Bones in Space
KNOW YOUR SKELETON
INSIDE THE BONE
THE BONE CREW
BONE BRAINPOWER
100

What environment do astronauts experience aboard the International Space Station?

microgravity

100

The average adult human body contains this many bones.

206

100

This dense, hard tissue forms the strong outer layer of a bone.

compact bone?

100

Nicknamed “The Builder,” this cell produces new bone

osteoblast

100

The skull protects this organ.

brain

200

Astronauts in microgravity may lose approximately this percentage of bone mass each month.

1–2%

200

The skull, vertebral column, ribs, and sternum belong to this division of the skeleton.

axial skeleton?

200

This type of bone tissue has a porous, honeycomb-like appearance.

spongy bone

200

Nicknamed “The Demolisher,” this cell breaks down old or damaged bone.

osteoclast

200

Besides supporting your body, bones work with muscles and joints to perform this function.

movement

300

Bones receive less of this in microgravity because they don't have to support as much body weight.

mechanical loading/stress

300

The arms, legs, shoulder girdle, and pelvic girdle belong to this division.

appendicular skeleton

300

This type of bone marrow produces red blood cells, white blood cells, and platelets.

red bone marrow

300

Nicknamed “The Monitor,” this mature bone cell senses mechanical stress.

osteocyte

300

A patient has a problem producing new blood cells. Doctors might investigate this tissue inside their bones.

red bone marrow

400

Astronauts do this extensively in space to help slow muscle and bone loss.

exercise

400

The femur belongs to this bone-shape category.

Long bone

400

This type of marrow stores fat and is commonly found in the medullary cavity of adult long bones.

yellow bone marrow

400

Osteoblasts, osteocytes, and osteoclasts work together in this continuous process of breaking down and rebuilding bone.

bone remodeling

400

A doctor examines the expanded end of a patient's femur. What part of the long bone are they examining?

epiphysis

500

Explain why astronauts lose bone mass in microgravity

less mechanical loading causes bone remodeling to become unbalanced, so more bone is removed than replaced

500

This type of bone has a complex shape that doesn't fit into the long, short, or flat categories. Vertebrae are an example.

irregular bone

500

This hollow space inside the shaft of a long bone contains yellow marrow in adults

medullary cavity

500

An astronaut has increased osteoclast activity and decreased osteoblast activity. What will happen to their bone mass?

bone mass will decrease / their bones will become weaker

500

An astronaut returns to Earth after losing significant bone density. Why could this be dangerous?

their weakened bones suddenly have to support their full body weight under Earth's gravity?

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