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Creative Biolabs

Neural Development

In the entire neural development podcast series, we will introduce you to specific mechanisms of neural development and describe key experiments from invertebrate and vertebrate animal models. The discussion of neurodevelopmental disorders and their treatments links basic science discoveries to clinical issues in the field. We hope to help you better understand the approach to neural development. If you are interested, please follow us.

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  • Introduction to Developmental Neurobiology Field 00:10:23
    Neural Development (Creative Biolabs Authorized)
    Introduction to Developmental Neurobiology Field
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  • Origin and Development of the Nervous System 00:14:40
    Neural Development (Creative Biolabs Authorized)
    Origin and Development of the Nervous System
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  • Gene Regulation during Nervous System Development 00:16:08
    Neural Development (Creative Biolabs Authorized)
    Gene Regulation during Nervous System Development
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  • Neural Tissue Designation during Embryogenesis 00:09:11
    Neural Development (Creative Biolabs Authorized)
    Neural Tissue Designation during Embryogenesis
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  • Initiation and Development of Neural Induction 00:13:57
    Neural Development (Creative Biolabs Authorized)
    Initiation and Development of Neural Induction
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  • Noggin, Follistatin, and Chordin Inhibit Epidermal Induction 00:13:57
    Neural Development (Creative Biolabs Authorized)
    Noggin, Follistatin, and Chordin Inhibit Epidermal Induction
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  • The Formation of the Neural Tube 00:12:39
    Neural Development (Creative Biolabs Authorized)
    The Formation of the Neural Tube
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  • Regional Division of Forebrain, Midbrain, and Hindbrain Regions 00:18:16
    Neural Development (Creative Biolabs Authorized)
    Regional Division of Forebrain, Midbrain, and Hindbrain Regions
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  • Rhombomeres The Building Blocks of the Hindbrain 00:09:25
    Neural Development (Creative Biolabs Authorized)
    Rhombomeres The Building Blocks of the Hindbrain
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  • HOX Genes Play a Crucial Role in Regulating Hindbrain Segmentation 00:16:34
    Neural Development (Creative Biolabs Authorized)
    HOX Genes Play a Crucial Role in Regulating Hindbrain Segmentation
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  • How are Retinoic Acid Levels Controlled 00:09:45
    Neural Development (Creative Biolabs Authorized)
    How are Retinoic Acid Levels Controlled
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  • Anatomical Landmarks and Signaling Centers in the Posterior Vertebrate Neural Tube 00:08:51
    Neural Development (Creative Biolabs Authorized)
    Anatomical Landmarks and Signaling Centers in the Posterior Vertebrate Neural Tube
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  • Ventral Signals and Motor Neuron Patterning in the Posterior Neural Tube 00:16:59
    Neural Development (Creative Biolabs Authorized)
    Ventral Signals and Motor Neuron Patterning in the Posterior Neural Tube
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  • Dorsal Patterning in the Posterior Neural Tube 00:13:20
    Neural Development (Creative Biolabs Authorized)
    Dorsal Patterning in the Posterior Neural Tube
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  • Regulatory Signaling Pathways in Dorsal Neuron Development 00:13:20
    Neural Development (Creative Biolabs Authorized)
    Regulatory Signaling Pathways in Dorsal Neuron Development
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  • How Dorsal Ventral Patterning Works in the Front of the Neural Tube 00:15:42
    Neural Development (Creative Biolabs Authorized)
    How Dorsal Ventral Patterning Works in the Front of the Neural Tube
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  • The Process of Generating Neurons and Glial Cells 00:16:40
    Neural Development (Creative Biolabs Authorized)
    The Process of Generating Neurons and Glial Cells
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  • Cellular Migration in the Central Nervous System 00:16:35
    Neural Development (Creative Biolabs Authorized)
    Cellular Migration in the Central Nervous System
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  • Mechanisms of Neuronal Migration 00:13:36
    Neural Development (Creative Biolabs Authorized)
    Mechanisms of Neuronal Migration
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  • Migration Patterns of Neurons 00:14:46
    Neural Development (Creative Biolabs Authorized)
    Migration Patterns of Neurons
