Suppr超能文献

重新探讨人类大脑血流对增强血压波动的反应。

Revisiting human cerebral blood flow responses to augmented blood pressure oscillations.

机构信息

Cerebrovascular Research Laboratory, Spaulding Rehabilitation Hospital, Boston, MA, USA.

Graduate School of Engineering, Chiba University, Chiba, Japan.

出版信息

J Physiol. 2019 Mar;597(6):1553-1564. doi: 10.1113/JP277321. Epub 2019 Jan 31.

Abstract

KEY POINTS

Cerebral autoregulation is most effective in buffering against pressure fluctuations slower than 0.03 Hz (∼30 s). This suggests that frequency bands for characterizing cerebral autoregulation should be redefined Low cross-spectral coherence below 0.03 Hz highlights the limitations of transfer function approaches Haemodynamic changes induced by lower body pressure could not fully explain the differences in autoregulation estimated from spontaneous vs. augmented fluctuations, and thus, observations of spontaneous fluctuations should not be relied on whenever possible.

ABSTRACT

There is currently little empirical basis for time scales that are considered to be most significant in cerebrovascular counter-regulation of changes in arterial pressure. Although it is well established that cerebral autoregulation behaves as a 'high-pass' filter, recommended frequency bands have been largely arbitrarily determined. To test effectiveness of cerebral autoregulation, we refined oscillatory lower body pressure (LBP) to augment resting pressure fluctuations below 0.1 Hz by a factor of two in 13 young male volunteers, and thoroughly characterized the time and frequency responses of cerebral autoregulation. We observed that despite a threefold increase in arterial pressure power <0.03 Hz with oscillatory LBP, there was no change in cerebral blood flow power, indicating near perfect counter-regulation. By contrast, in the range 0.03-0.10 Hz, both cerebral blood flow and arterial pressure power more than doubled. Our data demonstrate that cerebral autoregulation is most effective in buffering against pressure fluctuations slower than 0.03 Hz (∼30 s). This suggests that frequency bands of interest should be redefined and recording length should be increased considerably to account for this. Furthermore, low cross-spectral coherence below 0.03 Hz, even when pressure fluctuations were augmented, highlights the uncertainty in transfer function approaches and the need to either report precision or use non-linear approaches. Finally, haemodynamic changes induced by LBP could not fully explain the differences in autoregulation estimated from spontaneous vs. augmented fluctuations, and thus, observations of spontaneous fluctuations should not be relied on whenever possible.

摘要

要点

大脑自动调节在缓冲慢于 0.03Hz(约 30 秒)的压力波动方面最为有效。这表明,用于描述大脑自动调节的频带应该重新定义。低于 0.03Hz 的低交叉谱相干性突出了传递函数方法的不确定性,需要报告精度或使用非线性方法。最后,由 LBP 引起的血液动力学变化不能完全解释从自发波动和增强波动估计的自动调节之间的差异,因此,应尽可能避免依赖自发波动的观察。

摘要

目前,在动脉压变化的脑血管代偿中,被认为最重要的时间尺度几乎没有经验依据。尽管大脑自动调节表现为“高通”滤波器已得到充分证实,但推荐的频带在很大程度上是任意确定的。为了测试大脑自动调节的有效性,我们在 13 名年轻男性志愿者中精细地调制了振荡性下体血压(LBP),将休息时低于 0.1Hz 的压力波动增强了两倍,并彻底描述了大脑自动调节的时频响应。我们观察到,尽管振荡性 LBP 使动脉压<0.03Hz 的功率增加了三倍,但脑血流功率没有变化,表明几乎完美的代偿。相比之下,在 0.03-0.10Hz 的范围内,脑血流和动脉压的功率都增加了两倍以上。我们的数据表明,大脑自动调节在缓冲慢于 0.03Hz(约 30 秒)的压力波动方面最为有效。这表明,感兴趣的频带应该重新定义,并且应该大大增加记录长度以考虑到这一点。此外,即使在压力波动增强的情况下,低于 0.03Hz 的低交叉谱相干性突出了传递函数方法的不确定性,需要报告精度或使用非线性方法。最后,由 LBP 引起的血液动力学变化不能完全解释从自发波动和增强波动估计的自动调节之间的差异,因此,应尽可能避免依赖自发波动的观察。

相似文献

7
Defining the characteristic relationship between arterial pressure and cerebral flow.定义动脉血压与脑血流之间的特征关系。
J Appl Physiol (1985). 2012 Oct 15;113(8):1194-200. doi: 10.1152/japplphysiol.00783.2012. Epub 2012 Sep 6.
8
The role of myogenic mechanisms in human cerebrovascular regulation.肌源性机制在人类脑血管调节中的作用。
J Physiol. 2013 Oct 15;591(20):5095-105. doi: 10.1113/jphysiol.2013.259747. Epub 2013 Aug 19.

引用本文的文献

4
Quantification of dynamic cerebral autoregulation: welcome to the jungle!动态脑自动调节的定量分析:欢迎来到丛林!
Clin Auton Res. 2023 Dec;33(6):791-810. doi: 10.1007/s10286-023-00986-2. Epub 2023 Sep 27.

本文引用的文献

1
Directional sensitivity of dynamic cerebral autoregulation in squat-stand maneuvers.深蹲-站立动作中动态脑自动调节的方向敏感性
Am J Physiol Regul Integr Comp Physiol. 2018 Oct 1;315(4):R730-R740. doi: 10.1152/ajpregu.00010.2018. Epub 2018 Jul 5.
8

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验