DocumentCode
3079390
Title
Data processing for a fast rotating phased array real-time 3D acquisition unit
Author
Lancee, C.T. ; van Egmond, F.C. ; de Jong, N. ; Mastik, F. ; van der Steen, A.F.W. ; Roelandt, J.R.T.C. ; Bom, N.
Author_Institution
Erasmus Univ., Rotterdam, Netherlands
Volume
2
fYear
2000
fDate
36800
Firstpage
1597
Abstract
A fast rotating phased array transducer was designed in order to scan a conical section of the heart at high scan rates. Typical rotation rate is 240-480 rpm. Data is acquired in a period of 10 seconds using a GE Vingmed System V mainframe and stored in a PC as a sequence of frames in their raw (polar) format, i.e. range versus scan angle. The frames are linearly related to rotation angle. The data set is thus fully described in a spherical coordinate system. The contours of the left ventricle may be traced in the raw data frames without any scan conversion. The LV volume, contained in the sequence of contours along the azimuth direction in the spherical domain, can be obtained directly using a spherical volume integral. Another application of processing in the spherical domain is the fusion of multiple heartbeats into a synthesized single heartbeat. This can be achieved by realignment of the spherical data in the azimuth range using the ECG as synchronization. Asynchronous probe rotation produces a random interleaved volume sampling. We propose that the construction and analysis of three-dimensional data sets obtained from a fast rotating sector scanner is performed in the spherical coordinate system, produced by the probe itself. The procedure is efficient, accurate and time saving
Keywords
biomedical transducers; biomedical ultrasonics; cardiology; electrocardiography; image sequences; medical image processing; ultrasonic transducer arrays; ECG; GE Vingmed System V mainframe; LV volume; PC; asynchronous probe rotation; azimuth direction; data processing; data set; fast rotating phased array real-time 3D acquisition unit; fast rotating phased array transducer; fast rotating sector scanner; frame sequence; heart conical section; high scan rates; left ventricle contours; multiple heartbeat fusion; random interleaved volume sampling; rotation angle; rotation rate; scan angle; spherical coordinate system; spherical domain; spherical volume integral; synchronization; synthesized single heartbeat; three-dimensional data sets; Azimuth; Data analysis; Data processing; Electrocardiography; Heart; Performance analysis; Phased arrays; Probes; Sampling methods; Transducers;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium, 2000 IEEE
Conference_Location
San Juan
ISSN
1051-0117
Print_ISBN
0-7803-6365-5
Type
conf
DOI
10.1109/ULTSYM.2000.921629
Filename
921629
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