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  • Migration in the Peripheral Nervous System Examples from Neural Crest Cells 00:15:36
    Neural Development (Creative Biolabs Authorized)
    Migration in the Peripheral Nervous System Examples from Neural Crest Cells
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  • Lateral Inhibition and Notch Receptor Signaling 00:16:34
    Neural Development (Creative Biolabs Authorized)
    Lateral Inhibition and Notch Receptor Signaling
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  • Exploring the Mechanisms of Fate Determination in Vertebrate Central Nervous System Neurons 00:13:18
    Neural Development (Creative Biolabs Authorized)
    Exploring the Mechanisms of Fate Determination in Vertebrate Central Nervous System Neurons
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  • Determination and Differentiation of Neural Crest-Derived Neurons 00:13:18
    Neural Development (Creative Biolabs Authorized)
    Determination and Differentiation of Neural Crest-Derived Neurons
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  • The Role of Neuregulin in the Determination of Myelinating Schwann Cells in the Peripheral Nervous System 00:15:04
    Neural Development (Creative Biolabs Authorized)
    The Role of Neuregulin in the Determination of Myelinating Schwann Cells in the Peripheral Nervous System
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  • Development of Specialized Sensory Cells 00:12:54
    Neural Development (Creative Biolabs Authorized)
    Development of Specialized Sensory Cells
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  • Development of the Inner Ear and Retina in Vertebrates 00:14:20
    Neural Development (Creative Biolabs Authorized)
    Development of the Inner Ear and Retina in Vertebrates
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  • Development of Specialized Sensory Cells 00:12:05
    Neural Development (Creative Biolabs Authorized)
    Development of Specialized Sensory Cells
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  • Growth Cone Motility and Pathfinding 00:14:58
    Neural Development (Creative Biolabs Authorized)
    Growth Cone Motility and Pathfinding
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  • Growth Cone Substrate Preferences In Vitro and In Vivo 00:15:09
    Neural Development (Creative Biolabs Authorized)
    Growth Cone Substrate Preferences In Vitro and In Vivo
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  • Guidance Mechanisms in Vertebrate Motor Neuron Development 00:13:27
    Neural Development (Creative Biolabs Authorized)
    Guidance Mechanisms in Vertebrate Motor Neuron Development
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  • Guidance Mechanisms for Commissural Axons Attraction and Repulsion at the Midline 00:16:59
    Neural Development (Creative Biolabs Authorized)
    Guidance Mechanisms for Commissural Axons Attraction and Repulsion at the Midline
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  • Regulatory Mechanisms of Commissural Axon Growth in Vertebrates 00:11:47
    Neural Development (Creative Biolabs Authorized)
    Regulatory Mechanisms of Commissural Axon Growth in Vertebrates
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  • The Retinotectal System and the Chemotopy Hypothesis 00:14:05
    Neural Development (Creative Biolabs Authorized)
    The Retinotectal System and the Chemotopy Hypothesis
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  • Advances in Retinal Axon Guidance Chemoaffinity, Eph-Ephrin, and Self-Avoidance 00:13:07
    Neural Development (Creative Biolabs Authorized)
    Advances in Retinal Axon Guidance Chemoaffinity, Eph-Ephrin, and Self-Avoidance
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  • Nerve Cell Development Insights from Tissue Size, Tumors, and In Vitro Studies 00:14:52
    Neural Development (Creative Biolabs Authorized)
    Nerve Cell Development Insights from Tissue Size, Tumors, and In Vitro Studies
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  • Discovery and Identification of Nerve Growth Factor and Related Neurotrophic Proteins 00:16:32
    Neural Development (Creative Biolabs Authorized)
    Discovery and Identification of Nerve Growth Factor and Related Neurotrophic Proteins
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  • Neurotrophin Signaling and Trk Receptor Function in Cell Survival and Transport 00:17:40
    Neural Development (Creative Biolabs Authorized)
    Neurotrophin Signaling and Trk Receptor Function in Cell Survival and Transport
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  • Trk Receptor Interactions and Growth Factor Signaling in Neuronal Survival and Outgrowth 00:16:46
    Neural Development (Creative Biolabs Authorized)
    Trk Receptor Interactions and Growth Factor Signaling in Neuronal Survival and Outgrowth
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  • Programmed Cell Death During Neural Development 00:18:06
