Intracortical microstimulation of supplementary eye field impairs ability of monkeys to make serially ordered saccadesTamara K. Berdyyeva, Carl R. Olson
doi: 10.1152/jn.00503.2013pmid: 24453278
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Temporal scaling of neural responses to compressed and dilated natural speech. J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords monkey supplementary eye field microstimulation serial order Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Intracortical microstimulation of supplementary eye field impairs ability of monkeys to make serially ordered saccades Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Intracortical microstimulation of supplementary eye field impairs ability of monkeys to make serially ordered saccades Tamara K. Berdyyeva , Carl R. Olson Journal of Neurophysiology Apr 2014, 111 (8) 1529-1540; DOI: 10.1152/jn.00503.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Intracortical microstimulation of supplementary eye field impairs ability of monkeys to make serially ordered saccades Intracortical microstimulation of supplementary eye field impairs ability of monkeys to make serially ordered saccades Tamara K. Berdyyeva , Carl R. Olson Journal of Neurophysiology Apr 2014, 111 (8) 1529-1540; DOI: 10.1152/jn.00503.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Simultaneous adaptation of the thumb and index finger of the same hand to opposite prism displacements Visuomotor adaptation in Parkinson's disease: effects of perturbation type and medication state Temporal scaling of neural responses to compressed and dilated natural speech Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Muscle activation patterns are bilaterally linked during split-belt treadmill walking in humansM. J. MacLellan, Y. P. Ivanenko, F. Massaad, S. M. Bruijn, J. Duysens, F. Lacquaniti
doi: 10.1152/jn.00437.2013pmid: 24478155
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Split-belt treadmill stepping in infants suggests autonomous pattern generators for the left and right leg in humans . J Neurosci 25 : 6869 – 6876 , 2005 . OpenUrl Abstract / FREE Full Text Previous Next Back to top About the Cover About the Cover Cover image Cover : From Lerner Y, Honey CJ, Katkov M, Hasson U. Temporal scaling of neural responses to compressed and dilated natural speech. J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords Asymmetric Gait motor control sensory feedback Article Abstract METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Muscle activation patterns are bilaterally linked during split-belt treadmill walking in humans Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Muscle activation patterns are bilaterally linked during split-belt treadmill walking in humans M. J. MacLellan , Y. P. Ivanenko , F. Massaad , S. M. Bruijn , J. Duysens , F. Lacquaniti Journal of Neurophysiology Apr 2014, 111 (8) 1541-1552; DOI: 10.1152/jn.00437.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Muscle activation patterns are bilaterally linked during split-belt treadmill walking in humans Muscle activation patterns are bilaterally linked during split-belt treadmill walking in humans M. J. MacLellan , Y. P. Ivanenko , F. Massaad , S. M. Bruijn , J. Duysens , F. Lacquaniti Journal of Neurophysiology Apr 2014, 111 (8) 1541-1552; DOI: 10.1152/jn.00437.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Simultaneous adaptation of the thumb and index finger of the same hand to opposite prism displacements Visuomotor adaptation in Parkinson's disease: effects of perturbation type and medication state Temporal scaling of neural responses to compressed and dilated natural speech Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Cerebellar fastigial nucleus influence on ipsilateral abducens activity during saccadesYoshiko Kojima, Farrel R. Robinson, Robijanto Soetedjo
doi: 10.1152/jn.00567.2013pmid: 24478158
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Neuroophthalmology 16 : 65 – 74 , 1996 . OpenUrl Previous Next Back to top About the Cover About the Cover Cover image Cover : From Lerner Y, Honey CJ, Katkov M, Hasson U. Temporal scaling of neural responses to compressed and dilated natural speech. J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords cerebellum motoneuron agonist antagonist saccade Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Cerebellar fastigial nucleus influence on ipsilateral abducens activity during saccades Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Cerebellar fastigial nucleus influence on ipsilateral abducens activity during saccades Yoshiko Kojima , Farrel R. Robinson , Robijanto Soetedjo Journal of Neurophysiology Apr 2014, 111 (8) 1553-1563; DOI: 10.1152/jn.00567.