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161. Ca2+/Calmodulin-Dependent Protein Kinase Iiα (Αcamkii) Controls the Activity of the Dopamine Transporter: Implications for Angelman Syndrome

Steinkellner, T., J. W. Yang, T. R. Montgomery, W. Q. Chen, M. T. Winkler, S. Sucic, G. Lubec, M. Freissmuth, Y. Elgersma, H. H. Sitte, and O. Kudlacek
in Journal of Biological Chemistry 2012

162. Calcium action potentials in hair cells pattern auditory neuron activity before hearing onset

Tritsch NX, Rodríguez-Contreras A, Crins TT, Wang HC, Borst JG, Bergles DE
in Nat Neurosci 2010

163. Calcium score: a new risk factor for colorectal anastomotic leakage

Komen N, Klitsie P, Dijk JW, Slieker J, Hermans J, Havenga K, Oudkerk M, Weyler J, Kleinrensink GJ, Lange JF
in Am J Surg 2010

164. Calcium score: a new risk factor for colorectal anastomotic leakage.

Komen N, Klitsie P, Dijk JW, Slieker J, Hermans J, Havenga K, Oudkerk M, Weyler J, Kleinrensink GJ, Lange JF
in American journal of surgery 2010

165. Calcium scoring in unenhanced and enhanced CT data of the aorta-iliacal arteries: impact of image acquisition, reconstruction, and analysis parameter settings

Komen N, Klitsie P, Hermans JJ, Niessen WJ, Kleinrensink GJ, Jeekel J, Lange JF
in Acta Radiol 2011

166. Calcium threshold shift enables frequency-independent control of plasticity by an instructive signal

Piochon, C., Titley, H. K., Simmons, D. H., Grasselli, G., Elgersma, Y. and Hansel, C.
in Proceedings of the National Academy of Sciences of the United States of America 2016

167. Calibration techniques for single-sensor ultrasound imaging with a coding mask.

Pim van der Meulen, Pieter Kruizinga, Johannes G. Bosch, Geert Leus
in 2018

168. CAMK2-Dependent Signaling in Neurons Is Essential for Survival.

Kool MJ, Proietti Onori M, Borgesius NZ, van de Bree JE, Elgersma-Hooisma M, Nio E, Bezstarosti K, Buitendijk GHS, Aghadavoud Jolfaei M, Demmers JAA, Elgersma Y, van Woerden GM
in The Journal of neuroscience : the official journal of the Society for Neuroscience 2019

169. CaMKII controls neuromodulation via neuropeptide gene expression and axonal targeting of neuropeptide vesicles.

Moro A, van Woerden GM, Toonen RF, Verhage M
in PLoS biology 2020

170. CaMKIIβ regulates oligodendrocyte maturation and CNS myelination

Waggener, C. T., Dupree, J. L., Elgersma, Y., & Fuss, B.
in Journal of Neuroscience 2013

171. cAMP-EPAC-PKCε-RIM1α signaling regulates presynaptic long-term potentiation and motor learning.

Wang XT, Zhou L, Dong BB, Xu FX, Wang DJ, Shen EW, Cai XY, Wang Y, Wang N, Ji SJ, Chen W, Schonewille M, Zhu JJ, De Zeeuw CI, Shen Y
in eLife 2023

172. Candidate CSPG4 mutations and induced pluripotent stem cell modeling implicate oligodendrocyte progenitor cell dysfunction in familial schizophrenia.

de Vrij FM, Bouwkamp CG, Gunhanlar N, Shpak G, Lendemeijer B, Baghdadi M, Gopalakrishna S, Ghazvini M, Li TM, Quadri M, Olgiati S, Breedveld GJ, Coesmans M, Mientjes E, de Wit T, Verheijen FW, Beverloo HB, Cohen D, Kok RM, Bakker PR, Nijburg A, Spijker AT, Haffmans PMJ, Hoencamp E, Bergink V, Vorstman JA, Wu T, Olde Loohuis LM, Amin N, Langen CD, Hofman A, Hoogendijk WJ, van Duijn CM, Ikram MA, Vernooij MW, Tiemeier H, Uitterlinden AG, Elgersma Y, Distel B, Gribnau J, White T, Bonifati V, Kushner SA
in Molecular psychiatry 2018

173. Case Report: Developmental Delay and Acute Neuropsychiatric Episodes Associated With a Mutation in the Gene (c.328G>A p.Glu110Lys).

