Search

Search Funnelback University

Search powered by Funnelback
101 - 150 of 183 search results for `Cambridge Neuroscience network`
  1. Fully-matching results

  2. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fbrain-network-disintegration-during-sedation-is-mediated-by-the-complexity-of-sparsely-connected-regions%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Brain network disintegration during sedation is mediated by the complexity of sparsely connected regions. ... complexity of sparsely connected regions.” — Cambridge Neuroscience"
  3. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fnetwork-connectivity-and-structural-correlates-of-survival-in-progressive-supranuclear-palsy-and-corticobasal-syndrome%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Network connectivity and structural correlates of survival in progressive supranuclear palsy and corticobasal syndrome. ... supranuclear palsy and corticobasal syndrome.” — Cambridge
  4. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fbrain-functional-network-integrity-sustains-cognitive-function-despite-atrophy-in-presymptomatic-genetic-frontotemporal-dementia%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Brain functional network integrity sustains cognitive function despite atrophy in presymptomatic genetic frontotemporal dementia. ... in presymptomatic genetic frontotemporal dementia.” —
  5. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Ffunctional-and-structural-brain-network-correlates-of-visual-hallucinations-in-lewy-body-dementia%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Functional and structural brain network correlates of visual hallucinations in Lewy body dementia. ... dementia.” — Cambridge Neuroscience" data-secret="eh9ljRPewg" frameborder="0" marginwidth=
  6. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Felectroencephalographic-derived-network-differences-in-lewy-body-dementia-compared-to-alzheimers-disease-patients%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Electroencephalographic derived network differences in Lewy body dementia compared to Alzheimer’s disease patients. ... s disease patients.” — Cambridge Neuroscience" data-secret="AsXuWyhcHp"
  7. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fthetamodulated-feedforward-network-generates-rate-and-phase-coded-firing-in-the-entorhinohippocampal-system%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Theta-modulated feedforward network generates rate and phase coded firing in the entorhino-hippocampal system. ... in the entorhino-hippocampal system.” — Cambridge Neuroscience"
  8. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fthe-emergence-of-the-social-brain-network-evidence-from-typical-and-atypical-development%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk The emergence of the social brain network: evidence from typical and atypical development. ... development.” — Cambridge Neuroscience" data-secret="pFllrZVVxh" frameborder="0" marginwidth="0"
  9. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fcholinergic-induction-of-network-oscillations-at-40-hz-in-the-hippocampus-in-vitro%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Cholinergic induction of network oscillations at 40 Hz in the hippocampus in vitro. ... vitro.” — Cambridge Neuroscience" data-secret="ATvB5G2Pum" frameborder="0" marginwidth="0"
  10. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Ffailure-to-deactivate-the-default-mode-network-indicates-a-possible-endophenotype-of-autism%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Failure to deactivate the default mode network indicates a possible endophenotype of autism. ... autism.” — Cambridge Neuroscience" data-secret="hHj0LdSnZr" frameborder="0" marginwidth="0"
  11. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fconsciousness-and-the-prefrontal-parietal-network-insights-from-attention-working-memory-and-chunking%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Consciousness and the prefrontal parietal network: insights from attention, working memory, and chunking. ... chunking.” — Cambridge Neuroscience" data-secret="tKLGTtks1U" frameborder="0"
  12. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fa-common-prefrontalparietal-network-for-mnemonic-and-mathematical-recoding-strategies-within-working-memory%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk A common prefrontal-parietal network for mnemonic and mathematical recoding strategies within working memory. ... within working memory.” — Cambridge Neuroscience" data-secret="RNwkBJ3pN2"
  13. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fhigherorder-sensorimotor-circuit-of-the-brains-global-network-supports-human-consciousness-2%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Higher-order sensorimotor circuit of the brain’s global network supports human consciousness rich 600 338 <blockquote class="wp-embedded-content" ... embed/#?secret=5YRxNtruTa" width="600" height
  14. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fbrain-network-integration-dynamics-are-associated-with-loss-and-recovery-of-consciousness-induced-by-sevoflurane%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Brain network integration dynamics are associated with loss and recovery of consciousness induced by sevoflurane. ... with loss and recovery of consciousness induced by sevoflurane.” —
  15. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fthe-medial-frontalprefrontal-network-for-altered-awareness-and-control-of-action-in-corticobasal-syndrome%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk The medial frontal-prefrontal network for altered awareness and control of action in corticobasal syndrome. ... and control of action in corticobasal syndrome.” — Cambridge Neuroscience"
