Topic 3 - Gas Exchange In Fish [11] Flashcards

1
Q

How can Rate of Diffusion be calculated?

A

Fick’s Law.
Diffusion = Surface Area x Difference in Concentration
—————————————————————-
Length of Diffusion path

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2
Q

What are the 3 features of an efficient gas exchange surface?

A

Large Surface Area to Volume Ratio
Short Diffusion Pathway
Maintaining A Concentration Gradient

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3
Q

Why do fish require a gas exchange surface?

A

Fish are waterproof

they have a small SA : V ratio

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4
Q

Fish have a short diffusion distance for efficient gas exchange, Explain.

A

Fish have a capillary network in EVERY SINGLE Lamellae, The Lamellae are THIN.

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5
Q

Describe the Countercurrent Flow Mechanism

A

when the water flow in the gills in the opposite direction to the flow of blood in capillaries.
It ensures equilibrium is never reached, meaning diffusion can occur across the entire length of the lamellae.

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6
Q

How do Fish Maintain Concentration Gradient for efficient gas exchange?

A

Countercurrent Flow Mechanism

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7
Q

Fish have A Large SA : V Ratio for efficient gas exchange, how?

A

Fish have many GILL FILAMENTS covered in many GILL LAMELLAE

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8
Q

Describe the Fish Gill Anatomy

A

FOUR Layers of Gills on both sides of the head
Gills made up of stacks of gill filaments
each gill filament covered in gill lamellae (positioned at right angles to the filament)

This creates a large SA

When fish open their mouth
water rushes in over the gills and then out through holes in the sides of their head

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9
Q

How can Rate of Diffusion be calculated?

A

Fick’s Law.
Diffusion = Surface Area x Difference in Concentration
—————————————————————-
Length of Diffusion Path

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10
Q

Describe the Countercurrent Flow Mechanism

A

when the water flow in the gills in the opposite direction to the flow of blood in capillaries.
It ensures equilibrium is never reached, meaning diffusion can occur across the entire length of the lamellae.

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