Claire Francesca Meehan

Claire Francesca Meehan

Associate Professor

Member of:


    1. Published

      Post activation depression of the Ia EPSP in motoneurones is reduced in both aged mice and in the G127X SOD1 model of Amyotrophic lateral sclerosis

      Hedegaard, A., Lehnhoff, J., Moldovan, Mihai, Grøndahl, L. & Meehan, Claire Francesca, 2014, Proceedings of The Physiological Society. Physiology 2014 (London, UK) (2014), Vol. 31. PCA070

      Research output: Chapter in Book/Report/Conference proceedingArticle in proceedingsResearch

    2. Published

      Postactivation depression of the Ia EPSP in motoneurons is reduced in both the G127X SOD1 model of amyotrophic lateral sclerosis and in aged mice

      bjl587, bjl587, Lehnhoff, J., Moldovan, Mihai, Grøndahl, L., Petersen, Nicolas Caesar & Meehan, Claire Francesca, 2015, In: Journal of Neurophysiology. 114, 2, p. 1196-1210 15 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    3. Published

      Control and role of plateau potential properties in the spinal cord

      Hultborn, Hans, Zhang, M. & Meehan, Claire Francesca, 2013, In: Current Pharmaceutical Design. 19, 24, p. 4357-4370 14 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    4. Published

      Gener og bevægelse

      Hultborn, Hans & Meehan, Claire Francesca, 2009, Hjernen i bevægelse. Bøgeskov, J., Ellemann, K. & Nielsen, J. B. (eds.). 1 ed. Hjerneforum, p. 9-21 12 p.

      Research output: Chapter in Book/Report/Conference proceedingBook chapterResearch

    5. Published

      Intramuscular Botulinum toxin A injections induce central changes to axon initial segments and cholinergic boutons on spinal motoneurones in rats

      Jensen, Dennis Bo, Klingenberg, S., Dimintiyanova, K. P., Wienecke, Jacob & Meehan, Claire Francesca, 2020, In: Scientific Reports. 10, 1, 10 p., 893.

      Research output: Contribution to journalJournal articleResearchpeer-review

    6. Published

      Spinal motoneurones are intrinsically more responsive in the adult G93A SOD1 mouse model of Amyotrophic Lateral Sclerosis

      Jensen, Dennis Bo, Kadlecová, Marion, Allodi, Ilary & Meehan, Claire Francesca, 2020, In: The Journal of Physiology. 598, 19, p. 4385-4403 19 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    7. Published

      Response to Letter to Editor on the article Jensen DB, Kadlecova M, Allodi I, Meehan CF (2020)

      Jensen, Dennis Bo, Kadlecová, Marion, Allodi, Ilary & Meehan, Claire Francesca, 2021, In: The Journal of Physiology. 599, 17, p. 4233-4236 4 p.

      Research output: Contribution to journalLetterResearchpeer-review

    8. Published

      The Sub-Primary Range of firing is present in both cat and mouse spinal motoneurones and its relationship to force development is similar for the two species

      Jensen, Dennis Bo, Stecina, K., Wienecke, Jacob, bjl587, bjl587, Sukiasyan, N., Hultborn, Hans & Meehan, Claire Francesca, 2018, In: Journal of Neuroscience. 38, 45, p. 9741-9753 13 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    9. Published

      Increased Axon Initial Segment Length Results in Increased Na+ Currents in Spinal Motoneurones at Symptom Onset in the G127X SOD1 Mouse Model of Amyotrophic Lateral Sclerosis

      Jørgensen, H. S., Jensen, Dennis Bo, Dimintiyanova, K. P., Bonnevie, V. S., Hedegaard, A., Lehnhoff, J., Moldovan, Mihai, Grondahl, L. & Meehan, Claire Francesca, 2021, In: Neuroscience. 468, p. 247-264 18 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    10. Published

      A Progressive Increase in Threshold Variability Impacts Mscanfit Motor Unit Number Estimation in the SOD1G93A Mice and Patients with Amyotrophic Lateral Sclerosis

      Krarup, Christian, Dimintiyanova, K., Jensen, D., Meehan, Claire Francesca & Moldovan, Mihai, 2021, In: Neurology. 96, 15, 1 p.

      Research output: Contribution to journalConference abstract in journalResearchpeer-review

    ID: 32103309