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大鼠清醒-睡眠周期中心率的中枢及压力反射控制

Central and baroreflex control of heart rate during the wake-sleep cycle in rat.

作者信息

Zoccoli G, Andreoli E, Bojic T, Cianci T, Franzini C, Predieri S, Lenzi P

机构信息

Dipartimento di Fisiologia Umana e Generale, Università Degli Studi di Bologna, Italy.

出版信息

Sleep. 2001 Nov 1;24(7):753-8.

Abstract

UNLABELLED

Spontaneous fluctuations in Heart Period (HP) and Mean Arterial Pressure (MAP) make it possible to evaluate baroreceptor-heart rate reflex sensitivity (BRS). 30-s sequences of HP and MAP beat-to-beat values were considered in the different wake-sleep states (Wake, W; Quiet Sleep, QS; Active Sleep, AS) in rats to assess whether 1) BRS changes between states and 2) the different indexes supply consistent BRS measures. BRS indexes were calculated according to validated literature procedures as regression coefficients of HP vs. MAP 1) within all ramps of increasing or decreasing MAP of four beats or more, with HP and MAP changing in the same direction (baroreflex-mediated fluctuations, BRSp), 2) within all such ramps irrespective of the relative direction of HP and MAP changes (baroreflex + non-baroreflex, i.e. non-homeostatic centrally driven, fluctuations, BRSA). HP vs. MAP regression coefficient along the entire 30-s sequence (bHPMAP) was also calculated.

RESULTS

BRSp did not change among states, BRSA decreased from QS to W to AS, bHPMAP decreased from QS to W and became negative in AS.

CONCLUSIONS

  1. as indicated by BRSp, baroreflex sensitivity is state independent, 2) BRSp to BRS(A) to bHPMAP are increasingly affected by non-baroreflex fluctuations, BRSp being most apt to measure BRS, 3) non-homeostatic MAP and HP fluctuations increase from QS to W and prevail in AS. These potentially harmful fluctuations are normally buffered by baroreflexes: in the case of baroreflex impairment, circulatory risk may arise in conditions like AS, when they prevail.
摘要

未标注

心率(HP)和平均动脉压(MAP)的自发波动使得评估压力感受器 - 心率反射敏感性(BRS)成为可能。在大鼠的不同清醒 - 睡眠状态(清醒,W;安静睡眠,QS;活跃睡眠,AS)下,考虑30秒的HP和MAP逐搏值序列,以评估:1)BRS在不同状态之间是否变化;2)不同指标是否能提供一致的BRS测量值。BRS指标根据已验证的文献程序计算,作为HP与MAP的回归系数:1)在所有四个或更多心跳的MAP上升或下降斜坡内,HP和MAP同向变化(压力反射介导的波动,BRSp);2)在所有此类斜坡内,无论HP和MAP变化的相对方向如何(压力反射 + 非压力反射,即非稳态中枢驱动波动,BRSA)。还计算了整个30秒序列中HP与MAP的回归系数(bHPMAP)。

结果

BRSp在不同状态之间没有变化,BRSA从QS到W再到AS逐渐降低,bHPMAP从QS到W降低,并在AS时变为负值。

结论

1)如BRSp所示,压力反射敏感性与状态无关;2)从BRSp到BRS(A)再到bHPMAP,受非压力反射波动的影响越来越大,BRSp最适合测量BRS;3)非稳态MAP和HP波动从QS到W增加,并在AS中占主导。这些潜在有害的波动通常由压力反射缓冲:在压力反射受损的情况下,当它们在AS等情况下占主导时,可能会出现循环风险。

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