Visual and vestibular perceptual thresholds each demonstrate better precision at specific frequencies and also exhibit optimal integrationFaisal Karmali, Koeun Lim, Daniel M. Merfeld
doi: 10.1152/jn.00332.2013pmid: 24371292
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OpenUrl CrossRef Medline Web of Science 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 vision semicircular canals otoliths roll tilt psychophysics human Article Abstract METHODS AND MATERIALS 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 Visual and vestibular perceptual thresholds each demonstrate better precision at specific frequencies and also exhibit optimal integration 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 Visual and vestibular perceptual thresholds each demonstrate better precision at specific frequencies and also exhibit optimal integration Faisal Karmali , Koeun Lim , Daniel M. Merfeld Journal of Neurophysiology Jun 2014, 111 (12) 2393-2403; DOI: 10.1152/jn.00332.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Visual and vestibular perceptual thresholds each demonstrate better precision at specific frequencies and also exhibit optimal integration Visual and vestibular perceptual thresholds each demonstrate better precision at specific frequencies and also exhibit optimal integration Faisal Karmali , Koeun Lim , Daniel M. Merfeld Journal of Neurophysiology Jun 2014, 111 (12) 2393-2403; DOI: 10.1152/jn.00332.2013 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? Is spinal excitability of the triceps surae mainly affected by muscle activity or body position? Show more Articles Related Articles 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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Distinct roles for Cav2.1–2.3 in activity-dependent synaptic dynamicsUlises M. Ricoy, Matthew E. Frerking
doi: 10.1152/jn.00335.2013pmid: 24523520
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OpenUrl CrossRef Medline Web of Science 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 hippocampus synaptic dynamics glutamate calcium channels plasticity 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 Distinct roles for Cav2.1–2.3 in activity-dependent synaptic dynamics 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 Distinct roles for Ca v 2.1–2.3 in activity-dependent synaptic dynamics Ulises M. Ricoy , Matthew E. Frerking Journal of Neurophysiology Jun 2014, 111 (12) 2404-2413; DOI: 10.1152/jn.00335.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Distinct roles for Ca v 2.1–2.3 in activity-dependent synaptic dynamics Distinct roles for Ca v 2.1–2.3 in activity-dependent synaptic dynamics Ulises M. Ricoy , Matthew E. Frerking Journal of Neurophysiology Jun 2014, 111 (12) 2404-2413; DOI: 10.1152/jn.00335.2013 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 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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Perturbation schedule does not alter retention of a locomotor adaptation across daysSara J. Hussain, Susanne M. Morton
doi: 10.1152/jn.00570.2013pmid: 24647433
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Saccade adaptation improves in response to a gradually introduced stimulus perturbation . Neurosci Lett 500 : 207 – 211 , 2011 . OpenUrl CrossRef Medline 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 motor learning motor adaptation locomotion walking retention human 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 Perturbation schedule does not alter retention of a locomotor adaptation across days 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 Perturbation schedule does not alter retention of a locomotor adaptation across days Sara J. Hussain , Susanne M. Morton Journal of Neurophysiology Jun 2014, 111 (12) 2414-2422; DOI: 10.1152/jn.00570.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Perturbation schedule does not alter retention of a locomotor adaptation across days Perturbation schedule does not alter retention of a locomotor adaptation across days Sara J. Hussain , Susanne M. Morton Journal of Neurophysiology Jun 2014, 111 (12) 2414-2422; DOI: 10.1152/jn.00570.2013 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 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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Vestibular nucleus neurons respond to hindlimb movement in the decerebrate catMilad S. Arshian, Candace E. Hobson, Michael F. Catanzaro, Daniel J. Miller, Sonya R. Puterbaugh, Lucy A. Cotter, Bill J. Yates, Andrew A. McCall
doi: 10.1152/jn.00855.2013pmid: 24671527
