A family of intracardiac ultrasound imaging devices designed for guidance of electrophysiology ablation procedures.

A family of intracardiac ultrasound imaging devices designed for guidance of electrophysiology ablation procedures.
复制标题

DOI:
10.1109/iembs.2009.5332380
复制
发表时间:
2009
期刊:
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
影响因子:
--
通讯作者:
O'Donnell M
O'Donnell M
中科院分区:
其他
文献类型:
--
作者:
Sahn DJ;Stephens DN;Cannata JM;Shung K;Oralkan O;Nikoozadeh A;Khuri-Yakub BT;Nguyen H;Chen P;Dentinger AM;Wildes D;Thomenius KE;Mahajan A;Shivkumar K;O'Donnell M

文献摘要

相似文献

我们的生物工程研究伙伴基金,“心脏成像高频超声阵列”,包括在本文结尾引用的个人-道格拉斯N。斯蒂芬斯(加州大学戴维斯分校),马修奥唐纳(华盛顿大学西雅图),凯托梅纽斯(通用电气全球研究),亚伦M。Dentinger(GE全球研究)、道格拉斯怀尔德斯(GE全球研究)、Peter Chen(圣犹达医疗用品有限公司)、K. Kirk Shung(南加州大学),Jonathan M. Cannata(南加州大学),Butrus(Pierre)T.胡里-雅库布(斯坦福大学),奥默奥拉坎(斯坦福大学),阿曼·马哈詹(UCLA医学院),Kalyanam Shivkumar(加州大学洛杉矶分校医学院)和大卫J.萨恩(俄勒冈州健康与科学大学)-是在其第六年的国家卫生研究院资助,已经提出开发一系列高频小型化的正向和侧向,期待配备有电生理标测和定位传感器的超声成像设备,并最终包括电容式微机械超声换能器(cMUT)设备家族-一个前瞻性的,cMUT MicroLinear阵列和能够进行三维成像的环形阵列以及足够大以容纳电极和消融装置的5 Fr管腔。
Our Bioengineering Research Partnership grant, “High Frequency Ultrasound Arrays for Cardiac Imaging”, including the individuals cited at the end of this paper - Douglas N. Stephens (UC Davis), Matthew O’Donnell (UW Seattle), Kai Thomenius (GE Global Research), Aaron M. Dentinger (GE Global Research), Douglas Wildes (GE Global Research), Peter Chen (St. Jude Medical), K. Kirk Shung (University of Southern California), Jonathan M. Cannata (University of Southern California), Butrus (Pierre) T. Khuri-Yakub (Stanford University), Omer Oralkan (Stanford University), Aman Mahajan (UCLA School of Medicine), Kalyanam Shivkumar (UCLA School of Medicine) and David J. Sahn (Oregon Health & Science University) – is in its sixth year of NIH funding, having proposed to develop a family of high frequency miniaturized forward and side-looking ultrasound imaging devices equipped with electrophysiology mapping and localization sensors and eventually to include a family of capactive micromachined ultrasonic transducer (cMUT) devices – a forward-looking cMUT MicroLinear array and a ring array capable of 3-dimensional imaging and a 5Fr lumen large enough to admit an electrode and ablation devices.