PE1: The Skeletal System
Bones of the body, axial vs appendicular skeleton, functions and classifications of bones.
Bones of the body, axial vs appendicular skeleton, functions and classifications of bones.
The skeleton serves as the body's internal framework, providing structure, protection and enabling movement. It is divided into two main groups:
| Feature | Axial Skeleton | Appendicular Skeleton |
|---|---|---|
| Number of bones | 80 | 126 |
| Location | Central axis of the body | Limbs and limb attachments |
| Key bones | Skull, vertebral column, ribcage, sternum | Arms, legs, pectoral girdle, pelvic girdle |
| Primary function | Protection of vital organs, support of upright posture | Movement and locomotion |
| Examples | Cranium (8 bones), vertebrae (33), ribs (24), sternum (1) | Humerus, radius, ulna, femur, tibia, fibula, scapula, clavicle, pelvis |
The skeleton provides a rigid framework that supports the body against gravity and gives the body its shape. Without the skeleton, the body would collapse. Muscles attach to bones via tendons, and bones act as levers for movement.
Bones protect vital internal organs from damage. This is crucial for survival during physical activity and contact sports.
Bones act as levers that muscles pull on to create movement at joints. Different joints allow different ranges of movement.
Bones store essential minerals, particularly calcium and phosphorus. These minerals can be released into the bloodstream when needed by the body.
Red bone marrow found in certain bones produces blood cells. This process is called haematopoiesis.
Bones are classified by their shape, which relates to their function:
| Bone Type | Description | Function | Examples |
|---|---|---|---|
| Long | Longer than they are wide; shaft with two ends | Act as levers for movement; contain red marrow in ends | Femur, humerus, tibia, fibula, radius, ulna, phalanges |
| Short | Roughly cube-shaped; spongy inside | Provide stability and some movement; absorb shock | Carpals (wrist), tarsals (ankle) |
| Flat | Thin, flattened and often curved | Protection of organs; large area for muscle attachment | Cranium, scapula, ribs, sternum, pelvis |
| Irregular | Do not fit into other categories; complex shapes | Various - protection, support, muscle attachment | Vertebrae, some facial bones |
Long bones as levers: When a swimmer performs a front crawl, the humerus (long bone) acts as a lever. The deltoid and latissimus dorsi muscles pull on the humerus to generate the pulling action through the water.
Flat bones for protection: A cricketer wearing a helmet relies on the cranium (flat bone) to protect the brain from impact if struck by a ball.
It is divided into five regions:
| Region | Number of Vertebrae | Function |
|---|---|---|
| Cervical | 7 | Supports the head and allows nodding and rotation (e.g. nodding head in heading a football) |
| Thoracic | 12 | Attaches to the ribs; protects heart and lungs; allows limited rotation |
| Lumbar | 5 | Supports body weight; allows flexion, extension and lateral flexion (e.g. arching back in a handstand) |
| Sacral | 5 (fused) | Connects to the pelvis; transfers weight from upper body to legs |
| Coccyx | 4 (fused) | Attachment for pelvic floor muscles; remnant of a tail |
You must be able to identify and locate the following bones:
Q1: Name the five functions of the skeleton.
Q2: How many bones make up the axial skeleton?
Q3: Give one example each of a long bone, a short bone, a flat bone and an irregular bone.
Q4: Explain why the vertebral column is classified as irregular bones.
Q5: Which part of the vertebral column supports the most body weight, and why?
Q6: Describe how the skeleton supports blood cell production.
Students often confuse the pelvis as part of the axial skeleton because it is in the centre. Wrong: "The pelvis is part of the axial skeleton." Correct: "The pelvis is part of the appendicular skeleton."
Students often forget mineral storage and blood cell production as functions. Wrong: "The skeleton has three functions: support, protection and movement." Correct: "The skeleton has five functions: support, protection, movement, mineral storage and blood cell production."
Students often confuse short bones with small bones. Phalanges are small but classified as long bones. Wrong: "Phalanges are short bones because they are small." Correct: "Phalanges are long bones - their length is greater than their width."
Students often think lactic acid causes doms. Wrong: Lactic acid causes DOMS Correct: DOMS (delayed onset muscle soreness) is caused by micro-tears in muscle fibres, not lactic acid. Lactic acid is cleared within an hour of exercise.
Students often think veins always carry deoxygenated blood. Wrong: Veins always carry deoxygenated blood Correct: Pulmonary veins carry oxygenated blood from the lungs to the heart. It is arteries and veins relative to the heart that matters, not oxygenation.
Students often think the heart beats faster during exercise just because you need more oxygen. Wrong: The heart beats faster during exercise just because you need more oxygen Correct: Heart rate increases due to anticipatory rise (before exercise), increased CO2 in blood detected by chemoreceptors, and decreased vagal tone. It is a coordinated response, not just oxygen demand.
6 marks: Explain how the skeletal system affects sporting performance.
The Skeletal System has significant effects on sporting performance. [Key concept 1]: explain the mechanism with specific detail. [Key concept 2]: how this applies in a named sporting example. [Key concept 3]: the relationship between this topic and overall performance. A grade 9 answer uses precise anatomical/physiological terminology, specific sporting examples, and evaluates the relative importance of different factors.
Mark scheme: 2 marks per explained point with specific evidence, evaluation for top marks
GCSE PE tests four AOs: AO1 (Knowledge, 30%) โ recall facts about The Skeletal System including definitions, classifications and specific examples; AO2 (Application, 30%) โ apply knowledge to sporting contexts and training scenarios; AO3 (Analysis and Evaluation, 25%) โ analyse data (graphs, tables), evaluate training methods or strategies, and justify recommendations; AO4 (Practical, 15%) โ demonstrate relevant skills. For grade 9, use precise terminology, support every point with named sporting examples, and evaluate rather than just describe. The difference between grade 5 and grade 9 is the quality of application and depth of evaluation.
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