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Asymmetry of foot position and weight distribution channels the inter-leg coordination dynamics of standing . Exp Brain Res 222 : 333 – 344 , 2012 . OpenUrl CrossRef Medline Web of Science ↵ Welgampola MS , Colebatch JG . Vestibulospinal reflexes: quantitative effects of sensory feedback and postural task . Exp Brain Res 139 : 345 – 353 , 2001 . OpenUrl CrossRef Medline Web of Science ↵ Wilson VJ , Yamagata Y , Yates BJ , Schor RH , Nonaka S . Response of vestibular neurons to head rotations in vertical planes. III. Response of vestibulocollic neurons to vestibular and neck stimulation . J Neurophysiol 64 : 1695 – 1703 , 1990 . 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 multisensory integration Hindlimb balance locomotion Proprioceptor 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 Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat 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 Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Milad S. Arshian , Candace E. Hobson , Michael F. Catanzaro , Daniel J. Miller , Sonya R. Puterbaugh , Lucy A. Cotter , Bill J. Yates , Andrew A. McCall Journal of Neurophysiology Jun 2014, 111 (12) 2423-2432; DOI: 10.1152/jn.00855.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Milad S. Arshian , Candace E. Hobson , Michael F. Catanzaro , Daniel J. Miller , Sonya R. Puterbaugh , Lucy A. Cotter , Bill J. Yates , Andrew A. McCall Journal of Neurophysiology Jun 2014, 111 (12) 2423-2432; DOI: 10.1152/jn.00855.2013 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 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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Temporal scaling of neural responses to compressed and dilated natural speechY. Lerner, C. J. Honey, M. Katkov, U. Hasson
doi: 10.1152/jn.00497.2013pmid: 24647432
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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 fMRI real-life auditory stimuli speed of information processing slow and fast rates of speech 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. 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J. Honey , M. Katkov , U. Hasson Journal of Neurophysiology Jun 2014, 111 (12) 2433-2444; DOI: 10.1152/jn.00497.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Contrasting the roles of the supplementary and frontal eye fields in ocular decision making Visual and vestibular perceptual thresholds each demonstrate better precision at specific frequencies and also exhibit optimal integration Synaptic excitation is regulated by the postsynaptic dSK channel at the Drosophila larval NMJ Show more Articles Related Articles 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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Sensory convergence in the parieto-insular vestibular cortexMichael E. Shinder, Shawn D. Newlands
doi: 10.1152/jn.00731.2013pmid: 24671533
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OpenUrl CrossRef Medline Web of Science 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 insula multisensory self-motion sensory integration spatial orientation 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 Sensory convergence in the parieto-insular vestibular cortex 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 Sensory convergence in the parieto-insular vestibular cortex Michael E. Shinder , Shawn D. Newlands Journal of Neurophysiology Jun 2014, 111 (12) 2445-2464; DOI: 10.1152/jn.00731.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Sensory convergence in the parieto-insular vestibular cortex Sensory convergence in the parieto-insular vestibular cortex Michael E. Shinder , Shawn D. Newlands Journal of Neurophysiology Jun 2014, 111 (12) 2445-2464; DOI: 10.1152/jn.00731.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Corticospinal excitability underlying digit force planning for grasping in humans Temporal scaling of neural responses to compressed and dilated natural speech Show more Articles Related Articles 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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Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedbackJessica X. Brooks, Kathleen E. Cullen
doi: 10.1152/jn.00600.2013pmid: 24671531
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Table of Contents Back Matter (PDF) Ed Board (PDF) Front Matter (PDF) Keywords sensory coding self-motion response selectivity efference copy voluntary movement vestibular proprioception 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 Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedback 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 Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedback Jessica X. Brooks , Kathleen E. Cullen Journal of Neurophysiology Jun 2014, 111 (12) 2465-2478; DOI: 10.1152/jn.00600.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedback Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedback Jessica X. Brooks , Kathleen E. Cullen Journal of Neurophysiology Jun 2014, 111 (12) 2465-2478; DOI: 10.1152/jn.00600.2013 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 Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Show more Articles Related Articles 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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Self-motion improves head direction cell tuningMichael E. Shinder, Jeffrey S. Taube
