Log in Sign up
Back to Discover
🧬

Flipper (anatomy)

life science Maturity 9-11 evolution
This article covers sensitive topics: evolution. Parents can manage visibility in Parental Controls.

Some animals have flippers.

Schwimmender-Pinguin.jpg
Schwimmender-Pinguin.jpg
They help animals swim in the water. They work like flat paddles.
Chelonia mydas is going for the air.jpg
Chelonia mydas is going for the air.jpg
Flippers help them move fast. They help them turn too. Do you like to swim? We can swim like them!

44 words

Some animals have flippers.

Schwimmender-Pinguin.jpg
Schwimmender-Pinguin.jpg
These are flat limbs used for swimming. They are not fins like a fish has.
Chelonia mydas is going for the air.jpg
Chelonia mydas is going for the air.jpg
Many animals use them. Whales and dolphins use flippers to steer.
Humpback stellwagen.JPG
Humpback stellwagen.JPG
Sea turtles also have them. These flippers help them move through the water. Some animals use flippers to find food. A turtle might use one to hold a jellyfish. Flippers are very useful for life in the sea.

78 words

A flipper is a broad, flat limb used for swimming.

Schwimmender-Pinguin.jpg
Schwimmender-Pinguin.jpg
They are different from the fins found on fish. Flippers belong to animals like whales, seals, and sea turtles.
Chelonia mydas is going for the air.jpg
Chelonia mydas is going for the air.jpg

Different animals use flippers in different ways. Whales and dolphins use them to steer and control their movement. They use their large tails, called flukes, to push forward.

Humpback stellwagen.JPG
Humpback stellwagen.JPG
Humpback whales have bumps on their flippers called tubercles. These bumps help the whale turn sharply in the water. Seals and sea lions use their flippers to turn.

Some animals have special bone structures in their flippers. Many whales have hyperphalangy. This means they have more finger bones than most mammals.

Flipper eines Finnwales.jpg
Flipper eines Finnwales.jpg
This helps make their limbs long and flat. Penguins are also unique. Their flippers are actually wings.
Schwimmender-Pinguin.jpg
Schwimmender-Pinguin.jpg
These wings are very heavy and dense. This helps them dive deep into the ocean. Even sea turtles use flippers to find food. A green turtle might use a flipper to hold a jellyfish.

173 words

A flipper is a broad and flattened limb used for swimming in water.

Schwimmender-Pinguin.jpg
Schwimmender-Pinguin.jpg
These limbs belong to animals that are not fish, such as whales or sea turtles. In animals with only two flippers, like whales, the term refers to the front limbs. Animals with four flippers, like seals, have both front and back ones.
Chelonia mydas is going for the air.jpg
Chelonia mydas is going for the air.jpg
It is important to know that flippers are not the same as fins. Fish use fins to move, but flippers are a special way limbs change for water. Some scientists even call the webbed feet of a platypus a paddle instead of a flipper.
The Osteology of the Reptiles p194.png
The Osteology of the Reptiles p194.png

Flippers work in many different ways to help animals move. In whales, the flippers are used mainly for control and steering. The whale uses its large tail, called a fluke, to push itself forward.

Humpback stellwagen.JPG
Humpback stellwagen.JPG
Humpback whales have large bumps on their flippers called tubercles. These bumps break up fast water to help the whale turn at sharp angles. Pinnipeds, like sea lions, use their flippers to turn and move. A 2007 study of Steller's sea lion showed that most of its power comes from the drive phase of the flipper stroke.
The Osteology of the Reptiles p193.png
The Osteology of the Reptiles p193.png

Many animals have changed over a very long time to grow these limbs. This is called convergent evolution, where different animals develop similar traits. For example, whales, seals, and manatees all evolved flippers separately.

The Osteology of the Reptiles p193.png
The Osteology of the Reptiles p193.png
Sea turtles also evolved flippers during the Cretaceous period. Their arms and hands changed through many small steps to become flat. This helped them move better through the ocean. Some extinct animals like mosasaurs and plesiosaurs also had these special limbs.

Inside the flipper, the bones often look very different from land animals. Many whales have a trait called hyperphalangy. This means they have more finger bones than most other mammals.

Flipper eines Finnwales.jpg
Flipper eines Finnwales.jpg
This extra bone growth happened about 35 million years ago. Penguins are also very special because their flippers are actually wings. Their wing bones are very thick and heavy to help them dive.
Schwimmender-Pinguin.jpg
Schwimmender-Pinguin.jpg
This happened as they lost the ability to fly in the air. They traded flying in the sky for swimming in the sea.

Flippers are not just for moving from place to place. Some animals use them to help them find food.