Dwyer BK, Veenma DCM, Chang K, Schulman H, Van Woerden GM
in Frontiers in pharmacology 2022

174. Case report: High-resolution, intra-operative µDoppler-imaging of spinal cord hemangioblastoma.

Soloukey S, Verhoef L, Generowicz BS, De Zeeuw CI, Koekkoek SKE, Vincent AJPE, Dirven CMF, Harhangi BS, Kruizinga P
in Frontiers in surgery 2023

175. cATR Tracing Approach to Identify Individual Intermediary Neurons Based on Their Input and Output: A Proof-of-Concept Study Connecting Cerebellum and Central Hubs Implicated in Developmental Disorders.

176. Caveats in transneuronal tracing with unmodified rabies virus: An evaluation of aberrant results using a nearly perfect tracing technique

Ruigrok, T. J. H., van Touw, S. and Coulon, P.
in Frontiers in Neural Circuits 2016

177. Cell-Autonomous Progeroid Changes in Conditional Mouse Models for Repair Endonuclease XPG Deficiency

Barnhoorn, S., Uittenboogaard, L. M., Jaarsma, D., Vermeij, W. P., Tresini, M., Weymaere, M., Menoni, H., Brandt, R. M. C., de Waard, M. C., Botter, S. M., Sarker, A. H., Jaspers, N. G. J., van der Horst, G. T. J., Cooper, P. K., Hoeijmakers, J. H. J. and van der Pluijm, I.
in PLoS Genetics 2014

178. Cerebellar Activation Related to Saccadic Inaccuracies.

Liem, E. I. M. L., M. A. Frens, M. Smits, and J. N. van der Geest
in Cerebellum 2012

179. Cerebellar and extracerebellar involvement in mouse eyeblink conditioning: the ACDC model

in Front Cell Neurosci. 2010

180. Cerebellar and Striatal Pathologies in Mouse Models of Autism Spectrum Disorder.

Peter S, De Zeeuw CI, Boeckers TM, Schmeisser MJ
in Advances in anatomy, embryology, and cell biology 2017

181. Cerebellar ataxia by enhanced CaV2. 1 currents is alleviated by Ca2+-dependent K+-channel activators in Cacna1aS218L mutant mice

Gao Z, Todorov B, Barrett C, van Dorp S, Ferrari M, van den Maagdenberg A, De Zeeuw C, Hoebeek F
in Journal of Neuroscience 2012

182. Cerebellar Cathodal Transcranial Direct Stimulation and Performance on a Verb Generation Task: A Replication Study.

Spielmann K, van der Vliet R, van de Sandt-Koenderman WM, Frens MA, Ribbers GM, Selles RW, van Vugt S, van der Geest JN, Holland P
in Neural plasticity 2017

183. Cerebellar control of gait and interlimb coordination.

Vinueza Veloz MF, Zhou K, Bosman LW, Potters JW, Negrello M, Seepers RM, Strydis C, Koekkoek SK, De Zeeuw CI
in Brain structure & function 2014

184. Cerebellar cortex and cerebellar nuclei are concomitantly activated during eyeblink conditioning: A 7T fMRI study in humans

Thürling, M., F. Kahl, S. Maderwald, R. M. Stefanescu, M. Schlamann, H. J. Boele, C. I. De Zeeuw, J. Diedrichsen, M. E. Ladd, S. K. E. Koekkoek and D. Timmann
in Journal of Neuroscience 2015

185. Cerebellar function and ischemic brain lesions in migraine patients from the general population.

Koppen H, Boele HJ, Palm-Meinders IH, Koutstaal BJ, Horlings CG, Koekkoek BK, van der Geest J, Smit AE, van Buchem MA, Launer LJ, Terwindt GM, Bloem BR, Kruit MC, Ferrari MD, De Zeeuw CI
in Cephalalgia : an international journal of headache 2016

186. Cerebellar granule cells acquire a widespread predictive feedback signal during motor learning.

Giovannucci A, Badura A, Deverett B, Najafi F, Pereira TD, Gao Z, Ozden I, Kloth AD, Pnevmatikakis E, Paninski L, De Zeeuw CI, Medina JF, Wang SS
in Nature neuroscience 2017