doi: 10.1152/jn.00512.2013pmid: 24671528
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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 self-motion vestibular head direction cell anterodorsal thalamus passive restraint 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. 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Taube Journal of Neurophysiology Jun 2014, 111 (12) 2479-2492; DOI: 10.1152/jn.00512.2013 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 Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Show more Articles Related Articles 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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Depressed GABA and glutamate synaptic signaling by 5-HT1A receptors in the nucleus tractus solitarii and their role in cardiorespiratory functionTim D. Ostrowski, Daniela Ostrowski, Eileen M. Hasser, David D. Kline
doi: 10.1152/jn.00764.2013pmid: 24671532
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Neurochemistry of the nodose ganglion . Prog Neurobiol 52 : 79 – 107 , 1997 . OpenUrl CrossRef Medline Web of Science 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 serotonin receptors autonomic nervous system patch clamp EPSC IPSC 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 Depressed GABA and glutamate synaptic signaling by 5-HT1A receptors in the nucleus tractus solitarii and their role in cardiorespiratory function 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 Depressed GABA and glutamate synaptic signaling by 5-HT 1A receptors in the nucleus tractus solitarii and their role in cardiorespiratory function Tim D. Ostrowski , Daniela Ostrowski , Eileen M. Hasser , David D. Kline Journal of Neurophysiology Jun 2014, 111 (12) 2493-2504; DOI: 10.1152/jn.00764.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Depressed GABA and glutamate synaptic signaling by 5-HT 1A receptors in the nucleus tractus solitarii and their role in cardiorespiratory function Depressed GABA and glutamate synaptic signaling by 5-HT 1A receptors in the nucleus tractus solitarii and their role in cardiorespiratory function Tim D. Ostrowski , Daniela Ostrowski , Eileen M. Hasser , David D. Kline Journal of Neurophysiology Jun 2014, 111 (12) 2493-2504; DOI: 10.1152/jn.00764.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Sensory convergence in the parieto-insular vestibular cortex Organization of local horizontal functional interactions between neurons in the inferior temporal cortex of macaque monkeys Early vestibular processing does not discriminate active from passive self-motion if there is a discrepancy between predicted and actual proprioceptive feedback Show more Articles Related Articles 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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Adaptation of scanning saccades co-occurs in different coordinate systemsDelphine Lévy-Bencheton, Denis Pélisson, Muriel Panouillères, Christian Urquizar, Caroline Tilikete, Laure Pisella
doi: 10.1152/jn.00733.2013pmid: 24647436
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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 scanning saccades memory-guided saccades visually guided remapping reference frame 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. 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Your Personal Message Print Citation Tools Adaptation of scanning saccades co-occurs in different coordinate systems Delphine Lévy-Bencheton , Denis Pélisson , Muriel Panouillères , Christian Urquizar , Caroline Tilikete , Laure Pisella Journal of Neurophysiology Jun 2014, 111 (12) 2505-2515; DOI: 10.1152/jn.00733.2013 Citation Manager Formats BibTeX EndNote (tagged) EndNote 8 (xml) RefWorks Tagged RIS Medlars Bookends Mendeley Request Permissions Share Adaptation of scanning saccades co-occurs in different coordinate systems Adaptation of scanning saccades co-occurs in different coordinate systems Delphine Lévy-Bencheton , Denis Pélisson , Muriel Panouillères , Christian Urquizar , Caroline Tilikete , Laure Pisella Journal of Neurophysiology Jun 2014, 111 (12) 2505-2515; DOI: 10.1152/jn.00733.2013 Permalink: Copy View Full Page PDF Tweet Widget Facebook Like Google Plus One Reddit CiteULike Mendeley StumbleUpon More in this TOC Section Vestibular nucleus neurons respond to hindlimb movement in the decerebrate cat Corticospinal excitability underlying digit force planning for grasping in humans Temporal scaling of neural responses to compressed and dilated natural speech Show more Articles Related Articles 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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