Literature DB >> 11823090

Intracardiac phased-array imaging: methods and initial clinical experience with high resolution, under blood visualization: initial experience with intracardiac phased-array ultrasound.

Douglas L Packer1, Carolyn L Stevens, Michael G Curley, Charles J Bruce, Fletcher A Miller, Bijoy K Khandheria, Jae K Oh, Lawrence J Sinak, James B Seward.   

Abstract

OBJECTIVES: This study was designed to test the feasibility of high-resolution phased-array intracardiac imaging.
BACKGROUND: Intracardiac echocardiographic imaging of the heart during interventional electrophysiologic (EP) procedures has been limited by inadequate ultrasound penetration and absence of Doppler hemodynamic and flow information produced by rotating mechanical ultrasound elements.
METHODS: A 10F (3.2 mm) phased-array, variable 5.5 to 10 MHz frequency imaging catheter with a four-way deflectable tip was applied in 24 patients undergoing EP studies. Sixteen prespecified cardiac targets were imaged from a right heart venue.
RESULTS: Fifteen patients had no underlying organic heart disease; nine had ischemic, cardiomyopathic, valvular or congenital heart disorders. Longitudinal and short-axis imaging readily disclosed each cardiac valve, support structures and chamber, as well as the pericardium, right and left atrial appendages, the junction of the right atrium and superior vena cava, crista terminalis, tricuspid valve isthmus, coronary sinus orifice, membranous fossa ovalis and pulmonary veins. The average target depth was 8.8+/-1.5 cm (range 0.5 to 15 cm), with adequate penetration at a 7.5 MHz imaging frequency. Color flow and Doppler utilities clearly characterized transaortic and pulmonic valve and pulmonary vein blood flow, including during low output states.
CONCLUSIONS: These first human studies with this technology demonstrate the methods, feasibility and utility of intracardiac phased-array vector and Doppler imaging for long-axis, apex-to-base global cardiac imaging. High resolution of endocardial structures and catheters suggests additional utility for visualizing interventional procedures from the right heart.

Entities:  

Mesh:

Year:  2002        PMID: 11823090     DOI: 10.1016/s0735-1097(01)01764-8

Source DB:  PubMed          Journal:  J Am Coll Cardiol        ISSN: 0735-1097            Impact factor:   24.094


  19 in total

1.  First in vivo use of a capacitive micromachined ultrasound transducer array-based imaging and ablation catheter.

Authors:  Douglas N Stephens; Uyen T Truong; Amin Nikoozadeh; Omer Oralkan; Chi Hyung Seo; Jonathan Cannata; Aaron Dentinger; Kai Thomenius; Alan de la Rama; Tho Nguyen; Feng Lin; Pierre Khuri-Yakub; Aman Mahajan; Kalyanam Shivkumar; Matt O'Donnell; David J Sahn
Journal:  J Ultrasound Med       Date:  2012-02       Impact factor: 2.153

Review 2.  Principles of intracardiac echocardiography.

Authors:  Navin C Nanda; Andrew P Miller
Journal:  J Interv Card Electrophysiol       Date:  2005-08       Impact factor: 1.900

Review 3.  Intracardiac echocardiography for the guidance of percutaneous procedures.

Authors:  Sawsan M Awad; Qi-Ling Cao; Ziyad M Hijazi
Journal:  Curr Cardiol Rep       Date:  2009-05       Impact factor: 2.931

4.  The acoustic lens design and in vivo use of a multifunctional catheter combining intracardiac ultrasound imaging and electrophysiology sensing.

Authors:  Douglas N Stephens; Jonathan Cannata; Ruibin Liu; Jian Zhong Zhao; K Kirk Shung; Hien Nguyen; Raymond Chia; Aaron Dentinger; Douglas Wildes; Kai E Thomenius; Aman Mahajan; Kalyanam Shivkumar; Kang Kim; Matthew O'Donnell; David Sahn
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2008-03       Impact factor: 2.725

5.  Detection of left atrial thrombus by intracardiac echocardiography in patients undergoing ablation of atrial fibrillation.

Authors:  Chenni S Sriram; Javier E Banchs; Talal Moukabary; Raman Moradkhan; Mario D Gonzalez
Journal:  J Interv Card Electrophysiol       Date:  2015-05-03       Impact factor: 1.900

Review 6.  Ablation of atrial fibrillation.

Authors:  Eduardo B Saad; Nassir F Marrouche; Andrea Natale
Journal:  Curr Cardiol Rep       Date:  2002-09       Impact factor: 2.931

7.  Multifunctional catheters combining intracardiac ultrasound imaging and electrophysiology sensing.

Authors:  D N Stephens; J Cannata; Ruibin Liu; Jian Zhong Zhao; K K Shung; Hien Nguyen; R Chia; A Dentinger; D Wildes; K E Thomenius; A Mahajan; K Shivkumar; Kang Kim; M O'Donnell; A Nikoozadeh; O Oralkan; P T Khuri-Yakub; D J Sahn
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2008-07       Impact factor: 2.725

8.  Real time quantification of low temperature radiofrequency ablation lesion size using phased array intracardiac echocardiography in the canine model: comparison of two dimensional images with pathological lesion characteristics.

Authors:  A Doi; M Takagi; I Toda; M Teragaki; M Yoshiyama; K Takeuchi; J Yoshikawa
Journal:  Heart       Date:  2003-08       Impact factor: 5.994

9.  Recent trends in imaging for atrial fibrillation ablation.

Authors:  Rajesh Kabra; Jagmeet Singh
Journal:  Indian Pacing Electrophysiol J       Date:  2010-05-05

10.  A transthoracic echocardiographic follow-up study after catheter ablation of atrial fibrillation: can we detect pulmonary vein stenosis by transthoracic echocardiography?

Authors:  Dong-Hyeon Lee; Yong-Seog Oh; Woo-Seung Shin; Ji-Hoon Kim; Yun-Seok Choi; Sung-Won Jang; Chul-Soo Park; Ho-Joong Youn; Man-Young Lee; Wook-Sung Chung; Ki-Bae Seung; Tai-Ho Rho; Jae-Hyung Kim; Kyu-Bo Choi
Journal:  Korean Circ J       Date:  2010-09-30       Impact factor: 3.243

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