  16. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fmemory-recovery-in-relation-to-default-mode-network-impairment-and-neurite-density-during-brain-tumor-treatment%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Memory recovery in relation to default mode network impairment and neurite density during brain tumor treatment. ... relation to default mode network impairment and neurite density during brain
  17. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fperisomatic-feedback-inhibition-underlies-cholinergically-induced-fast-network-oscillations-in-the-rat-hippocampus-in-vitro%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Perisomatic feedback inhibition underlies cholinergically induced fast network oscillations in the rat hippocampus in vitro. ... fast network oscillations in the rat hippocampus in vitro.” —
  18. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fdysconnectivity-of-a-brain-functional-network-was-associated-with-blood-inflammatory-markers-in-depression-2%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Dysconnectivity of a brain functional network was associated with blood inflammatory markers in depression. ... associated with blood inflammatory markers in depression.” — Cambridge
  19. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fstructural-connectivity-of-the-multiple-demand-network-in-humans-and-comparison-to-the-macaque-brain%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Structural connectivity of the multiple demand network in humans and comparison to the macaque brain. ... network in humans and comparison to the macaque brain.” — Cambridge Neuroscience"
  20. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fthe-structure-and-global-distribution-of-the-endoplasmic-reticulum-network-are-actively-regulated-by-lysosomes%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk The structure and global distribution of the endoplasmic reticulum network are actively regulated by lysosomes. ... the endoplasmic reticulum network are actively regulated by lysosomes.” —
  21. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fcohort-profile-update-the-neuroscience-in-psychiatry-network-nspn-2400-cohort-during-the-covid19-pandemic%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Cohort Profile Update: The Neuroscience in Psychiatry Network (NSPN) 2400 cohort during the COVID-19 pandemic. ... in Psychiatry Network (NSPN) 2400 cohort during the COVID-19 pandemic.” —
  22. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fdissociating-inhibition-attention-and-response-control-in-the-frontoparietal-network-using-functional-magnetic-resonance-imaging%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Dissociating inhibition, attention, and response control in the frontoparietal network using functional magnetic resonance imaging. ... in the frontoparietal network using functional magnetic
  23. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fp37-modelling-the-network-origins-of-the-brains-synergistic-dynamics-and-their-disruption-in-chronically-unconscious-patients%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk P-37 Modelling the network origins of the brain’s synergistic dynamics and their disruption in chronically unconscious patients rich 600 338 ... 37 Modelling the network origins of the brain’s
  24. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fuse-of-a-deep-recurrent-neural-network-to-reduce-wind-noise-effects-on-judged-speech-intelligibility-and-sound-quality%2F&format=xml
    1.0 Cambridge Neuroscience https://neuroscience.cam.ac.uk Use of a Deep Recurrent Neural Network to Reduce Wind Noise: Effects on Judged Speech Intelligibility and Sound Quality. ... 0puqfBneR7" width="600" height="338" title="“Use of a Deep Recurrent
  25. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fearly-career-researchers%2Fpostdoc-neuroscience-network%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"PostDoc Neuroscience Network (PNN)","type":"rich","width":600,"height":338,"html":".
  26. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fnetwork-dynamics-scale-with-levels-of-awareness-2%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Network dynamics scale with levels of awareness.","type":"rich","width":600,"height":338,"html":".
  27. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fnetwork-dynamics-scale-with-levels-of-awareness%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Network dynamics scale with levels of awareness","type":"rich","width":600,"height":338,"html":".
  28. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fdefault-mode-network-connectivity-during-task-execution%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Default mode network connectivity during task execution.","type":"rich","width":600,"height":338,"html":".
  29. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Faltered-network-stability-in-progressive-supranuclear-palsy%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Altered network stability in progressive supranuclear palsy.","type":"rich","width":600,"height":338,"html":".
  30. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fproperties-of-a-random-attachment-growing-network%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Properties of a random attachment growing network.","type":"rich","width":600,"height":338,"html":".
  31. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fmethylphenidatemediated-motor-control-network-enhancement-in-patients-with-traumatic-brain-injury%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Methylphenidate-mediated motor control network enhancement in patients with traumatic brain