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Cerebellar fastigial nucleus influence on ipsilateral abducens activity during saccades Cerebellar fastigial nucleus influence on ipsilateral abducens activity during saccades Yoshiko Kojima , Farrel R. Robinson , Robijanto Soetedjo Journal of Neurophysiology Apr 2014, 111 (8) 1553-1563; DOI: 10.1152/jn.00567.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Self-motion improves head direction cell tuning Phase maintenance in a rhythmic motor pattern during temperature changes in vivo Depressed GABA and glutamate synaptic signaling by 5-HT 1A receptors in the nucleus tractus solitarii and their role in cardiorespiratory function Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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High-frequency electrical stimulation of the human skin induces heterotopical mechanical hyperalgesia, heat hyperalgesia, and enhanced responses to nonnociceptive vibrotactile inputEmanuel N. van den Broeke, André Mouraux
doi: 10.1152/jn.00651.2013pmid: 24453277
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Temporal scaling of neural responses to compressed and dilated natural speech. J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords high-frequency stimulation secondary hyperalgesia event-related potentials mechanical heat Article Abstract METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following High-frequency electrical stimulation of the human skin induces heterotopical mechanical hyperalgesia, heat hyperalgesia, and enhanced responses to nonnociceptive vibrotactile input Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools High-frequency electrical stimulation of the human skin induces heterotopical mechanical hyperalgesia, heat hyperalgesia, and enhanced responses to nonnociceptive vibrotactile input Emanuel N. van den Broeke , André Mouraux Journal of Neurophysiology Apr 2014, 111 (8) 1564-1573; DOI: 10.1152/jn.00651.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share High-frequency electrical stimulation of the human skin induces heterotopical mechanical hyperalgesia, heat hyperalgesia, and enhanced responses to nonnociceptive vibrotactile input High-frequency electrical stimulation of the human skin induces heterotopical mechanical hyperalgesia, heat hyperalgesia, and enhanced responses to nonnociceptive vibrotactile input Emanuel N. van den Broeke , André Mouraux Journal of Neurophysiology Apr 2014, 111 (8) 1564-1573; DOI: 10.1152/jn.00651.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Temporal scaling of neural responses to compressed and dilated natural speech Corticospinal excitability underlying digit force planning for grasping in humans Sensory convergence in the parieto-insular vestibular cortex Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Characterization of pruriceptive trigeminothalamic tract neurons in ratsHannah R. Moser, Glenn J. Giesler, Jr.
doi: 10.1152/jn.00668.2013pmid: 24478156
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Relief of itch by scratching: state-dependent inhibition of primate spinothalamic tract neurons . Nat Neurosci 12 : 544 – 546 , 2009 . OpenUrl CrossRef Medline Web of Science ↵ Davidson S , Zhang X , Khasabov SG , Moser HR , Honda CN , Simone DA , Giesler GJ Jr . . Pruriceptive spinothalamic tract neurons: physiological properties and projection targets in the primate . J Neurophysiol 108 : 1711 – 1723 , 2012 . OpenUrl Abstract / FREE Full Text ↵ Drzezga A , Darsow U , Treede RD , Siebner H , Frisch M , Munz F , Weilke F , Ring J , Schwaiger M , Bartenstein P . Central activation by histamine-induced itch: analogies to pain processing: a correlational analysis of O-15 H 2 O positron emission tomography studies . Pain 92 : 295 – 305 , 2001 . OpenUrl CrossRef Medline Web of Science ↵ Fjellner B , Hägermark Ö . Potentiation of histamine-induced itch and flare responses in human skin by the enkephalin analog FK 33–824, β-endorphin and morphine . Arch Dermatol Res 274 : 29 – 37 , 1982 . 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OpenUrl Abstract / FREE Full Text Previous Next Back to top About the Cover About the Cover Cover image Cover : From Lerner Y, Honey CJ, Katkov M, Hasson U. Temporal scaling of neural responses to compressed and dilated natural speech. J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords itch pain trigeminothalamic tract Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Characterization of pruriceptive trigeminothalamic tract neurons in rats Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Characterization of pruriceptive trigeminothalamic tract neurons in rats Hannah R. Moser , Glenn J. Giesler Journal of Neurophysiology Apr 2014, 111 (8) 1574-1589; DOI: 10.1152/jn.00668.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Characterization of pruriceptive trigeminothalamic tract neurons in rats Characterization of pruriceptive trigeminothalamic tract neurons in rats Hannah R. Moser , Glenn J. Giesler Journal of Neurophysiology Apr 2014, 111 (8) 1574-1589; DOI: 10.1152/jn.00668.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Simultaneous adaptation of the thumb and index finger of the same hand to opposite prism displacements Visuomotor adaptation in Parkinson's disease: effects of perturbation type and medication state Temporal scaling of neural responses to compressed and dilated natural speech Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Neonatal infraorbital nerve crush-induced CNS synaptic plasticity and functional recoveryFu-Sun Lo, Shuxin Zhao, Reha S. Erzurumlu
