首页> 外文会议>SPIE Conference on Biophotonics >Noncontact blood perfusion mapping in clinical applications
【24h】

Noncontact blood perfusion mapping in clinical applications

机译:临床应用中的非接触血液灌注映射

获取原文

摘要

Non-contact imaging photoplethysmography (iPPG) to detect pulsatile blood microcirculation in tissue has been selected as a successor to low spatial resolution and slow scanning blood perfusion techniques currently employed by clinicians. The proposed iPPG system employs a novel illumination source constructed of multiple high power LEDs with narrow spectral emission, which are temporally modulated and synchronised with a high performance sCMOS sensor. To ensure spectrum stability and prevent thermal wavelength drift due to junction temperature variations, each LED features a custom-designed thermal management system to effectively dissipate generated heat and auto-adjust current flow. The use of a multi-wavelength approach has resulted in simultaneous microvascular perfusion monitoring at various tissue depths, which is an added benefit for specific clinical applications. A synchronous detection algorithm to extract weak photoplethysmographic pulse-waveforms demonstrated robustness and high efficiency when applied to even small regions of 5 mm~2. The experimental results showed evidences that the proposed system could achieve noticeable accuracy in blood perfusion monitoring by creating complex amplitude and phase maps for the tissue under examination.
机译:非接触成像光电容积描记(iPPG)来检测在组织脉动血液微循环已经被选择作为一个后继低空间分辨率和目前临床医师采用慢扫描血液灌注技术。所提出的iPPG系统采用的多个高功率LED具有窄的光谱发射,这在时间上调制,并用高性能SCMOS传感器同步构造的新颖照明源。以确保光谱稳定性和防止热波长漂移由于结温度的变化,每个LED设有定制设计的热管理系统,以有效地消散产生的热量并自动调整电流流动。使用多波长方法已导致同时微血管灌注在不同的组织深度监测,这对于特定的临床应用一个额外的好处。当施加到甚至小为5mm〜2的区域A同步检测算法来提取弱光体积描脉冲的波形证实鲁棒性和高效率。实验结果表明证据,该系统能够实现在血液灌注通过对所检查的组织创建复杂的振幅和相位图监测精度明显。

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