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Figure 6.1 Examples of small-molecule and peptide neurotransmitters

Figure 6.1 Examples of small-molecule and peptide neurotransmitters. Figure 6.1 Examples of small-molecule and peptide neurotransmitters (Part 1). Figure 6.1 Examples of small-molecule and peptide neurotransmitters (Part 2).

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Figure 6.1 Examples of small-molecule and peptide neurotransmitters

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  1. Figure 6.1 Examples of small-molecule and peptide neurotransmitters

  2. Figure 6.1 Examples of small-molecule and peptide neurotransmitters (Part 1)

  3. Figure 6.1 Examples of small-molecule and peptide neurotransmitters (Part 2)

  4. Figure 6.1 Examples of small-molecule and peptide neurotransmitters (Part 3)

  5. Figure 6.2 Acetylcholine metabolism in cholinergic nerve terminals

  6. Box 6A Neurotoxins that Act on Postsynaptic Receptors

  7. Figure 6.3 The structure of the nACh receptor/channel

  8. Figure 6.3 The structure of the nACh receptor/channel (Part 1)

  9. Figure 6.3 The structure of the nACh receptor/channel (Part 2)

  10. Figure 6.4 The general architecture of ligand-gated receptors

  11. Figure 6.4 The general architecture of ligand-gated receptors (Part 1)

  12. Figure 6.4 The general architecture of ligand-gated receptors (Part 2)

  13. Figure 6.4 The general architecture of ligand-gated receptors (Part 3)

  14. Box 6B Myasthenia Gravis

  15. Figure 6.5 Structure and function of metabotropic receptors

  16. Figure 6.5 Structure and function of metabotropic receptors (Part 1)

  17. Figure 6.5 Structure and function of metabotropic receptors (Part 2)

  18. Figure 6.6 Glutamate synthesis and cycling between neurons and glia

  19. Figure 6.7 NMDA and AMPA/kainate receptors

  20. Figure 6.7 NMDA and AMPA/kainate receptors (Part 1)

  21. Figure 6.7 NMDA and AMPA/kainate receptors (Part 2)

  22. Figure 6.7 NMDA and AMPA/kainate receptors (Part 3)

  23. Figure 6.8 Synthesis, release, and reuptake of the inhibitory neurotransmitters GABA and glycine

  24. Figure 6.8 Synthesis, release, reuptake of inhibitory neurotransmitters GABA and glycine (Part 1)

  25. Figure 6.8 Synthesis, release, reuptake of inhibitory neurotransmitters GABA and glycine (Part 2)

  26. Figure 6.9 Ionotropic GABA receptors

  27. Figure 6.9 Ionotropic GABA receptors (Part 1)

  28. Figure 6.9 Ionotropic GABA receptors (Part 2)

  29. Box 6D Excitatory Actions of GABA in the Developing Brain

  30. Box 6D Excitatory Actions of GABA in the Developing Brain (Part 1)

  31. Box 6D Excitatory Actions of GABA in the Developing Brain (Part 2)

  32. Box 6D Excitatory Actions of GABA in the Developing Brain (Part 3)

  33. Figure 6.10 The biosynthetic pathway for the catecholamine neurotransmitters

  34. Figure 6.10 The biosynthetic pathway for the catecholamine neurotransmitters (Part 1)

  35. Figure 6.10 The biosynthetic pathway for the catecholamine neurotransmitters (Part 2)

  36. Figure 6.10 The biosynthetic pathway for the catecholamine neurotransmitters (Part 3)

  37. Figure 6.10 The biosynthetic pathway for the catecholamine neurotransmitters (Part 4)

  38. Figure 6.10 The biosynthetic pathway for the catecholamine neurotransmitters (Part 5)

  39. Figure 6.11 Neurons and their projections containing catecholamine neurotransmitters

  40. Figure 6.11 Neurons and their projections containing catecholamine neurotransmitters (Part 1)

  41. Figure 6.11 Neurons and their projections containing catecholamine neurotransmitters (Part 2)

  42. Figure 6.11 Neurons and their projections containing catecholamine neurotransmitters (Part 3)

  43. Figure 6.12 Distribution of neurons and their projections containing histamine or serotonin

  44. Figure 6.12 Distribution of neurons and their projections containing histamine or serotonin (Part 1)

  45. Figure 6.12 Distribution of neurons and their projections containing histamine or serotonin (Part 2)

  46. Figure 6.13 Synthesis of histamine and serotonin

  47. Figure 6.13 Synthesis of histamine and serotonin (Part 1)

  48. Figure 6.13 Synthesis of histamine and serotonin (Part 2)

  49. Figure 6.14 Proteolytic processing of the pre-propeptides pre-proopiomelanocortin and pre-proenkephalin A

  50. Figure 6.14 Proteolytic processing of the pre-propeptides pre-proopiomelanocortin and pre-proenkephalin A (Part 1)

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