Literature DB >> 26977342

High frame rate photoacoustic imaging at 7000 frames per second using clinical ultrasound system.

Kathyayini Sivasubramanian1, Manojit Pramanik1.   

Abstract

Photoacoustic tomography, a hybrid imaging modality combining optical and ultrasound imaging, is gaining attention in the field of medical imaging. Typically, a Q-switched Nd:YAG laser is used to excite the tissue and generate photoacoustic signals. But, such photoacoustic imaging systems are difficult to translate into clinical applications owing to their high cost, bulky size often requiring an optical table to house such lasers. Moreover, the low pulse repetition rate of few tens of hertz prevents them from being used in high frame rate photoacoustic imaging. In this work, we have demonstrated up to 7000 Hz photoacoustic imaging (B-mode) and measured the flow rate of a fast moving object. We used a ~140 nanosecond pulsed laser diode as an excitation source and a clinical ultrasound imaging system to capture and display the photoacoustic images. The excitation laser is ~803 nm in wavelength with ~1.4 mJ energy per pulse. So far, the reported 2-dimensional photoacoustic B-scan imaging is only a few tens of frames per second using a clinical ultrasound system. Therefore, this is the first report on 2-dimensional photoacoustic B-scan imaging with 7000 frames per second. We have demonstrated phantom imaging to view and measure the flow rate of ink solution inside a tube. This fast photoacoustic imaging can be useful for various clinical applications including cardiac related problems, where the blood flow rate is quite high, or other dynamic studies.

Keywords:  (110.0110) Imaging systems; (110.5120) Photoacoustic imaging; (140.2010) Diode laser arrays

Year:  2016        PMID: 26977342      PMCID: PMC4771451          DOI: 10.1364/BOE.7.000312

Source DB:  PubMed          Journal:  Biomed Opt Express        ISSN: 2156-7085            Impact factor:   3.732


  37 in total

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  22 in total

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5.  Optoacoustic imaging at kilohertz volumetric frame rates.

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6.  Deep tissue photoacoustic computed tomography with a fast and compact laser system.

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Journal:  Biomed Opt Express       Date:  2016-12-08       Impact factor: 3.732

Review 7.  Practical review on photoacoustic computed tomography using curved ultrasound array transducer.

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8.  Synchronization of RF Data in Ultrasound Open Platforms (UOPs) for High-Accuracy and High-Resolution Photoacoustic Tomography Using the "Scissors" Programming Method.

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Review 9.  Advanced optoacoustic methods for multiscale imaging of in vivo dynamics.

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10.  Programmable Real-time Clinical Photoacoustic and Ultrasound Imaging System.

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Journal:  Sci Rep       Date:  2016-10-12       Impact factor: 4.379

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