简体中文

Probe organization of photoacoustic devices using low-cost laser diodes

822
2024-03-06 14:13:44
查看翻译

Photoacoustic technology provides a non-invasive method for detecting biological tissues, but its clinical application is limited, partly due to the large volume and high cost of laser sources. A compact PA sensing instrument powered by laser diodes for biomedical tissue diagnosis can provide clinical doctors with a practical and effective tool for evaluating breast diseases.

By providing a cost-effective organizational diagnostic approach, compact PA sensing instruments can bridge the gap between PA research and its practical applications. This instrument is the work of a research group at the Indian Institute of Technology Indore.

Researchers integrated multiple laser diodes for PA excitation in a compact housing and developed a pulse current supply unit that can induce the laser diode to generate 25 ns of current pulses at a frequency of 20 kHz. They characterize the optical semiconductor laser tube casing and power supply unit based on pulse width, laser intensity, and repeatability of multiple laser diodes.

In order to improve signal strength, the team concentrated the laser diodes in the casing at one point. This enhances the amplitude of the PA signal and improves the signal-to-noise ratio. The amplitude of the time-domain PA signal indicates that as the number of laser diodes increases, the light energy increases.

Researchers compared laser diode based PA systems with traditional Nd: YAG laser based PA systems and found that these systems exhibited similar PA responses. The amplitude of the acoustic spectrum indicates that the new PA sensing instrument is effective for traditional PA settings.
The team used a compact PA sensing system to study fibrocystic changes in the breast in vitro. Researchers analyzed the spectrum of PA signals to quantitatively evaluate tissue characteristics.

The system distinguishes tissue types based on quantitative spectral parameters. The PA spectral response reveals different spectral patterns corresponding to different tissue types. Compared with normal breast tissue, fibrocystic breast disease tissue exhibits higher dominant frequency peaks and energy.

Fibrocystic breast disease samples exhibit dominant frequency peaks around 1.60 MHz, indicating an increase in tissue density due to increased glandular and stromal elements. In contrast, normal breast tissue shows a lower peak frequency of 0.26 MHz, reflecting its fiber and fat composition. The histopathological examination confirmed these findings and confirmed the correlation between spectral response and tissue characteristics. Researchers also used the system to associate PA spectral parameters with the elastic properties of fibrocystic breast disease tissue compared to normal breast parenchymal tissue samples.

Ultrasound and mammography are currently the most common diagnostic methods for breast diseases, followed by fine needle aspiration cytology. Due to the accuracy issues of these imaging methods, an alternative screening technique is needed to enable clinical doctors to have a deeper understanding of disease diagnosis than traditional methods.

The experimental results indicate that PA sensing instruments can provide a fast, reliable, and non-invasive method to evaluate tissue density and identify pathological changes in breast tissue, thereby enabling more timely intervention and improving results.

The use of advanced signal processing technology and high-frequency transducers can enhance the real-time and in vivo research capabilities of the system, thereby expanding its clinical practicality. In the future, laser diodes of different wavelengths can be merged into the same optical shell to study biological tissues of various wavelengths.
The study was published in the Journal of Biomedical Optics.

Source: Laser Net



相关推荐
  • Shanghai Optics and Machinery Institute has made new progress in evaluating the anti laser damage performance of thin film optical components using different laser damage testing protocols

    Recently, the research team of the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made new progress in evaluating the laser damage resistance and damage mechanism of 532nm thin film polarizers using different laser damage test protocols. The related achievements were published in Optical Materi...

    2024-04-25
    查看翻译
  • The company has made key breakthroughs in the development of laser micromachining systems

    3D-Micromac AG, a provider of laser micromachining systems, has announced new advances in laser micromachining solutions for magnetic sensors, micro-leds, manufactured power devices and advanced packaging of semiconductors.Since the first working laser came out more than 60 years ago, lasers have been widely used in the industrial market. Uwe Wagner, CEO of 3D-Mircomac, said: "In the semic...

    2023-08-04
    查看翻译
  • Innovative nanoparticle analysis: achieving breakthrough 3D imaging using X-ray lasers

    The latest progress in X-ray laser technology has opened up a new era of nanoscale exploration, bringing unprecedented opportunities for materials science and nanotechnology. Researchers have developed a novel imaging technique that can directly visualize separated nanosamples in free flight, capturing their complex structures with stunning details. This breakthrough method relies on single cohere...

    2024-03-05
    查看翻译
  • Lumentum revenue growth due to increased demand for artificial intelligence

    Photonic component manufacturer Lumentum says that its sales revenues will exceed half a billion dollars in the current quarter - and surpass $600 million this time next year, as demand from artificial intelligence (AI) data centers continues to accelerate. CEO Michael Hurlston announced a sales figure of just under $481 million for the quarter that ended June 28, up 56 per cent year-on-year and...

    08-15
    查看翻译
  • Technology Frontiers | What is the Next Generation Laser?

    Since the 1960s, lasers have brought revolutionary changes to the world and have now become an indispensable tool in modern applications, from cutting-edge surgical procedures and precision manufacturing to fiber optic data transmission. However, with the increasing demand for laser applications, challenges have also arisen. For example, the market for fiber lasers is constantly expanding, mainly ...

    2024-06-21
    查看翻译