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November 1, 1984Journal of Applied Physiology29 citations

Acute cardiorespiratory responses of hypertensive rats to swimming and treadmill exercise

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MSM. L. SturekTBT. G. BedfordCTCharles M. Tipton

Structured PICO

Does swimming or running exercise alter acute cardiorespiratory responses in spontaneously hypertensive rats?

P
Population
Male spontaneously hypertensive rats (SHR), n=5-6 per group (5 groups)
I
Intervention
Swimming (inexperienced free swimmers, experienced free swimmers, or experienced weighted swimmers with 2% body weight attached) or running (at 75% VO2max) for 75 minutes
C
Comparator
Control group (no exercise)
O
Outcome
Acute cardiorespiratory responses (heart rate, mean arterial blood pressure, blood gas measurements)surrogate

Swimming in hypertensive rats induces cardiorespiratory responses characterized by acidosis, hypercapnia, and decreased heart rate and blood pressure, likely due to the diving reflex, contrasting with the physiological increases seen during treadmill running.

Abstract

The acute cardiorespiratory responses of spontaneously hypertensive rats (SHR) to swimming and running exercise was investigated because SHR populations are hyperresponsive to external stimuli, of the paucity of existing data, and of the uncertainty on the role of exercise stimuli for training adaptations to occur. Male rats were assigned to one of five groups (n = 5-6/group) and designated as controls (C), inexperienced or naive free swimmers (NFS), experienced free swimmers (FS), experienced weighted swimmers (WS) (attached weights equal to 2% of their body weight) or experienced runners (R) who ran at an intensity of 75% of their VO2max. After 75 min in the water, all groups were acidotic and hypercapnic with the WS experiencing the greatest changes. Heart rate (HR) was increased in all swimmers during the initial 10 min, but declined thereafter, and after 75 min, the HR of WS (348 +/- 1 beats/min) was significantly lower than the C group (416 +/- 22 beats/min). At the same time interval, mean arterial blood pressure (MAP) was decreased in all swimming groups to values lower than the C animals. In addition, an exaggerated diving reflex was frequently noted when the rats were submerged. When the magnitudes of the changes were evaluated in the swimming animals they were directly associated with their submergence times, i.e., during 65-75 min of the swim, NFS, FS, and WS were submerged for 43, 46, and 66% of their total swim time, respectively. In sharp contrast to the swimmers, the runners exhibited increases in HR and MAP with their blood gas measurements being indicative of hyperventilation. We concluded that swimming as an exercise mode for hypertensive rats is best served to study the combined effects of excitement, prolonged submergence, and the consequences of the diving reflex.

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Cite This Study

Sturek et al. (1984) studied this question.

synapsesocial.com/papers/6a761c4e539f6335a58c5852https://doi.org/10.1152/jappl.1984.57.5.1328
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effect of hypertension on hearts of rats trained by swimming1987 · 7 citations
  2. 2Voluntary exercise and its effects on young SHR and stroke-prone hypertensive rats1986 · 56 citations
  3. 3Acute volume expansion decreased baroreflex response after swimming but not after running exercise training in hypertensive rats2019 · 6 citations
  4. 4Cardiovascular and hormonal responses to swimming and running in the rat1988 · 54 citations
  5. 5Effect of swimming training on the cardiovascular system in normotensive rats2000 · 6 citations