Skip to content
Question of 27

Q.Describe the transmission of nerve impulse. OR Describe various disorders of circulatory system.

Haryana BsehBoard of School Education Haryana (Senior Secondary Part-I / Class 11) 2024Subjective· 5mImportance★★★★★
0% · 0/27 Questions
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

A nerve impulse is an electrical signal (action potential) that travels along a neuron's axon due to sequential depolarisation and repolarisation of the membrane, and is passed to the next neuron at a synapse, usually chemically via neurotransmitters.

1. Resting potential: In the resting (unstimulated) state, the axonal membrane is polarised — it is more positively charged outside and more negatively charged inside, due to the unequal distribution of Na⁺ and K⁺ ions maintained by the sodium-potassium pump (which actively pumps 3 Na⁺ out for every 2 K⁺ in) and the differential permeability of the membrane. This gives a resting potential of about −70 mV.

2. Generation of action potential (nerve impulse): When a stimulus is applied at a site on the polarised membrane, that site becomes freely permeable to Na⁺ ions. This leads to a rapid influx of Na⁺ ions, developing an action potential, and the membrane at that point becomes depolarised — the outer surface becomes negatively charged relative to the inner surface, which now becomes positively charged. This localised depolarisation is the nerve impulse.

3. Propagation along the axon: The depolarisation at one point triggers depolarisation of the adjacent (previously polarised) part of the membrane, so the electrical disturbance (nerve impulse) is propagated as a wave along the length of the axon, from the site of stimulation to the axon terminal. In myelinated fibres, this occurs even faster by saltatory conduction — the impulse jumps from one Node of Ranvier to the next, since only the nodes (not the myelin-covered internodes) are permeable to ions.

4. Repolarisation: Immediately after depolarisation, the membrane again becomes impermeable to Na⁺ ions but permeable to K⁺ ions, so K⁺ ions diffuse outward, restoring the resting (polarised) state at that point — this is called repolarisation, and it follows the depolarisation wave along the axon.

…

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.