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  1. 221

    Peripapillary microperimetry and optical coherence tomography angiography in patients with optic disc edema by Ghada A. Nassar, Ayman G. ElNahry, Mohammad R. AbouelFotouh, Aliaa A. Farag

    Published 2025-04-01
    “…Patients and methods This cross–sectional comparative case series study included 55 eyes with optic disc edema. …”
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    Ultrasonographic assessment of optic nerve: does it help in lupus-induced optic neuropathy? by Amira Elsonbaty, Abdallah El-Sayed Allam, Doaa M Mahmoud, Sara Alattar, Ahmed Hosny Shaaban

    Published 2025-01-01
    “…We measured the optic nerve diameter (OND) and optic nerve sheath diameter (ONSD) and calculated the OND/ONSD ratio and side-to-side difference. …”
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  4. 224

    Generation of Flat Optical Frequency Comb Using Cascaded Electro-Optic Modulators by Wei Lin, Bowen Zhu, Keqi Cao, Hang Yu, Xinyan Zhang, Jia Chen, Yu Liu

    Published 2025-03-01
    “…We propose a straightforward method to improve the flatness of optical frequency combs. …”
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    Article
  5. 225

    Application of Optical Coherence Tomography Angiography in True and Pseudo-Optic Disc Swelling by Kaveh Abri Aghdam, Ali Aghajani, Amin Zand, Samira Chaibakhsh, Pasha Anvari, Fatemeh Zahra Ijadi, Khalil Ghasemi Falavarjani

    Published 2024-01-01
    “…Purpose. We evaluated the optic disc microvasculature in healthy subjects and patients with optic nerve head drusen (ONHD), active papilledema, and acute nonarteritic anterior ischemic optic neuropathy (NAION) using optical coherence tomography angiography (OCTA). …”
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    Impact of Brownian motion on the optical soliton solutions for the three component nonlinear Schrödinger equation by Muhammad Zafarullah Baber, Tahir Shahzad, Wael W. Mohammed, Nauman Ahmed, Baboucarr Ceesay, Muhammad Waqas Yasin

    Published 2025-07-01
    “…Abstract In this manuscript, the three-component nonlinear stochastic Schrö dinger equation under the effects of Brownian motion in the Stratonovich sense is examined here. The different types of exact optical soliton solutions are explored under the noise effects. …”
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  8. 228

    Efficient Frequency-Dependent Newmark-Beta-FDTD Method for Periodic Grating Calculation by Sheng-Bing Shi, Wei Shao, Tu-Lu Liang, Li-Ye Xiao, Xue-Song Yang, Haiyan Ou

    Published 2016-01-01
    “…In this paper, the Newmark-Beta algorithm is introduced into the finite-difference time-domain (FDTD) method in dispersion media, resulting in an unconditionally stable method for periodic metallic grating analysis. …”
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    Enhancing Image Reconstruction Method in High-Frequency Electric Field Visualization Systems Using a Polarized Light Image Sensor by Kiyotaka Sasagawa, Ryoma Okada, Maya Mizuno, Hironari Takehara, Makito Haruta, Hiroyuki Tashiro, Jun Ohta

    Published 2025-03-01
    “…This paper introduces an image processing method, used to achieve uniform sensitivity across the imaging plane in a high-frequency electric field imaging system, that employs an electro-optical crystal and a polarization image sensor. …”
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    Article
  15. 235

    Employing constant photocurrent method for the study of defects in silicon thin films by Hitendra K. Malik, Sucheta Juneja, Sushil Kumar

    Published 2019-03-01
    “…We have analyzed the optical absorption coefficient from UV spectroscopy and with the help of constant photocurrent method. …”
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  16. 236

    Evaluation of glaucomatous macular and optic nerve vascular damage by optical coherence tomography angiography by Ragai M Hatata, Heba M Nan, Mahmoud A Kamal, Hanan M Elghonemy, Reham H Taha

    Published 2024-04-01
    “…The patients underwent 3.0×3.0 mm optical coherence tomography angiography (OCTA) scans centered on the macula and 4.5×4.5 mm scans on the optic disc. …”
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  17. 237

    Determination of the Band Gap Energy of SnO<sub>2</sub> and ZnO Thin Films with Different Crystalline Qualities and Doping Levels by Cecilia Guillén

    Published 2025-02-01
    “…For the various applications, it is essential to accurately determine the band gap energy, as it controls the optical and electrical behavior of the material. However, there is no single method for its determination; rather, different approximations depend on the crystalline quality and the doping level because these modify the energy band structure of the semiconductor. …”
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