K325 / 2027

Lesson 2 of 7 / Nutrition in humans

Moving food by peristalsis

Why can food move along the gut without relying on gravity?

In this lesson: Explain how coordinated waves of muscle contraction mix and propel food.

About 4 min

The key ideaPeristalsis is a rhythmic wave of muscle contraction along the alimentary canal that mixes its contents and moves them forwards.

A bolus is a portion of swallowed food. The gut wall contains muscle; the wave moves along the wall, while the bolus is pushed through the tube.

Explore the idea

The contraction travels behind the food

Peristalsis, stage 1The upper and lower walls narrow behind the bolus. In later stages this narrowing and the bolus move to the right. The canal ahead is wider.Behind:narrowerAhead:relaxed

Stage 1: Circular muscle contracts behind the bolus. The narrowing pushes it towards the relaxed region ahead.

Original sectional model with exaggerated narrowing. This isolates the circular-muscle action; real gut movement also involves longitudinal muscles and more complex mixing patterns.

Explanation

The oesophagus is a muscular tube, not a passive chute. Its wall contracts in a coordinated pattern to move swallowed food towards the stomach. Peristalsis continues in other parts of the alimentary canal.

Circular muscles contract behind a bolus, narrowing the tube and squeezing its contents forwards. The region ahead relaxes to receive the food. Longitudinal muscles help change the length and shape of the wall. Coordinated patterns of contraction travel along the canal as a wave.

Peristaltic activity also mixes the contents. Mixing brings food into contact with digestive juices and helps distribute enzymes through it. This supports digestion but does not itself break chemical bonds in large food molecules.

Gravity can influence movement, but peristalsis supplies the muscular force. An explanation should state the direction of the moving contraction and how it pushes the contents. Saying only that the food falls or that the muscles contract misses the coordinated wave.

Step by step
  1. 1

    Locate the contraction

    Circular muscle tightens behind the bolus, reducing the width of the canal there.

  2. 2

    Follow the wave

    The narrowing advances along the canal while the region ahead can receive the contents.

  3. 3

    State both effects

    The coordinated muscular activity propels contents and mixes them with digestive secretions.

Worked example

Moving a bolus through a horizontal tube

A section of oesophagus is almost horizontal. Explain how a bolus can still move towards the stomach.

One way to explain it

A wave of coordinated muscle contraction moves along the oesophagus. Circular muscles narrow the canal behind the bolus while the region ahead relaxes, pushing the bolus forwards. Movement therefore does not depend only on gravity.

Why this answer works
  • Identify muscular action as the driving force.
  • Describe the difference behind and ahead of the bolus.
  • Connect the travelling wave to forward movement.
Is this true? "Peristalsis chemically digests food because it breaks food into pieces."

Muscle movement propels and mixes food. Chemical digestion requires enzymes to break large molecules into smaller soluble products.

Try a question

What best explains forward movement during peristalsis?
You can return to this lesson any time.