187. Cerebellar Granule Cells: Dense, Rich and Evolving Representations.

188. Cerebellar influences on descending spinal motor systems. In M. Manto, J. Gruol, N. Schmahmann, N. Koibuchi & F. Rossi (Eds.), Handbook of the cerebellum and cerebellum disorders

Ruigrok, T.
in 2013

189. Cerebellar involvement in migraine.

Kros L, Angueyra Aristizábal CA, Khodakhah K
in Cephalalgia : an international journal of headache 2018

190. Cerebellar learning properties are modulated by the CRF receptor in granular cells.

Ezra-Nevo G, Prestori F, Locatelli F, Soda T, Ten Brinke MM, Engel M, Boele HJ, Botta L, Leshkowitz D, Ramot A, Tsoory M, Biton IE, Deussing J, D'Angelo E, De Zeeuw CI, Chen A
in The Journal of neuroscience : the official journal of the Society for Neuroscience 2018

191. Cerebellar Modules and Their Role as Operational Cerebellar Processing Units.

Apps R, Hawkes R, Aoki S, Bengtsson F, Brown AM, Chen G, Ebner TJ, Isope P, Jörntell H, Lackey EP, Lawrenson C, Lumb B, Schonewille M, Sillitoe RV, Spaeth L, Sugihara I, Valera A, Voogd J, Wylie DR, Ruigrok TJH
in Cerebellum (London, England) 2018

192. Cerebellar modules operate at different frequencies

Zhou, H., Lin, Z., Voges, K., Ju, C., Gao, Z., Bosman, L. W. J., Ruigrok, T. J., Hoebeek, F. E., De Zeeuw, C. I. and Schonewille, M
in eLife 2014

193. Cerebellar molecular layer interneurons - computational properties and roles in learning

Jörntell H, Bengtsson F, Schonewille M, De Zeeuw CI
in Trends Neurosci 2010

194. Cerebellar motor learning deficits in medicated and medication-free men with recent-onset schizophrenia.

Coesmans M, Röder CH, Smit AE, Koekkoek SK, De Zeeuw CI, Frens MA, van der Geest JN
in Journal of psychiatry & neuroscience : JPN 2014

195. Cerebellar nuclei and the inferior olivary nuclei: Organizations and connections. In M. Manto, J. Gruol, N. Schmahmann, N. Koibuchi & F. Rossi (Eds.), Handbook of the cerebellum and cerebellar disorders

Voogd, J., Shinoda, Y., Ruigrok, T., & Sugihara, I.
in 2013

196. Cerebellar nuclei: Associative motor learning in zebrafish.

Broersen R, Canto CB, De Zeeuw CI
in Current biology : CB 2023

197. Cerebellar output controls generalized spike-and-wave discharge occurrence.

Kros L, Eelkman Rooda OH, Spanke JK, Alva P, van Dongen MN, Karapatis A, Tolner EA, Strydis C, Davey N, Winkelman BH, Negrello M, Serdijn WA, Steuber V, van den Maagdenberg AM, De Zeeuw CI, Hoebeek FE
in Annals of neurology 2015

198. Cerebellar plasticity and associative memories are controlled by perineuronal nets.

Carulli D, Broersen R, de Winter F, Muir EM, Mešković M, de Waal M, de Vries S, Boele HJ, Canto CB, De Zeeuw CI, Verhaagen J
in Proceedings of the National Academy of Sciences of the United States of America 2020

199. Cerebellar potentiation and learning a whisker-based object localization task with a time response window.

Rahmati N, Owens CB, Bosman LW, Spanke JK, Lindeman S, Gong W, Potters JW, Romano V, Voges K, Moscato L, Koekkoek SK, Negrello M, De Zeeuw CI
in The Journal of neuroscience : the official journal of the Society for Neuroscience 2014

200. Cerebellar Purkinje cells can differentially modulate coherence between sensory and motor cortex depending on region and behavior.

Lindeman S, Hong S, Kros L, Mejias JF, Romano V, Oostenveld R, Negrello M, Bosman LWJ, De Zeeuw CI
in Proceedings of the National Academy of Sciences of the United States of America 2021