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Recent Development of Technology and Application of Photoacoustic Molecular Imaging Toward Clinical Translation.

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TLDR
In this review, the current state of the art and applications of photoacoustic molecular probes will be critically reviewed, as well as some spearheading translational efforts that have taken place over the past 5 years.
Abstract
The deep imaging capability and optical absorption contrast offered by photoacoustic imaging promote the use of this technology in clinical applications. By exploiting the optical absorption properties of endogenous chromophores such as hemoglobin and lipid, molecular information at a depth of a few centimeters can be unveiled. This information shows promise to reveal lesions indicating early stage of various human diseases, such as cancer and atherosclerosis. In addition, the use of exogenous contrast agents can further extend the capability of photoacoustic imaging in clinical diagnosis and treatment. In this review, the current state of the art and applications of photoacoustic molecular probes will be critically reviewed, as well as some spearheading translational efforts that have taken place over the past 5 years. Some of the most critical barriers to clinical translation of this novel technology will be discussed, and some thoughts will be given on future endeavors and pathways.

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Journal ArticleDOI

Photoacoustic clinical imaging

TL;DR: The various clinical and pre-clinical literature is surveyed and the potential applications and hurdles that still need to be overcome are discussed.
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Biomarker-activatable probes based on smart AIEgens for fluorescence and optoacoustic imaging

TL;DR: In this paper , the authors summarize the latest development and progress as well as biomedical applications of the biomarker-activatable probes based on smart AIEgens and highlight the prospects and challenges in fluorescent and optoacoustic imaging.
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Video-Rate Ring-Array Ultrasound and Photoacoustic Tomography

TL;DR: This work presents a video-rate (20 Hz) dual-modality ultrasound and photoacoustic tomographic platform that has a high resolution, rich contrasts, deep penetration, and wide field of view, and GPU-based image reconstruction is developed to advance computational speed.
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Novel small molecular dye-loaded lipid nanoparticles with efficient near-infrared-II absorption for photoacoustic imaging and photothermal therapy of hepatocellular carcinoma.

TL;DR: The proposed NIR-II PA and PTT nanoparticles based on the IR-1061 dye would potentially provide novel insights into understanding polymethine dyes in nanomedicine and would greatly benefit early diagnosis and treatment of HCC patients.
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TL;DR: The impacts of tobacco, obesity, and infections are just part of a broad spectrum of other agents and risk factors that contribute to cancer development and that, together, influence the striking geographical heterogeneity in incidence rates.
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Applications of photoacoustic sensing techniques

TL;DR: In this article, the theory and applications of photo-acoustic (also called optoacoustic) methods belonging to the more general area of photothermal measurement techniques are reviewed, covering excitation of gaseous or condensed samples with modulated continuous light beams or pulsed light beams.
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Contrast agents for molecular photoacoustic imaging

TL;DR: The physical, chemical and biochemical characteristics of the existing photoacoustic contrast agents are critically reviewed, highlighting key applications and present challenges for molecular PAI.
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Arthritis of the finger joints: a comprehensive approach comparing conventional radiography, scintigraphy, ultrasound, and contrast-enhanced magnetic resonance imaging.

TL;DR: MRI and ultrasound are valuable diagnostic methods in patients with arthritis who have normal findings on radiologic evaluation and found ultrasound to be even more sensitive than MRI in the detection of synovitis.
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