100 results on '"Jakovcevski, Igor"'
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52. Additional file 1 of The impact of hyperpolarization-activated cyclic nucleotide-gated (HCN) and voltage-gated potassium KCNQ/Kv7 channels on primary microglia function
53. Additional file 3 of The impact of hyperpolarization-activated cyclic nucleotide-gated (HCN) and voltage-gated potassium KCNQ/Kv7 channels on primary microglia function
54. Additional file 2 of The impact of hyperpolarization-activated cyclic nucleotide-gated (HCN) and voltage-gated potassium KCNQ/Kv7 channels on primary microglia function
55. Additional file 4 of The impact of hyperpolarization-activated cyclic nucleotide-gated (HCN) and voltage-gated potassium KCNQ/Kv7 channels on primary microglia function
56. Perforin affects regeneration in a mouse spinal cord injury model.
57. Histone H1 improves regeneration after mouse spinal cord injury and changes shape and gene expression of cultured astrocytes
58. The Na+/H+ Exchanger Nhe1 Modulates Network Excitability via GABA Release
59. Cell Adhesion Molecule Close Homolog of L1 (CHL1) Guides the Regrowth of Regenerating Motor Axons and Regulates Synaptic Coverage of Motor Neurons
60. Confocal Synaptology: Synaptic Rearrangements in Neurodegenerative Disorders and upon Nervous System Injury
61. The Subventricular Zone: A Key Player in Human Neocortical Development
62. NEONATAL ELECTROGRAPHIC SEIZURES ANDBEHAVIORAL IMPAIRMENT IN MICE WITH A NAVGENETIC1.2 CHANNELOPATHY
63. Confocal Synaptology: Synaptic Rearrangements in Neurodegenerative Disorders and upon Nervous System Injury
64. The Subventricular Zone: A Key Player in Human Neocortical Development
65. Impact of neural cell adhesion molecule deletion on regeneration after mouse spinal cord injury
66. Impact of neural cell adhesion molecule deletion on regeneration after mouse spinal cord injury
67. The extracellular matrix glycoprotein tenascin-C and matrix metalloproteinases modify cerebellar structural plasticity by exposure to an enriched environment
68. Second-Generation Antipsychotics and Extrapyramidal Adverse Effects
69. Cortical interneurons in the developing human neocortex
70. Myelin Basic Protein Cleaves Cell Adhesion Molecule L1 and Improves Regeneration After Injury
71. The complexity of the calretinin-expressing progenitors in the human cerebral cortex
72. Contributions of the Neocortical Svz to Human Brain Development
73. The complexity of the calretinin-expressing progenitors in the human cerebral cortex
74. The extracellular matrix glycoprotein tenascin-R regulates neurogenesis during development and in the adult dentate gyrus of mice
75. Novelties in the Anatomy of the Central Nervous System and Related Disorders
76. The extracellular matrix glycoprotein tenascin-R regulates neurogenesis during development and in the adult dentate gyrus of mice
77. Tenascins and inflammation in disorders of the nervous system
78. Heterozygosity for the mutated X-chromosome-linked L1 cell adhesion molecule gene leads to increased numbers of neurons and enhanced metabolism in the forebrain of female carrier mice
79. Delayed Applications of L1 and Chondroitinase ABC Promote Recovery after Spinal Cord Injury
80. COUP-TFII Expressing Interneurons in Human Fetal Forebrain
81. Dermatan sulfotransferase Chst14/D4st1, but not chondroitin sulfotransferase Chst11/C4st1, regulates proliferation and neurogenesis of neural progenitor cells
82. Transplanted L1 Expressing Radial Glia and Astrocytes Enhance Recovery after Spinal Cord Injury
83. Embryonic Stem Cell-Derived L1 Overexpressing Neural Aggregates Enhance Recovery after Spinal Cord Injury in Mice
84. Spontaneous Electrical Activity in the Human Fetal CortexIn Vitro
85. Interneurons in the developing human neocortex
86. Multiple Origins of Human Neocortical Interneurons Are Supported by Distinct Expression of Transcription Factors
87. Lewisxand α2,3-Sialyl Glycans and Their Receptors TAG-1, Contactin, and L1 Mediate CD24-Dependent Neurite Outgrowth
88. Oligodendrocyte development and the onset of myelination in the human fetal brain
89. Olig Transcription Factors Are Expressed in Oligodendrocyte and Neuronal Cells in Human Fetal CNS
90. Sequence of oligodendrocyte development in the human fetal telencephalon
91. Physiological Properties of Human Fetal Cortex In Vitro.
92. Interaction of the Cell Adhesion Molecule CHL1 with Vitronectin, Integrins, and the Plasminogen Activator Inhibitor-2 Promotes CHL1-Induced Neurite Outgrowth and Neuronal Migration.
93. Dermatan sulfotransferase Chst14/D4st1, but not chondroitin sulfotransferase Chst11/C4st1, regulates proliferation and neurogenesis of neural progenitor cells.
94. Embryonic Stem Cell-Derived L1 Overexpressing Neural Aggregates Enhance Recovery after Spinal Cord Injury in Mice.
95. Spontaneous Electrical Activity in the Human Fetal Cortex In Vitro.
96. Cellular Form of Prion Protein Inhibits Reelin-Mediated Shedding of Caspr from the Neuronal Cell Surface to Potentiate Caspr-Mediated Inhibition of Neurite Outgrowth.
97. Lewisx and α2,3-Sialyl Glycans and Their Receptors TAG-1, Contactin, and L1 Mediate CD24-Dependent Neurite Outgrowth.
98. Glial Scar Expression of CHL1, the Close Homolog of the Adhesion Molecule L1, Limits Recovery after Spinal Cord Injury.
99. Correction: Aksic et al. The Neuroprotective Effect of Neural Cell Adhesion Molecule L1 in the Hippocampus of Aged Alzheimer's Disease Model Mice. Biomedicines 2024, 12 , 1726.
100. The extracellular matrix glycoprotein tenascin-R regulates neurogenesis during development and in the adult dentate gyrus of mice.
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