doi: 10.1152/jn.00658.2013pmid: 24478162
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Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords brain stem Nerve damage rat silent synapses trigeminal Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Neonatal infraorbital nerve crush-induced CNS synaptic plasticity and functional recovery Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Neonatal infraorbital nerve crush-induced CNS synaptic plasticity and functional recovery Fu-Sun Lo , Shuxin Zhao , Reha S. Erzurumlu Journal of Neurophysiology Apr 2014, 111 (8) 1590-1600; DOI: 10.1152/jn.00658.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Neonatal infraorbital nerve crush-induced CNS synaptic plasticity and functional recovery Neonatal infraorbital nerve crush-induced CNS synaptic plasticity and functional recovery Fu-Sun Lo , Shuxin Zhao , Reha S. Erzurumlu Journal of Neurophysiology Apr 2014, 111 (8) 1590-1600; DOI: 10.1152/jn.00658.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Simultaneous adaptation of the thumb and index finger of the same hand to opposite prism displacements Visuomotor adaptation in Parkinson's disease: effects of perturbation type and medication state Temporal scaling of neural responses to compressed and dilated natural speech Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Theta phase shift in spike timing and modulation of gamma oscillation: a dynamic code for spatial alternation during fixation in rat hippocampal area CA1Muneyoshi Takahashi, Hiroshi Nishida, A. David Redish, Johan Lauwereyns
doi: 10.1152/jn.00395.2013pmid: 24478159
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J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords theta rhythm gamma oscillations spike phase shift nose-poking paradigm memory Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Theta phase shift in spike timing and modulation of gamma oscillation: a dynamic code for spatial alternation during fixation in rat hippocampal area CA1 Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Theta phase shift in spike timing and modulation of gamma oscillation: a dynamic code for spatial alternation during fixation in rat hippocampal area CA1 Muneyoshi Takahashi , Hiroshi Nishida , A. David Redish , Johan Lauwereyns Journal of Neurophysiology Apr 2014, 111 (8) 1601-1614; DOI: 10.1152/jn.00395.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Theta phase shift in spike timing and modulation of gamma oscillation: a dynamic code for spatial alternation during fixation in rat hippocampal area CA1 Theta phase shift in spike timing and modulation of gamma oscillation: a dynamic code for spatial alternation during fixation in rat hippocampal area CA1 Muneyoshi Takahashi , Hiroshi Nishida , A. David Redish , Johan Lauwereyns Journal of Neurophysiology Apr 2014, 111 (8) 1601-1614; DOI: 10.1152/jn.00395.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Temporal scaling of neural responses to compressed and dilated natural speech Corticospinal excitability underlying digit force planning for grasping in humans Sensory convergence in the parieto-insular vestibular cortex Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Reorganization of muscle synergies during multidirectional reaching in the horizontal plane with experimental muscle painSilvia Muceli, Deborah Falla, Dario Farina
doi: 10.1152/jn.00147.2013pmid: 24453279
