Showing 261 - 280 results of 343 for search '((farr OR ((faery OR faery) OR barry)) OR (pair OR air)) 40', query time: 0.13s Refine Results
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    Biometric contrastive learning for data-efficient deep learning from electrocardiographic images by Sangha, V, Khunte, A, Holste, G, Mortazavi, BJ, Wang, Z, Oikonomou, EK, Khera, R

    Published 2024
    “…</p> <p><strong>Materials and Methods:&nbsp;</strong>Using pairs of ECGs from 78 288 individuals from Yale (2000-2015), we trained a convolutional neural network to identify temporally separated ECG pairs that varied in layouts from the same patient. …”
    Conference item
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    Pnictogen-halide semiconductors for photovoltaics by Liu, P

    Published 2025
    “…This research focuses on caesium antimony-bismuth halides (vacancy-ordered triple perovskites) and silver bismuth halides, both of which have high theoretical optical limits in efficiency (&gt;40%) under 1000 lux white light emitting diode (WLED) illumination, and which are free from elements that are restricted for use in consumer electronics.…”
    Thesis
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    Compact wideband wide-angle van atta retroreflector with suppressed structural mode by Yan, Libin, Shen, Zhongxiang

    Published 2022
    “…The proposed Van Atta retroreflector is composed of eight radiating elements interconnected in pairs with a planar feeding network of microstrip lines. …”
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    Journal Article
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    Comparison of a simplified skin pointer device compared with a skeletal marker for knee rotation laxity : a cadaveric study using a rotation-meter by Puah, Ken Lee, Yew, Andy Khye Soon, Chou, Siaw Meng, Lie, Denny Tijauw Tjoen

    Published 2019
    “…Rotational forces of 3, 6 and 9 nm applied at 0°, 30°, 45°, 60° and 90° of knee flexion were analysed using the Pearson correlation coefficient and paired t-test. RESULTS : Total rotation recorded with the skin pointer significantly correlated with the bone marker at 3 nm at 0° (skin pointer 23.9 ± 26.0° vs bone marker 16.3 ± 17.3°, r = 0.92; P = 0.0), 30° (41.7 ± 15.5° vs 33.1 ± 14.7°, r = 0.63; P = 0.037), 45° (49.0 ± 17.0° vs 40.3 ± 11.2°, r = 0.81; P = 0.002), 60° (45.7 ± 17.5° vs 34.7 ± 9.5°, r = 0.86; P = 0.001) and 90° (29.2 ± 10.9° vs 21.2 ± 6.8°, r = 0.69; P = 0.019) of knee flexion and 6 nm at 0° (51.1 ± 37.7° vs 38.6 ± 30.1°, r = 0.90; P = 0.0), 30° (64.6 ± 21.6° vs 54.3 ± 15.1°, r = 0.73; P = 0.011), 45° (67.7 ± 20.6° vs 55.5 ± 9.5°, r = 0.65; P = 0.029), 60° (62.9 ± 22.4° vs 45.8 ± 13.1°, r = 0.65; P = 0.031) and 90° (43.6 ± 17.6° vs 31.0 ± 6.3°, r = 0.62; P = 0.043) of knee flexion and at 9 nm at 0° (69.7 ± 40.0° vs 55.6 ± 30.6°, r = 0.86; P = 0.001) and 60° (74.5 ± 27.6° vs 57.1 ± 11.5°, r = 0.77; P = 0.006). …”
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    Journal Article
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