IB Biology HL B3.3 — Muscle & Motility Paper 1 & 2 Core idea ~8 min read

Skeletal Muscle

A muscle never decides to contract on its own. It waits for a message from a nerve. This page follows that message in — through the neuromuscular junction and into the fibre — and then answers a question students rarely think about: if every fibre either fires or does not, how do you pick up an egg without crushing it?

📘 What you need to know

The message arrives: the neuromuscular junction

A motor neurone carries an impulse from the central nervous system out to a muscle. Where the end of the neurone meets a muscle fibre there is a tiny gap. That meeting point is the neuromuscular junction.

It behaves like a synapse between two neurones, with one difference: the receiving side is not another neurone, it is a muscle fibre.

This is why the sarcoplasmic reticulum matters so much. It reaches into every part of the fibre, so the calcium arrives everywhere at almost the same instant and the whole fibre contracts together, not in a ripple.

The motor unit

One motor neurone does not serve one fibre. Its axon branches, and each branch ends on a different muscle fibre. All of those fibres get the same message at the same time, so they all contract together.

Definition Motor unit = one motor neurone + all the muscle fibres it supplies + the neuromuscular junctions joining them
One motor unit One neurone, one message, several fibres contracting togetherONE MOTOR UNIT cell body axon neuromuscular junctions muscle fibresEvery fibre in a motor unit contracts at the same moment. A real muscle contains hundreds of motor units, mixed in among each other.
The fibres of one motor unit are not neatly stacked in real muscle — they are spread out, so the pull is even.

How the body controls the strength of a pull

Here is the puzzle. A muscle fibre does not do “a bit of a contraction”. It gets the message and contracts. So how can the same bicep hold a feather and also haul a suitcase?

The answer is how many motor units are switched on. Each motor unit is controlled by its own neurone, so the nervous system can call in as few or as many as the job needs.

Turning the force up and down Green fibres are the ones getting impulses right nowGENTLE EFFORT HARD EFFORT few motor units switched on e.g. picking up a pencil many motor units switched on e.g. lifting a heavy boxThe fibres themselves pull just as hard either way. What changes is how many of them are asked to join in.
Force is controlled by counting fibres in, not by making each fibre try harder.
Worth knowing. Muscles that need fine control, like the ones moving your eye, have very small motor units — a few fibres each. Muscles built for power, like those in your thigh, have huge motor units. Smaller units means finer steps in force.

Worked examples

WORKED EXAMPLE

Outline how an impulse in a motor neurone causes a skeletal muscle fibre to contract. [4]

Step 1: cross the gap The impulse reaches the neuromuscular junction and a neurotransmitter is released onto the muscle fibre. Step 2: into the fibre The fibre membrane is depolarised and the signal spreads through the whole fibre. Step 3: release the trigger Calcium ions are released from the sarcoplasmic reticulum. Step 4: the machinery starts Binding sites on actin are exposed, cross-bridges form and the filaments slide four marks, four clear stages — do not merge them into one sentence.
WORKED EXAMPLE

A student says: “To lift something heavier, each muscle fibre must contract harder.” Explain why this is wrong. [3]

State what a fibre actually does A fibre that receives an impulse contracts fully — it cannot contract by halves. Give the real mechanism Force is increased by activating more motor units, so more fibres contract at the same time. Finish the comparison More motor units recruited, not harder work per fibre use the word “recruited” — it is the term the mark scheme likes.

💡 Exam tip

⚠ Common mix-up

Up next: Requirements for Movement — a muscle that pulls is useless on its own. It needs something firm to pull against.

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