Noninvasive measurement of the Bayliss effect in retinal autoregulation

The Bayliss effect describes the reaction of smooth muscle cells in the arterial wall to changes in blood pressure. A rise in mean arterial blood pressure (MAP) causes an autoregulatory myogenic vessel constriction by smooth muscle cells in the arterial wall. The responsiveness of retinal vessels to...

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Veröffentlicht in:Graefe's archive for clinical and experimental ophthalmology 1999-04, Vol.237 (4), p.296-300
Hauptverfasser: BLUM, M, BACHMANN, K, WINTZER, D, RIEMER, T, VILSER, W, STROBEL, J
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Sprache:eng
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Zusammenfassung:The Bayliss effect describes the reaction of smooth muscle cells in the arterial wall to changes in blood pressure. A rise in mean arterial blood pressure (MAP) causes an autoregulatory myogenic vessel constriction by smooth muscle cells in the arterial wall. The responsiveness of retinal vessels to changes in MAP were analyzed using the Retinal Vessel Analyzer (RVA). Continuous measurement of retinal arterial vessels was performed in 40 healthy volunteers (age 18-56 years.) over a 9-min period. After a 3-min baseline measurement (phase I), isometric exercise caused a rise in MAP over the next 3 min (phase II). During the last 3 min (phase III) recovery was observed. Blood pressure and ECG were documented simultaneously throughout the experiment. Exercise caused a significant rise of 22.8 (+/-6.0) mm Hg in MAP (phase II vs. phase I: P
ISSN:0721-832X
1435-702X
DOI:10.1007/s004170050236