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Figure 25.1 An ancient Egyptian papyrus acknowledges the difficulties of repairing brain and spinal cord damage Figure 25.2 Three types of nervous system repair or regeneration Figure 25.2 Three types of nervous system repair or regeneration (Part 1) Figure 25.2 Three types of nervous system repair or regeneration (Part 2) Figure 25.2 Three types of nervous system repair or regeneration (Part 3) Figure 25.3 Henry Head’s peripheral nerve regeneration experiment Figure 25.4 Regeneration in peripheral nerves Figure 25.5 Molecular and cellular responses that promote peripheral nerve regeneration Figure 25.5 Molecular and cellular responses that promote peripheral nerve regeneration Figure 25.6 Peripheral nerve sheaths and Schwann cells facilitate growth of damaged axons Figure 25.7 Reinnveration of muscles following peripheral motor nerve damage Figure 25.7 Reinnveration of muscles following peripheral motor nerve damage (Part 1) Figure 25.7 Reinnveration of muscles following peripheral motor nerve damage (Part 2) Box 25A Specific Regeneration of Synaptic Connections in Autonomic Ganglia Box 25A Specific Regeneration of Synaptic Connections in Autonomic Ganglia (Part 1) Box 25A Specific Regeneration of Synaptic Connections in Autonomic Ganglia (Part 2) Figure 25.8 Consequences of hypoxia/ischemia in the mammalian brain Figure 25.8 Consequences of hypoxia/ischemia in the mammalian brain (Part 1) Figure 25.8 Consequences of hypoxia/ischemia in the mammalian brain (Part 2) Figure 25.9 The reaction of the three major classes of CNS glia to local tissue damage Figure 25.10 Cellular response to injury in the central nervous system Figure 25.10 Cellular response to injury in the central nervous system Figure 25.11 Adult neurogenesis in non-mammalian vertebrates Figure 25.11 Adult neurogenesis in non-mammalian vertebrates (Part 1) Figure 25.11 Adult neurogenesis in non-mammalian vertebrates (Part 2) Figure 25.12 Neurogenesis in the adult mammalian brain Figure 25.12 Neurogenesis in the adult mammalian brain (Part 1) Figure 25.12 Neurogenesis in the adult mammalian brain (Part 2) Figure 25.13 The forebrain anterior subventricular zone constitutes a stem cell niche Figure 25.14 New neurons in the adult brain migrate via a specific pathway Box 25B(1) Nuclear Weapons and Neurogenesis Box 25B(1) Nuclear Weapons and Neurogenesis (Part 1) Box 25B(1) Nuclear Weapons and Neurogenesis (Part 2) Box 25B(1) Nuclear Weapons and Neurogenesis (Part 3) Box 25B(2) Nuclear Weapons and Neurogenesis