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血管声音可视化系统有助于对血管通路进行监测和随访。

Vascular sound visualization system is useful for monitoring and surveillance of vascular access.

机构信息

Kaikoukai Anjo Kyoritsu Clinic, Aichi, Japan.

出版信息

J Vasc Access. 2022 May;23(3):390-397. doi: 10.1177/1129729821993984. Epub 2021 Feb 14.

Abstract

BACKGROUNDS

Vascular access (VA) is a lifeline for maintenance hemodialysis patients. Monitoring and surveillance of VA, therefore, play an important role for maintaining VA patency. Surveillance needs special apparatus to estimate the VA function, while, monitoring including physical examination does not usually need such devices but highly skill-dependent and qualitative.

PURPOSE

We report the clinical utility in monitoring and surveillance of VA using a newly developed electronic stethoscope and vascular sound visualization application.

METHODS

One hundred eight patients participated in the study. The vascular sounds were collected using the electronic stethoscope, converted into digital data, sent wirelessly to a personal computer, and then calculated. The units for the calculated intensity of the vascular sound were decibel [dB]. The intensity, however, was normalized as INDEX values ranging from 0 to 99 for practical use. Correlation between INDEX and the mean flow volume (mFV) and resistance index (RI) of brachial artery measured by Doppler ultrasound sonography were examined for VA surveillance. INDEX was continually measured at each dialysis session in ten patients who underwent the angioplasty for VA monitoring.

RESULTS

INDEX significantly correlated with the mFV (coefficient of correlation value = 0.68,  < 0.001) and RI (coefficient of correlation value = -0.51,  < 0.001) of brachial artery. Using the calculated cut-off values, the accuracy of INDEX for the diagnosis of AVF dysfunction ranged from 66% to 82%. INDEX attained the peak just after the angioplasty of culprit lesions and gradually decreased from one patient to another.

CONCLUSION

These results suggest that vascular sound visualization system can be useful in VA monitoring and surveillance for detecting and predicting the access stenosis.

摘要

背景

血管通路(VA)是维持性血液透析患者的生命线。因此,VA 的监测和随访对于维持 VA 通畅性起着重要作用。VA 功能的监测需要特殊设备来评估,而随访则不需要这些设备,但需要高度依赖技能和定性评估。

目的

我们报告使用新开发的电子听诊器和血管声音可视化应用程序在 VA 监测和随访中的临床应用。

方法

共有 108 例患者参与了这项研究。使用电子听诊器采集血管声音,将其转换为数字数据,通过无线方式发送到个人计算机,并进行计算。计算出的血管声音强度单位为分贝(dB)。然而,为了实际应用,强度被归一化为 0 至 99 的 INDEX 值。为了 VA 随访,我们检查了 INDEX 与通过多普勒超声测量的肱动脉平均流量(mFV)和阻力指数(RI)之间的相关性。在 10 例接受 VA 监测血管成形术的患者中,在每次透析时连续测量 INDEX。

结果

INDEX 与肱动脉的 mFV(相关系数值=0.68,<0.001)和 RI(相关系数值=-0.51,<0.001)显著相关。使用计算出的临界值,INDEX 对 AVF 功能障碍的诊断准确率在 66%至 82%之间。INDEX 在病变血管成形术后立即达到峰值,并逐渐从一位患者下降到另一位患者。

结论

这些结果表明,血管声音可视化系统可用于 VA 监测和随访,以检测和预测通路狭窄。

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