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1.
Acta Astronaut ; 17(2): 253-6, 1988.
Artigo em Inglês | MEDLINE | ID: mdl-11537101

RESUMO

The investigation of cardiovascular function necessarily involves a consideration of the exchange of substances at the capillary. If cardiovascular function is compromised or in any way altered during exposure to zero gravity in space, then it stands to reason that microvascular function is also modified. We have shown that an increase in cardiac output similar to that reported during simulated weightlessness is associated with a doubling of the number of post-capillary venules and a reduction in the number of arterioles by 35%. If the weightlessness of space travel produces similar changes in cardiopulmonary volume and cardiac output, a reasonable expectation is that astronauts will undergo venous neovascularization. We have developed an animal model in which to correlate microvascular and systemic cardiovascular function. The microcirculatory preparation consists of a lightweight, thermo-neutral chamber implanted around intact skeletal muscle on the back of a rat. Using this technique, the performed microvasculature of the cutaneous maximus muscle may be observed in the conscious, unanesthetized animal. Microcirculatory variables which may be obtained include venular and arteriolar numbers, lengths and diameters, single vessel flow velocities, vasomotion, capillary hematocrit anastomoses and orders of branching. Systemic hemodynamic monitoring of cardiac output by electromagnetic flowmetry, and arterial and venous pressures allows correlation of macro- and microcirculatory changes at the same time, in the same animal. Observed and calculated hemodynamic variables also include pulse pressure, heart rate, stroke volume, total peripheral resistance, aortic compliance, minute work, peak aortic flow velocity and systolic time interval. In this manner, an integrated assessment of total cardiovascular function may be obtained in the same animal without the complicating influence of anesthetics.


Assuntos
Fenômenos Fisiológicos Cardiovasculares , Decúbito Inclinado com Rebaixamento da Cabeça/fisiologia , Hemodinâmica/fisiologia , Simulação de Ausência de Peso , Ausência de Peso , Animais , Arteríolas/fisiologia , Pressão Sanguínea/fisiologia , Débito Cardíaco/fisiologia , Frequência Cardíaca/fisiologia , Microcirculação , Músculo Esquelético/irrigação sanguínea , Ratos , Voo Espacial , Resistência Vascular/fisiologia , Vênulas/fisiologia
2.
Microvasc Res ; 29(3): 360-70, 1985 May.
Artigo em Inglês | MEDLINE | ID: mdl-3999992

RESUMO

A lightweight, thermoneutral chamber design is introduced which permits the investigator to study, in vivo, intact skeletal muscle vasculature in the rat. The chamber, combined with established instrumentation (electromagnetic flowmetry and chronic catheterization) for monitoring of central hemodynamic parameters, affords the unique opportunity to correlate hemodynamic changes with alterations in the skeletal muscle microvasculature. Further, the studies may be performed in the unanesthetized animal. This model represents an integrated approach for the simultaneous study of the macro- and microcirculation within the same animal.


Assuntos
Microcirculação , Modelos Cardiovasculares , Animais , Estado de Consciência , Fenômenos Eletromagnéticos , Monitorização Fisiológica/instrumentação , Monitorização Fisiológica/métodos , Fisiologia/instrumentação , Ratos , Fatores de Tempo
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