Chelonia mydas is going for the air.jpg
Chelonia mydas is going for the air.jpg
A green turtle might use its flipper to hold a jellyfish. A loggerhead turtle has been seen rolling a scallop on the sea floor. Hawksbill turtles even use their flippers to push against reefs. This helps them rip an anemone loose to eat. These behaviors show that flippers are very useful tools for life in the ocean.

466 words

A flipper is a broad, flattened limb adapted for aquatic locomotion. This term describes the fully webbed swimming appendages of aquatic vertebrates that are not fish. In animals with two flippers, such as whales, the term refers only to the forelimbs. In animals with four flippers, such as sea turtles or pinnipeds, one can distinguish between pectoral flippers and pelvic flippers. It is important to distinguish flippers from fins. While fish use hydrodynamic control surfaces called fins, tetrapods with limbs that have evolved into fin-like structures are usually called flippers. For example, the dorsal structure on a cetacean is a dorsal fin, and their large tails are flukes, not flippers.

Flippers function as highly efficient hydrofoils, which are structures similar to airplane wings. They allow animals to propel themselves and maneuver through water with great speed. In cetaceans, such as dolphins and whales, the flippers are used primarily for control and steering. The fluke, or tail, provides the main propulsion.

Humpback stellwagen.JPG
Humpback stellwagen.JPG
In contrast, pinnipeds like sea lions use their foreflippers as oscillatory hydrofoils to help with movement. A 2007 study of Steller's sea lion found that most thrust is produced during the drive phase of the foreflipper stroke. This makes pinniped maneuverability superior to cetaceans, though still less than many fish.

Humpback whales exhibit a unique form of hydrodynamic control. Their flippers have non-smooth leading edges featuring large, irregular bumps called tubercles.

Humpback stellwagen.JPG
Humpback stellwagen.JPG
These tubercles break up the passage of fast-moving water into even channels. This process limits turbulence and allows the whale to maintain a "grip" on the water. Because of these tubercles, humpback whales can turn at sharper angles even at low velocities. This dexterity is often superior to the fluid dynamics seen in artificial wings or turbines.

The evolution of flippers is a classic example of convergent evolution. This occurs when different animal groups develop similar traits independently. Marine mammals like cetaceans, pinnipeds, and sirenians all evolved flippers separately.

The Osteology of the Reptiles p193.png
The Osteology of the Reptiles p193.png
There is even evidence of convergence at the gene level. In penguins, the evolution of flippers came at the expense of flight. Their ancestors were likely birds that could both fly and dive. To become efficient divers, penguin flippers became flatter, denser, and smaller. Their bones are osteosclerotic, meaning they have very thick cortical bone and small medullary cavities to help them dive.

Inside the limb, the skeletal structure often undergoes significant changes. Many cetaceans exhibit hyperphalangy, which is an increase in the number of phalanges, or finger bones, beyond the standard mammalian condition of three per digit.

Flipper eines Finnwales.jpg
Flipper eines Finnwales.jpg
This trait was also present in extinct marine reptiles like ichthyosaurs and plesiosaurs.
The Osteology of the Reptiles p194.png
The Osteology of the Reptiles p194.png
In cetaceans, this process likely began about 35 million years ago through modifications in embryonic limb development. While toothed cetaceans typically have five digits, many baleen whales have evolved to have only four digits.

Sea turtles provide another example of specialized limb evolution. They evolved during the Cretaceous period through a series of stepwise adaptations.

The Osteology of the Reptiles p193.png
The Osteology of the Reptiles p193.png
Key biomechanical changes included the flattening of skeletal elements, the lengthening of the humerus, and a reduction in mobility between individual flipper elements. These changes allowed their arms and hands to become effective tools for life in the ocean. This evolutionary path helped them refine their body plan for specialized swimming.

Beyond movement, flippers are used for complex foraging behaviors. It was once thought that these limbs did not interact much with the environment, but many species use them to find food. For example, a green turtle has been observed holding a jellyfish. A loggerhead turtle might roll a scallop along the sea floor. Hawksbill turtles use their flippers to push against reefs to gain leverage when ripping an anemone loose. These actions show that flippers are much more than just tools for swimming; they are versatile instruments for survival.

665 words
🖼️ Images & Media (6)
File:Schwimmender-Pinguin.jpg
Schwimmender-Pinguin.jpg
File:Chelonia mydas is going for the air.jpg
Chelonia mydas is going for the air.jpg
File:Humpback stellwagen.JPG
Humpback stellwagen.JPG
File:Flipper eines Finnwales.jpg
Flipper eines Finnwales.jpg
File:The Osteology of the Reptiles p193.png
The Osteology of the Reptiles p193.png
File:The Osteology of the Reptiles p194.png
The Osteology of the Reptiles p194.png
Up Next
🧬
Webbed foot
Life Science
More to explore

🔬 Go deeper

More advanced topics to explore

🪜 Step back

Simpler topics to build understanding

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.