scholarly journals Diagnostic Capability of Comprehensive Handheld vs Transthoracic Echocardiography

2014 ◽  
Vol 89 (6) ◽  
pp. 790-798 ◽  
Author(s):  
Michael W. Cullen ◽  
Lori A. Blauwet ◽  
Ori M. Vatury ◽  
Sharon L. Mulvagh ◽  
Thomas R. Behrenbeck ◽  
...  
2018 ◽  
pp. 26-35
Author(s):  
Z. A. Agaeva ◽  
K. B. Baghdasaryan

The transthoracic echocardiography made by multifrequency probes with support of the mode of the second harmonic imaging, is a competitive method for visualization of the main coronary arteries and allows to estimate coronary blood flow with high quality. Of course, the method has considerable restrictions, most important of which is the low spatial resolution of a method, due to small acoustic window. Because of this the transthoracic visualization of coronary arteries perhaps will not become the leading method of anatomic reconstruction of separately taken coronary artery and especially all coronary arteries system. However uniqueness and indisputable advantage of this method is an opportunity to noninvasively estimate a coronary blood flow both once, and in dynamics.


Author(s):  
Ted Kolasa ◽  
Alfredo Mendoza

Abstract Comprehensive in situ (designed-in) diagnostic capabilities have been incorporated into digital microelectronic systems for years, yet similar capabilities are not commonly incorporated into the design of analog microelectronics. And as feature sizes shrink and back end interconnect metallization becomes more complex, the need for effective diagnostics for analog circuits becomes ever more critical. This paper presents concepts for incorporating in situ diagnostic capability into analog circuit designs. Aspects of analog diagnostic system architecture are discussed as well as nodal measurement scenarios for common signal types. As microelectronic feature sizes continue to shrink, diagnostic capabilities such as those presented here will become essential to the process of fault localization in analog circuits.


Author(s):  
Julie S. Doll

Abstract To enable efficient, accurate debug of Intel architecture components to take place within contract manufacturing sites, and to provide alternatives for the removal of Intel components from, Intel is deploying a diagnostic capability and attendant educational collateral known as to achieve these objectives Intel® Component Diagnostic Technology. This paper will describe details of Intel® Component Diagnostic Technology, including the diagnostic fixture and user interface, diagnostic scripts and analytical coverage, data management and reporting, and on-site and Web-based educational offerings.


Choonpa Igaku ◽  
2011 ◽  
Vol 38 (4) ◽  
pp. 461-464
Author(s):  
Koutatsu NOMURA ◽  
Yoshikazu YAZAKI ◽  
Masako MIYASHITA ◽  
Sachiko OOTSUKI ◽  
Yutaka KUMAGAI ◽  
...  

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