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In the scanning acoustic microscopy (SAM) imaging, it is essential to address the diminished lateral resolution in the out-of-focus region, as image quality correlates with the ultrasound propagation distance either above or below the focal plane. To focus the scanned image, a refocusing technique called synthetic aperture focusing technique (SAFT) is widely used, which improves the resolution by extending the depth of focus manually. In SAM, refocusing the image accurately is challenging without prior defocusing information. This paper introduces AutoSAFT, an automated version of SAFT. It employs the reference-less image-quality index (IQI) called Blind/Referenceless Image Spatial Quality Evaluator (BRISQUE) score to evaluate and optimise the defocusing distance automatically. The focused images were qualitatively analysed using metrics such as structural similarity index matrix (SSIM) and peak signal-to-noise ratio (PSNR). The combined qualitative and quantitative analysis demonstrates that the AutoSAFT technique is the most suitable method for the automatic focusing of acoustic imaging from the SAM. The proposed AutoSAFT opens a new avenue in photoacoustic image focusing methodologies.
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http://dx.doi.org/10.1111/jmi.13399 | DOI Listing |
Turk J Pharm Sci
September 2025
Gate Institute of Pharmaceutical Sciences, Telangana, India.
Objectives: Bortezomib (BTZ) functions as an androgen receptor signalling inhibitor, is used for the treatment of prostate cancer, and has been sanctioned by the United States Food and Drug Administration. The medicinal applications of BTZ are impeded by low solubility, first-pass metabolism, and restricted bioavailability. This study aimed to develop and enhance polylactic acid-co-glycolic acid (PLGA) nanobubbles (NBs) as a sustained-release mechanism for BTZ, thereby augmenting stability and bioavailability.
View Article and Find Full Text PDFMagn Reson Med
September 2025
A.I. Virtanen Institute, University of Eastern Finland, Kuopio, Finland.
Since its introduction more than 30 years ago, the blood oxygenation level-dependent (BOLD) contrast remains the most widely used method for functional MRI (fMRI) in humans and animal models. The BOLD contrast is typically acquired with echo planar imaging (EPI) to obtain sensitization of the signal during the echo time (TE) to dynamic changes in deoxyhemoglobin content, while achieving high spatiotemporal resolution and full brain coverage. However, EPI-based fMRI also faces multiple shortcomings, including sensitivity to body motion, susceptibility-related signal dropouts, interference with multimodal sensors, and loud acoustic noise.
View Article and Find Full Text PDFIEEE Trans Biomed Eng
September 2025
Diagnostic ultrasound has long filled a crucial niche in medical imaging thanks to its portability, affordability, and favorable safety profile. Now, multi-view hardware and deep-learning-based image reconstruction algorithms promise to extend this niche to increasingly sophisticated applications, such as volume rendering and long-term organ monitoring. However, progress on these fronts is impeded by the complexities of ultrasound electronics and by the scarcity of high-fidelity radiofrequency data.
View Article and Find Full Text PDFAquac Nutr
August 2025
East Coast Environmental Research Institute, Universiti Sultan Zainal Abidin, Gong Badak Campus 21300, Kuala Nerus, Terengganu Darul Iman, Malaysia.
Understanding how nanonutrients influence the growth and physiological processes of cultivable fish can boost fish production efficiency with less management, advancing aquaculture toward global food security. In this study, a 60-day feeding trial was conducted to determine the effects of a nanonutrient complex (NNC) on the growth performances and physiology of Asian catfish, . Nanoparticles (NPs; Zn, Cu, and Fe) were synthesized from their metallic salts using an established acoustic method and characterized via scanning electron microscopy.
View Article and Find Full Text PDFMagn Reson Med
September 2025
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, Ohio, USA.
Purpose: To improve single-shot spiral MR-Acoustic Radiation Force Imaging (MR-ARFI)'s robustness to dynamic phase errors and evaluate it in non-human primates (NHPs) with a low-f-number transducer.
Methods: A single-shot spiral MR-ARFI pulse sequence with 2 mm in-plane resolution and alternating displacement phase contrast was implemented to visualize the focus generated by a 128-element ultrasound transducer in the NHP brain. A model-based displacement map calculation was implemented to remove dynamic phase errors.