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Willis环的搏动性分析

Pulsatility analysis of the circle of Willis.

作者信息

Voss Henning U, Razlighi Qolamreza R

机构信息

Department of Radiology, Weill Cornell Medicine, New York, NY, USA.

Cornell MRI Facility, College of Human Ecology, Cornell University, Ithaca, NY, USA.

出版信息

Aging Brain. 2024 Mar 9;5:100111. doi: 10.1016/j.nbas.2024.100111. eCollection 2024.

Abstract

PURPOSE

To evaluate the phenomenological significance of cerebral blood pulsatility imaging in aging research.

METHODS

N = 38 subjects from 20 to 72 years of age (24 females) were imaged with ultrafast MRI with a sampling rate of 100 ms and simultaneous acquisition of pulse oximetry data. Of these, 28 subjects had acceptable MRI and pulse data, with 16 subjects between 20 and 28 years of age, and 12 subjects between 61 and 72 years of age. Pulse amplitude in the circle of Willis was assessed with the recently developed method of analytic phase projection to extract blood volume waveforms.

RESULTS

Arteries in the circle of Willis showed pulsatility in the MRI for both the young and old age groups. Pulse amplitude in the circle of Willis significantly increased with age (p = 0.01) but was independent of gender, heart rate, and head motion during MRI.

DISCUSSION AND CONCLUSION

Increased pulse wave amplitude in the circle of Willis in the elderly suggests a phenomenological significance of cerebral blood pulsatility imaging in aging research. The physiologic origin of increased pulse amplitude (increased pulse pressure vs. change in arterial morphology vs. re-shaping of pulse waveforms caused by the heart, and possible interaction with cerebrospinal fluid pulsatility) requires further investigation.

摘要

目的

评估脑血流搏动成像在衰老研究中的现象学意义。

方法

对38名年龄在20至72岁之间的受试者(24名女性)进行了超快MRI成像,采样率为100毫秒,并同时采集脉搏血氧饱和度数据。其中,28名受试者的MRI和脉搏数据合格,16名受试者年龄在20至28岁之间,12名受试者年龄在61至72岁之间。采用最近开发的解析相位投影方法评估 Willis 环中的脉搏幅度,以提取血容量波形。

结果

Willis 环中的动脉在年轻和老年组的MRI中均显示出搏动性。Willis 环中的脉搏幅度随年龄显著增加(p = 0.01),但与性别、心率和MRI期间的头部运动无关。

讨论与结论

老年人Willis环中脉搏波幅度的增加表明脑血流搏动成像在衰老研究中具有现象学意义。脉搏幅度增加的生理起源(脉压增加与动脉形态变化与心脏引起的脉搏波形重塑以及与脑脊液搏动性的可能相互作用)需要进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fde5/10940807/0453436195ab/gr1.jpg

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