🧠 Neural Control & Synaptic Transmission
The nervous system coordinates rapid biophysical communication through electrical impulse propagation along axonal membranes and chemical neurotransmitter release across synaptic clefts.
1. ⚡ Resting Membrane Potential & Action Potential Kinetics
Membrane Potential (mV)
▲
+30 ┼ /───\ <-- Depolarization Peak (+30 mV: Voltage-gated Na+ channels open)
│ / \
0 ┼────────────────────/───────\────────────────
│ / \ <-- Repolarization (Voltage-gated K+ channels open, Na+ close)
-55 ┼──────────────────/ \ <-- Threshold Potential (-55 mV)
-70 ┼─────────────────/ \──────/─── <-- Resting Potential (-70 mV maintained by Na+/K+ Pump)
│ \____/ <-- Hyperpolarization (-80 mV)
└──────────────────────────────────────────► Time (ms)| Phase | Membrane Potential | Dominant Ion Flux & Channel Status |
|---|---|---|
| Resting State | Axolemma is more permeable to | |
| Depolarization | Threshold stimulus opens voltage-gated | |
| Repolarization | ||
| Hyperpolarization | Delayed closure of |
2. 🌉 Synaptic Transmission: Chemical vs Electrical Synapses
[PRE-SYNAPTIC AXON TERMINAL]
Action Potential arrives ──► Voltage-Gated Ca2+ channels open ──► Ca2+ influx
│
▼
Synaptic Vesicles fuse with Pre-synaptic Membrane ──► Exocytosis of Neurotransmitter (e.g., Acetylcholine)
│
▼ [Diffusion across 20nm Cleft]
Binds to Ligand-Gated Ion Receptors on Post-Synaptic Membrane ──► Generates EPSP / Action Potential| Feature | Chemical Synapse | Electrical Synapse |
|---|---|---|
| Synaptic Cleft Width | Fluid-filled cleft ( | Minimal ( |
| Conduction Speed | Slower (Synaptic delay | Extremely rapid (Almost instantaneous) |
| Directionality | Strictly Unidirectional | Can be Bidirectional |
| Neurotransmitter Required? | Yes (Acetylcholine, GABA, Dopamine) | No (Direct ionic current flow) |
3. 🧠 Human Brain Anatomy & Functional Localizations
- Forebrain (Prosencephalon):
- Cerebrum: Sensory, motor, and association areas (memory, communication); connected by Corpus Callosum (tract of myelinated commissural nerve fibers).
- Thalamus: Major relay center for sensory and motor signals.
- Hypothalamus: Master homeostatic center (thermoregulation, hunger, thirst, sleep-wake cycles, neurohormones).
- Midbrain (Mesencephalon): Corpora quadrigemina (4 optic/auditory colliculi lobes) and Cerebral Aqueduct of Sylvius.
- Hindbrain (Rhombencephalon):
- Cerebellum: Arbor vitae; coordinates complex voluntary muscular movements, balance, and posture.
- Pons: Contains Pneumotaxic respiratory center.
- Medulla Oblongata: Contains vital involuntary centers (cardiac, vasomotor, respiratory rhythm, vomiting, swallowing).