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http://dx.doi.org/10.1016/j.cireng.2023.03.005 | DOI Listing |
Ophthalmol Sci
November 2024
Department of Ophthalmology, University of Colorado Anschutz Medical Campus, Aurora, Colorado.
Objective: Detecting and measuring changes in longitudinal fundus imaging is key to monitoring disease progression in chronic ophthalmic diseases, such as glaucoma and macular degeneration. Clinicians assess changes in disease status by either independently reviewing or manually juxtaposing longitudinally acquired color fundus photos (CFPs). Distinguishing variations in image acquisition due to camera orientation, zoom, and exposure from true disease-related changes can be challenging.
View Article and Find Full Text PDFCan Rev Sociol
January 2025
John and Maggie Mitchell Art Gallery, MacEwan University, Edmonton, Canada.
Émile Durkheim (1912) argues that art is an essential part of religious life-it 'refreshes a spirit worn down by all that is overburdening in day-to-day labor' (385). For Durkheim, making art in religious contexts is akin to sacred play. We explore how contemporary Christian artists use play, frivolity and experimentation to intentionally, and more often unintentionally, challenge, or at least, reveal various social and theo-political dynamics within their religious communities.
View Article and Find Full Text PDFState-of-the-art laser frequency stabilization is limited by miniscule length changes caused by thermal noise. In this work, a cavity-length-insensitive frequency stabilization scheme is implemented using strong dispersion in a 21 mm long cavity with a europium-ion-doped spacer of yttrium orthosilicate. A number of limiting factors for slow light laser stabilization are evaluated, including the inhomogeneous and homogeneous linewidth of the ions, the deterioration of spectral windows, and the linewidth of the cavity modes.
View Article and Find Full Text PDFSingle-pixel imaging (SPI) using deep learning networks, e.g., convolutional neural networks (CNNs) and vision transformers (ViTs), has made significant progress.
View Article and Find Full Text PDFMicro ring resonators (MRR) based evanescent field biosensors have shown excellent potential in medical diagnostics due to their performance, scalability, and ability to integrate multiple sensors in a small area to detect various biomarkers simultaneously. The quest to improve the performance and feature size of such sensors has led to the development of cutting-edge photonic integrated circuits (PIC). However, chip-scale implementation of readout and data analysis still needs to be addressed adequately.
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