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Nat Neurosci 2 : 162 – 167 , 1999 . OpenUrl CrossRef Medline Web of Science ↵ Tucker K , Butler J , Graven-Nielsen T , Riek S , Hodges P . Motor unit recruitment strategies are altered during deep-tissue pain . J Neurosci 29 : 10820 – 10826 , 2009 . OpenUrl Abstract / FREE Full Text Previous Next Back to top About the Cover About the Cover Cover image Cover : From Lerner Y, Honey CJ, Katkov M, Hasson U. Temporal scaling of neural responses to compressed and dilated natural speech. J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords muscle synergies Experimental muscle pain reaching Article Abstract METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Reorganization of muscle synergies during multidirectional reaching in the horizontal plane with experimental muscle pain Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Reorganization of muscle synergies during multidirectional reaching in the horizontal plane with experimental muscle pain Silvia Muceli , Deborah Falla , Dario Farina Journal of Neurophysiology Apr 2014, 111 (8) 1615-1630; DOI: 10.1152/jn.00147.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Reorganization of muscle synergies during multidirectional reaching in the horizontal plane with experimental muscle pain Reorganization of muscle synergies during multidirectional reaching in the horizontal plane with experimental muscle pain Silvia Muceli , Deborah Falla , Dario Farina Journal of Neurophysiology Apr 2014, 111 (8) 1615-1630; DOI: 10.1152/jn.00147.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Finger-thumb coupling contributes to exaggerated thumb flexion in stroke survivors Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Simultaneous adaptation of the thumb and index finger of the same hand to opposite prism displacements Show more Articles Related Articles Web of Science PubMed Google Scholar Most Read Most Cited Recruitment in Retractor Bulbi Muscle During Eyeblink Conditioning: EMG Analysis and Common-Drive Model Predictive Reward Signal of Dopamine Neurons Somatic calcium level reports integrated spiking activity of cerebellar interneurons in vitro and in vivo Fast Functional Imaging of Single Neurons Using Random-Access Multiphoton (RAMP) Microscopy Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect More... 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Fast feedback control involves two independent processes utilizing knowledge of limb dynamicsIsaac Kurtzer, Frédéric Crevecoeur, Stephen H. Scott
doi: 10.1152/jn.00514.2013pmid: 24478157
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OpenUrl Abstract / FREE Full Text Previous Next Back to top About the Cover About the Cover Cover image Cover : From Lerner Y, Honey CJ, Katkov M, Hasson U. Temporal scaling of neural responses to compressed and dilated natural speech. J Neurophysiol ; published ahead of print March 19, 2014, doi: 10.1152/jn.00497.2013 . Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords long-latency reflex multijoint dynamics feedback Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS ACKNOWLEDGMENTS Footnotes REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. 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Large-scale identification of proteins involved in the development of a sexually dimorphic behaviorGünther K. H. Zupanc, Iulian Ilieş, Ruxandra F. Sîrbulescu, Marianne M. Zupanc
doi: 10.1152/jn.00750.2013pmid: 24478160
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Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords sexual dimorphism weakly electric fish proteomics neural oscillator astrocytes Article Abstract MATERIALS AND METHODS RESULTS DISCUSSION GRANTS DISCLOSURES AUTHOR CONTRIBUTIONS REFERENCES Figures & Data Info PDF Alert me when this article is cited Alert me if a correction is posted Email Thank you for your interest in spreading the word on Journal of Neurophysiology. NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address. Your Email * Your Name * Send To * Enter multiple addresses on separate lines or separate them with commas. You are going to email the following Large-scale identification of proteins involved in the development of a sexually dimorphic behavior Message Subject (Your Name) has sent you a message from Journal of Neurophysiology Message Body (Your Name) thought you would like to see the Journal of Neurophysiology web site. Your Personal Message Print Citation Tools Large-scale identification of proteins involved in the development of a sexually dimorphic behavior Günther K. H. Zupanc , Iulian Ilieş , Ruxandra F. Sîrbulescu , Marianne M. Zupanc Journal of Neurophysiology Apr 2014, 111 (8) 1646-1654; DOI: 10.1152/jn.00750.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Large-scale identification of proteins involved in the development of a sexually dimorphic behavior Large-scale identification of proteins involved in the development of a sexually dimorphic behavior Günther K. H. Zupanc , Iulian Ilieş , Ruxandra F. Sîrbulescu , Marianne M. Zupanc Journal of Neurophysiology Apr 2014, 111 (8) 1646-1654; DOI: 10.1152/jn.00750.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Combining d -cycloserine with motor training does not result in improved general motor learning in neurologically intact people or in people with stroke Localizing evoked cortical activity associated with balance reactions: does the anterior cingulate play a role? 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