  32. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fdefault-mode-network-engagement-beyond-selfreferential-internal-mentation%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Default Mode Network Engagement Beyond Self-Referential Internal Mentation.","type":"rich","width":600,"height":338,"html":".
  33. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fspectral-diversity-in-default-mode-network-connectivity-reflects-behavioral-state%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Spectral Diversity in Default Mode Network Connectivity Reflects Behavioral
  34. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fangular-default-mode-network-connectivity-across-working-memory-load%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Angular default mode network connectivity across working memory load.","type":"rich","width":600,"height":338,"html":".
  35. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fcognitive-flexibility-a-default-network-and-basal-ganglia-connectivity-perspective%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Cognitive Flexibility: A Default Network and Basal Ganglia Connectivity
  36. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Faltered-functional-connectivity-in-the-motor-network-after-traumatic-brain-injury%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Altered functional connectivity in the motor network after traumatic brain
  37. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fatomoxetine-and-citalopram-alter-brain-network-organisation-in-parkinsons-disease%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Atomoxetine and citalopram alter brain network organisation in Parkinsonu2019s
  38. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fatomoxetine-and-citalopram-alter-brain-network-organization-in-parkinsons-disease%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Atomoxetine and citalopram alter brain network organization in Parkinson’s
  39. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Ffunctional-network-resilience-to-pathology-in-presymptomatic-genetic-frontotemporal-dementia%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Functional network resilience to pathology in presymptomatic genetic frontotemporal
  40. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fatomoxetine-restores-the-response-inhibition-network-in-parkinsons-disease%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Atomoxetine restores the response inhibition network in Parkinson’s
  41. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fimpaired-sensory-evidence-accumulation-and-network-function-in-lewy-body-dementia%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Impaired sensory evidence accumulation and network function in Lewy body
  42. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fregional-neuronal-network-failure-and-cognition-in-lateonset-sporadic-alzheimer-disease%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Regional neuronal network failure and cognition in late-onset sporadic Alzheimer
  43. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fa-frontotemporoparietal-network-common-to-initiating-and-responding-to-joint-attention-bids%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"A frontotemporoparietal network common to initiating and responding to joint attention
  44. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fcomment-on-wandering-minds-the-default-network-and-stimulusindependent-thought%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Comment on “Wandering minds: the default network and stimulus-independent
  45. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fa-generative-network-model-of-neurodevelopmental-diversity-in-structural-brain-organization%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"A generative network model of neurodevelopmental diversity in structural brain
  46. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fnetwork-control-principles-predict-neuron-function-in-the-caenorhabditis-elegans-connectome%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Network control principles predict neuron function in the Caenorhabditis elegans
  47. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fcombining-network-topology-and-information-theory-to-construct-representative-brain-networks%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Combining network topology and information theory to construct representative brain
  48. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fgabaergic-cortical-network-physiology-in-frontotemporal-lobar-degeneration%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"GABAergic cortical network physiology in frontotemporal lobar degeneration.","type":"rich","width":600,"height":338,"html":".
  49. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fletter-elucidating-the-principles-of-brain-network-organization-through-neurosurgery%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Letter: Elucidating the Principles of Brain Network Organization Through
  50. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fneural-network-fusion-a-novel-ctmr-aortic-aneurysm-image-segmentation-method%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Neural network fusion: a novel CT-MR Aortic Aneurysm image segmentation
  51. https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2…

    https://neuroscience.cam.ac.uk/wp-json/oembed/1.0/embed?url=https%3A%2F%2Fneuroscience.cam.ac.uk%2Fpublications%2Fsearching-for-consistent-brain-network-topologies-across-the-garden-of-shortest-forking-paths%2F
    {"version":"1.0","provider_name":"Cambridge Neuroscience","provider_url":"https://neuroscience.cam.ac.uk","title":"Searching for Consistent Brain Network Topologies Across the Garden of (Shortest) Forking

Search history

Recently clicked results

Recently clicked results

Your click history is empty.

Recent searches

Recent searches

Your search history is empty.