DocumentCode
1254241
Title
A 30-MHz piezo-composite ultrasound array for medical imaging applications
Author
Ritter, Timothy A. ; Shrout, Thomas R. ; Tutwiler, Rick ; Shung, K. Kirk
Author_Institution
NIH Resource Center for Med. Ultrasonic Transducer Technol., Pennsylvania State Univ., University Park, PA, USA
Volume
49
Issue
2
fYear
2002
Firstpage
217
Lastpage
230
Abstract
Ultrasound imaging at frequencies above 20 MHz is capable of achieving improved resolution in clinical applications requiring limited penetration depth. High frequency arrays that allow real-time imaging are desired for these applications but are not yet currently available. In this work, a method for fabricating fine-scale 2-2 composites suitable for 30-MHz linear array transducers was successfully demonstrated. High thickness coupling, low mechanical loss, and moderate electrical loss were achieved. This piezo-composite was incorporated into a 30-MHz array that included acoustic matching, an elevation focusing lens, electrical matching, and an air-filled kerf between elements. Bandwidths near 60%, 15-dB insertion loss, and crosstalk less than -30 dB were measured. Images of both a phantom and an ex vivo human eye were acquired using a synthetic aperture reconstruction method, resulting in measured lateral and axial resolutions of approximately 100 /spl mu/m.
Keywords
biomedical transducers; biomedical ultrasonics; image reconstruction; image resolution; losses; piezoelectric transducers; ultrasonic transducer arrays; 100 micron; 15 dB; 20 MHz; 30 MHz; acoustic matching; air-filled kerf; axial resolution; electrical loss; elevation focusing lens; ex vivo human eye; lateral resolution; limited penetration depth; mechanical loss; medical diagnostic imaging; piezocomposite ultrasound array; synthetic aperture reconstruction method; Acoustic arrays; Acoustic measurements; Acoustic transducers; Biomedical imaging; Focusing; Frequency; High-resolution imaging; Image resolution; Lenses; Ultrasonic imaging; Artifacts; Equipment Design; Eye; Humans; Phantoms, Imaging; Transducers; Ultrasonography;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/58.985706
Filename
985706
Link To Document