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  • 1
    ISSN: 1432-2013
    Keywords: Sympathetic nerve stimulation ; Small pulmonary vessels ; Selective arterial vasoconstriction ; α-Adrenergic receptors ; β-Adrenergic receptors ; Flow velocity ; Volume flow ; Cat
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Using an X-ray television system, we measured directly changes in the internal diameter (ID), flow velocity, and volume flow of the small pulmonary vessels (100–500 μm ID) in response to electrical sympathetic nerve stimulation (SNS) in anaesthetized cats before and after adrenergic receptor blockade. Flow velocity was obtained by measuring the distance that the leading edge of the contrast medium moved per 0.1 s in the small arteries. Volume flow was obtained from the product of flow velocity and cross-sectional area calculated from the ID of the small arteries. SNS was accolmplished with 10- to 15-V square-wave pulses of 2-ms duration at 20–30 Hz for 20-s periods. In response to SNS, arterial ID decreased significantly by 8–13% in the 200- to 500-μm vessels but not in the 100- to 200-μm vessels. In the veins, on the other hand, there was no significant ID decrease in any of the 100- to 500-μm vessels. After α-receptor blockade (phentolamine, 2 mg/kg i.V.), there were significant ID increases (4–9%) in the 100- to 500-μm arteries in response to SNS, the maximum increases being in the 100- to 200-μm arteries. After β-blockade (propranolol, 2 mg/kg i.V.), the ID decrease due to SNS in the 200- to 500-μm arteries was enhanced (24–27%) and, in addition, the 100- to 200-μm arteries exhibited a significant ID decrease (18%). Combined α and β-blockade completely abolished the ID decrease due to SNS. In the veins, on the other hand, no ID change occurred even after α- or β-blockade. The results indicate that SNS selectively constricts 200- to 500-μm arteries. The data suggests that SNS has α-mediated vasoconstrictor and β-mediated vasodilator effects on the 100- to 500-μm arteries and that the ID response pattern to SNS depends chiefly on the balance between α-mediated vasoconstriction and β-mediated vasodilation. Associated with the ID decrease due to SNS, flow velocity was increased by 21%. However, SNS did not affect volume flow, because the increase in velocity was compensated by the reduction in the cross-sectional area (due to the decreased ID).
    Type of Medium: Electronic Resource
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