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October 3, 2025ACS Sensors3 citations

Isometrically Resolved Reflection-Mode In Vivo Photoacoustic Microscopy Enabled by an Integrated Ultrasonic-Optical Sensor

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FYFan YangYYYong YangWSWei Song

Key Points

  • Enhanced depth localization accuracy in volumetric imaging achieved with the integrated ultrasonic-optical sensor.
  • The sensor operates with a remarkable sensitivity of about 127 Pa and a bandwidth of 158 MHz, ensuring superior performance.
  • Utilizing a nearly common-path Michelson interferometer configuration, this approach enhances reflection-mode imaging capabilities.
  • The successful label-free visualization of zebrafish in vivo demonstrates the sensor's significant potential for advancing biomedical photoacoustic techniques.

Abstract

Photoacoustic microscopy often faces challenges in direct measurement of broadband photoacoustic waves due to the use of narrow-bandwidth and optical opaque ultrasonic transducers, which compromises the depth localization accuracy in photoacoustic volumetric imaging. To overcome these challenges, we propose an Integrated Ultrasonic-Optical Sensor (IUOS) that seamlessly integrates excitation laser transmission and ultrasonic detection within a single device. Employing a nearly common-path Michelson interferometer configuration, the IUOS transduces photoacoustic pressure transients into time-varying polarization states of the reflected beam, achieving an impressive sensitivity of approximately 127 Pa over a broad bandwidth of 158 MHz at −6 dB. Furthermore, the sensor allows nearly lossless transmission for the excitation laser at a wavelength of 532 nm. When integrated into an optical-resolution photoacoustic microscope (OR-PAM), it allows for reflection-mode volumetric imaging with enhanced axial resolution. Notably, the sensor has successfully achieved label-free volumetric visualization of zebrafish in vivo with greatly improved depth localization accuracy, highlighting its considerable potential to advance biomedical photoacoustic research.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/68e02f34f0e39f13e7fa235dhttps://doi.org/10.1021/acssensors.5c02680
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