首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Evaluation of blood access dysfunction based on a wavelet transform analysis of shunt murmurs.
【24h】

Evaluation of blood access dysfunction based on a wavelet transform analysis of shunt murmurs.

机译:基于分流杂音的小波变换分析评估血液通路功能障碍。

获取原文
获取原文并翻译 | 示例
           

摘要

We investigated shunt murmurs based on wavelet transform analysis as a new method for assessing vascular access function. In the present study, in patients with venous stenosis near an arteriovenous fistula (A-V fistula), a sensor was placed at different positions around the stenosis and shunt murmur signals obtained using a measurement system were subjected to time-frequency analysis based on wavelet transforms. The shunt murmurs obtained from the stenotic region closely represented some features of murmurs that are often referred to as "high-pitch" murmurs in the clinical setting. In contrast, shunt murmurs obtained about 5 cm downstream of the stenotic region closely represented some features of murmurs that are often referred to as "low-pitch" murmurs in the clinical setting. Furthermore, with the aim of extending the lifespan of arteriovenous grafts (A-V grafts) by detecting and treating stenotic lesions before the A-V graft becomes occluded, we evaluated the possibility of utilizing the present shunt murmur analysis for monitoring stenosis in such A-V grafts. When shunt murmurs from patients with A-V grafts were analyzed, the results suggested that the blood flow through the venous anastomosis of the graft was the most turbulent. This present method whereby blood flow in an A-V fistula is assessed based on the frequency distribution on a time-frequency plane by wavelet transform analysis is advantageous because findings are not markedly affected by sensor attachment. Furthermore, because the sensor is attached using an adhesive collar, measurements can be taken over a short period of time before each dialysis session.
机译:我们研究了基于小波变换分析的分流杂音,作为评估血管通路功能的一种新方法。在本研究中,在动静脉瘘(A-V瘘)附近有静脉狭窄的患者中,将传感器放置在狭窄周围的不同位置,并对使用测量系统获得的分流杂音信号进行基于小波变换的时频分析。从狭窄区域获得的分流杂音紧密代表了杂音的某些特征,在临床环境中通常将其称为“高音调”杂音。相反,在狭窄区域下游约5 cm处获得的分流杂音紧密代表了杂音的某些特征,这些特征在临床环境中通常被称为“低音调”杂音。此外,为了通过在闭塞A-V移植之前检测和治疗狭窄病变来延长动静脉移植物(A-V移植物)的寿命,我们评估了利用目前的分流杂音分析来监测此类A-V移植物中狭窄的可能性。分析来自A-V移植物患者的分流杂音时,结果表明,通过移植物静脉吻合术的血流最紊乱。通过小波变换分析基于时频平面上的频率分布来评估A-V瘘管中的血流的本方法是有利的,因为发现不会明显受到传感器附接的影响。此外,由于传感器是使用粘性轴环连接的,因此可以在每次透析之前的很短时间内进行测量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号