    Neural Development (Creative Biolabs Authorized)
    Programmed Cell Death During Neural Development
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  • p75NTR and Precursor Forms of Neurotrophins Help Mediate Neuronal Death During Development 00:15:03
    Neural Development (Creative Biolabs Authorized)
    p75NTR and Precursor Forms of Neurotrophins Help Mediate Neuronal Death During Development
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  • Chemical Synapse Development in the Peripheral and Central Nervous Systems 00:10:24
    Neural Development (Creative Biolabs Authorized)
    Chemical Synapse Development in the Peripheral and Central Nervous Systems
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  • Development and Organization of the Neuromuscular Junction 00:15:48
    Neural Development (Creative Biolabs Authorized)
    Development and Organization of the Neuromuscular Junction
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  • Revised Agrin Hypothesis Synaptic Basal Lamina and ACh Receptor Clustering 00:16:53
    Neural Development (Creative Biolabs Authorized)
    Revised Agrin Hypothesis Synaptic Basal Lamina and ACh Receptor Clustering
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  • MuSK, LRP4, and Rapsyn Mediate Agrin Signaling and AChR-Cytoskeleton Linkage 00:15:11
    Neural Development (Creative Biolabs Authorized)
    MuSK, LRP4, and Rapsyn Mediate Agrin Signaling and AChR-Cytoskeleton Linkage
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  • Roles of Nerve-Adjacent Nuclei, Schwann Cells, and Basal Lamina in Neuromuscular Junction Formation and Maintenance 00:16:38
    Neural Development (Creative Biolabs Authorized)
    Roles of Nerve-Adjacent Nuclei, Schwann Cells, and Basal Lamina in Neuromuscular Junction Formation and Maintenance
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  • Synaptic Basal Lamina and Laminins in Presynaptic Development 00:10:21
    Neural Development (Creative Biolabs Authorized)
    Synaptic Basal Lamina and Laminins in Presynaptic Development
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  • Models of Synaptic Elimination in the Neuromuscular Junction 00:14:12
    Neural Development (Creative Biolabs Authorized)
    Models of Synaptic Elimination in the Neuromuscular Junction
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  • Similarities in Synaptic Elements and the Role of Postsynaptic Density 00:17:43
    Neural Development (Creative Biolabs Authorized)
    Similarities in Synaptic Elements and the Role of Postsynaptic Density
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  • Cell Adhesion Molecules, Neurexins, and Neuroligins in Synaptic Stabilization 00:17:23
    Neural Development (Creative Biolabs Authorized)
    Cell Adhesion Molecules, Neurexins, and Neuroligins in Synaptic Stabilization
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  • Reciprocal Signaling and the Role of Motile Dendritic Spines in Synaptic Development 00:14:08
    Neural Development (Creative Biolabs Authorized)
    Reciprocal Signaling and the Role of Motile Dendritic Spines in Synaptic Development
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  • BDNF and EphEphrin Signaling in Synaptic Development 00:16:52
    Neural Development (Creative Biolabs Authorized)
    BDNF and EphEphrin Signaling in Synaptic Development
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  • Regulation of Synaptic Formation EphEphrin and Wnt Signaling in the CNS 00:14:33
    Neural Development (Creative Biolabs Authorized)
    Regulation of Synaptic Formation EphEphrin and Wnt Signaling in the CNS
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  • Wnt Pathways and Glial Cells in Synaptogenesis at Excitatory and Inhibitory Synapses 00:15:24
    Neural Development (Creative Biolabs Authorized)
    Wnt Pathways and Glial Cells in Synaptogenesis at Excitatory and Inhibitory Synapses
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  • Exploring Synapse Elimination, Reorganization, and Retinal Activity in the Vertebrate Visual System 00:13:51
    Neural Development (Creative Biolabs Authorized)
    Exploring Synapse Elimination, Reorganization, and Retinal Activity in the Vertebrate Visual System
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  • Neural Competition and Visual Experience in Ocular Dominance and Synaptic Organization 00:13:07
    Neural Development (Creative Biolabs Authorized)
    Neural Competition and Visual Experience in Ocular Dominance and Synaptic Organization
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  • Homeostatic Plasticity and Lifelong Synaptic Organization 00:16:40
    Neural Development (Creative Biolabs Authorized)
    Homeostatic Plasticity and Lifelong Synaptic Organization
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Listen to the weekly podcast from Creative Biolabs. We'll keep your neuroscience research ahead of the curve and interesting. Please subscribe to follow the latest updates.

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