total Docs (3 years)

28108

Total Refs

6057

Total Cites (3 years)

1150

Citable Docs (3 years)

4.69

Cites/Doc (2 years)

75.16

Ref/Doc

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Aims and Scope


brain, connectivity, functional, fmri, evidence, networks, parkinsons, state, activity, human, visual, network, ventral, control, study, neural, striatum, disease, dorsal, learning, inhibition, impulsive, imaging,



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Neural correlates of switching set as measured in fast, event-related functional magnetic resonance imaging

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Neural correlates of syntactic transformations

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Changes in neural circuitry of language before and after treatment of major depression

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A PET investigation of implicit and explicit sequence learning

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Abnormal asymmetry of white matter integrity in schizophrenia revealed by voxelwise diffusion tensor imaging

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White matter tract integrity in aging and Alzheimer's disease

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Neuromodulation of reinforced skill learning reveals the causal function of prefrontal cortex

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Separating phonological and semantic processing in auditory sentence processing: A high-resolution event-related brain potential study

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Comparison of continuous overt speech fMRI using BOLD and arterial spin labeling

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Modality independence of word comprehension

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Different activation dynamics in multiple neural systems during simulated driving

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