Dual-Frequency Piezoelectric Transducers for Contrast Enhanced Ultrasound Imaging
نویسندگان
چکیده
For many years, ultrasound has provided clinicians with an affordable and effective imaging tool for applications ranging from cardiology to obstetrics. Development of microbubble contrast agents over the past several decades has enabled ultrasound to distinguish between blood flow and surrounding tissue. Current clinical practices using microbubble contrast agents rely heavily on user training to evaluate degree of localized perfusion. Advances in separating the signals produced from contrast agents versus surrounding tissue backscatter provide unique opportunities for specialized sensors designed to image microbubbles with higher signal to noise and resolution than previously possible. In this review article, we describe the background principles and recent developments of ultrasound transducer technology for receiving signals produced by contrast agents while rejecting signals arising from soft tissue. This approach relies on transmitting at a low-frequency and receiving microbubble harmonic signals at frequencies many times higher than the transmitted frequency. Design and fabrication of dual-frequency transducers and the extension of recent developments in transducer technology for dual-frequency harmonic imaging are discussed.
منابع مشابه
Award Number: W81XWH‐12‐1‐0303 TITLE: Piezoelectric Composite Micromachined Multifrequency Transducers for High- Resolution, High-Contrast Ultrasound Imaging for Improved Prostate Cancer Assessment PRINCIPAL INVESTIGATOR:
Presentations J. Kim, S. Li, X. Jiang “Development of Transmitters in Dual Frequency Transducers for Interventional Contrast Enhanced Imaging”, abstract accepted to 2014 IEEE Ultrasonics Symposium, presented Sept 3-6, 2014. J. Kim, S. Li, S. Kasoji, P. Dayton, X. Jiang, “Development of Transmitters in Dual-Frequency Transducers for Interventional Contrast Enhanced Imaging and Acoustic Angiograp...
متن کاملNumerical Study and Optimisation of a Novel Single-Element Dual-Frequency Ultrasound Transducer
A dual-frequency ultrasound transducer (DFUT) is usually preferred for its numerous advantageous applications, especially in biomedical imaging and sensing. However, most of DFUTs are based on the combination of fundamental and harmonic operations, or integration of multiple different single-frequency ultrasound transducers, hindering perfect beam alignment and acoustic impedance matching. A no...
متن کاملQuantitative comparison of PZT and CMUT probes for photoacoustic imaging: Experimental validation
Photoacoustic (PA) signals are short ultrasound (US) pulses typically characterized by a single-cycle shape, often referred to as N-shape. The spectral content of such wideband signals ranges from a few hundred kilohertz to several tens of megahertz. Typical reception frequency responses of classical piezoelectric US imaging transducers, based on PZT technology, are not sufficiently broadband t...
متن کاملEfficient Driving of Piezoelectric Transducers Using a Biaxial Driving Technique
Efficient driving of piezoelectric materials is desirable when operating transducers for biomedical applications such as high intensity focused ultrasound (HIFU) or ultrasound imaging. More efficient operation reduces the electric power required to produce the desired bioeffect or contrast. Our preliminary work [Cole et al. Journal of Physics: Condensed Matter. 2014;26(13):135901.] suggested th...
متن کاملBroadband gradient impedance matching using an acoustic metamaterial for ultrasonic transducers
High-quality broadband ultrasound transducers yield superior imaging performance in biomedical ultrasonography. However, proper design to perfectly bridge the energy between the active piezoelectric material and the target medium over the operating spectrum is still lacking. Here, we demonstrate a new anisotropic cone-structured acoustic metamaterial matching layer that acts as an inhomogeneous...
متن کامل