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EFFECTS OF HIGH INTENSITY EXERCISE TRAINING ON CARDIOVASCULAR FUNCTION, OXYGEN UPTAKE, INTERNAL OXYGEN TRANSPORT AND OSMOTIC BALANCE IN CHINOOK SALMON (ONCORHYNCHUS TSHAWYTSCHA) DURING CRITICAL SPEED SWIMMING

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Figure

Fig. 1. Changes in MO∑ as a function of swimming velocity inexercise-trained (N=9) and (N=7) control groups of uncannulatedfish
Fig. 2. (A) Cardiac output (trained (chinook salmon at progressively higher swimmingvelocities and after 1h recovery (Rec.) following the swimto (stroke volume (Nlevels; ‡significant (R deliveryOsysU∑), (C) Oxygen uptake () and (G) dorsal aortic blood press
Table 3. Body mass and plasma osmolality at rest, at Ucrit, and after recovery for 1h from Ucrit in control and exercise-trainedgroups of chinook salmon, and in exercise-trained chinook salmon with only a dorsal aorta (DA) cannula
Fig. 3. Muscle dry mass of control and exercise-trained chinooksalmon. Fish were sampled either directly from the training tankstunnel (from control; ‡significant ((Control and Trained), or 1h after swimming to Ucrit in a swimUcrit)
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