Big Biology

What the flux? The evolution of oxygen cascades (Ep 86)

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Jun 23, 2022
How do animals keep their muscles fueled with oxygen, from the first breath to the cellular power plants? Physiologist Graham Scott explores the oxygen cascade in deer mice from sea level to mountain peaks, where thin air and bitter cold push their limits. Along the way: marathon-running rats, hemoglobin, lung capacity, and the puzzle of how complex physiological systems evolve.
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1
Introduction
00:00 • 2min
2
The Oxygen Cascade
01:38 • 2min
3
Oxygen Cascades in Deer Mice
03:29 • 2min
4
The Co Control of Complex Physiological Systems
05:09 • 3min
5
Is There a Cascade in Invertebrates?
08:20 • 2min
6
Physiological Integration in the Evolution of Complex Systems
09:58 • 4min
7
Is There a Cost to Maintaining This Extra Capacity?
14:06 • 2min
8
The Relationship Between Body Size and Oxygen Transport
15:59 • 2min
9
Lungs and the Immune System
18:16 • 4min
10
Physiological Control Theory
22:01 • 4min
11
Is the Tissue Diffusing Capcity So Important?
26:21 • 3min
12
Is the Getting in to the Muscles the Most Important in Terms of Control?
29:49 • 2min
13
Control Is a Very Different Thing to Control
32:13 • 2min
14
Physiological Changes in the Oxygen Transport Pathway
34:07 • 2min
15
What Is the Diffusing Capacity?
35:55 • 4min
16
The Evolution of Arobic Capacity in Rats
39:30 • 3min
17
How the Oxygen Transport Pathway of Paramiscous Mice Has Evolved?
42:28 • 2min
18
The Evolution of the Oxygen Cascade in Mice at High Altitudes
44:34 • 4min
19
Using a Low Altitude Mouse to Increase Arobic Capacity
48:31 • 4min
20
Hemoglobin in the High Altitude Mice
52:36 • 6min
21
Is Hemoglobin Part of the Story?
58:24 • 3min
22
How Does Hemoglobin Affect Arobic Capacity?
01:01:30 • 5min
23
Evolution of Physiological Systems
01:06:56 • 2min
24
How Important Is Pliotrope in Complex Systems?
01:09:23 • 2min
25
Is There a Network Approach to the Oxygen Transport Pathway?
01:11:44 • 2min