1. Ling Wang

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    1. Mentioned In 15 Articles

    2. Distribution of scleral thickness and associated factors in 810 Chinese children and adolescents: a swept‐source optical coherence tomography study

      Distribution of scleral thickness and associated factors in 810 Chinese children and adolescents: a swept‐source optical coherence tomography study
      Purpose To explore the subfoveal thickness of sclera (SST), choroid (SCT) and retina (SRT) as well as their relationship in healthy Chinese children with varying levels of refractive error. Methods A total of 810 healthy Chinese schoolchildren and adolescents underwent a series of comprehensive ocular examinations, as well as swept‐source optical coherence tomography (OCT) after induced cycloplegia. The thicknesses of the sclera, choroid and retina below the central fovea ...
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    3. Quantitative angle-insensitive flow measurement using relative standard deviation OCT

      Quantitative angle-insensitive flow measurement using relative standard deviation OCT
      Incorporating different data processing methods, optical coherence tomography (OCT) has the ability for high-resolution angiography and quantitative flow velocity measurements. However, OCT angiography cannot provide quantitative information of flow velocities, and the velocity measurement based on Doppler OCT requires the determination of Doppler angles, which is a challenge in a complex vascular network. In this study, we report on a relative standard deviation OCT (RSD-OCT) method which provides both vascular ...
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    4. Graphics processing unit-based dispersion encoded full-range frequency-domain optical coherence tomography

      Graphics processing unit-based dispersion encoded full-range frequency-domain optical coherence tomography
      Dispersion encoded full-range (DEFR) frequency-domain optical coherence tomography (FD-OCT) and its enhanced version, fast DEFR, utilize dispersion mismatch between sample and reference arm to eliminate the ambiguity in OCT signals caused by non-complex valued spectral measurement, thereby numerically doubling the usable information content. By iteratively suppressing asymmetrically dispersed complex conjugate artifacts of OCT-signal pulses the complex valued signal can be recovered without additional measurements, thus doubling the spatial signal range ...
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    5. Graphics processing unit based dispersion encoded full-range frequency domain OCT

      Graphics processing unit based dispersion encoded full-range frequency domain OCT
      Standard FD-OCT systems suffer from a limited useful depth range due to the inherent complex conjugate artifacts and continuous fall-off in sensitivity with distance from the zero delay. The techniques of dispersion encoded full range (DEFR) frequency-domain optical coherence tomography (FD-OCT) and its enhanced version fast DEFR use the dispersion mismatch between sample and reference arm to double the imaging depth range by iteratively suppressing complex conjugate artifacts. Previously the ...
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    6. Heritability of ocular component dimensions in mice phenotyped using depth-enhanced swept source optical coherence tomography

      Heritability of ocular component dimensions in mice phenotyped using depth-enhanced swept source optical coherence tomography
      ...ing may be available for this article. To view references and further reading you must purchase this article. Ling Wang^1, Boris Považay^2^, ^1, Yen Po Chen^1^, ^3, Bernd Hofer^2^, ^1, Wolfgang Drexler^2^, ^1 and Jeremy ...
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    7. High-speed spectral-domain optical coherence tomography at 830nm wavelength

      We present a high-speed spectral domain optical coherence tomography (SD-OCT) system at 830 nm wavelength which is consisted of a fiber based Michelson interferometer and a custom-built spectrometer. The designed resolution of the spectrometer is about 67.4pm which limits the maximum detection depth 2.56mm in air. And the 35us exposure time of the high speed line scan CCD makes real-time imaging possible. Furthermore, a novel method of spectrometer ...
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    8. 1-15 of 15
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  2. About Ling Wang

    Ling Wang

    Ling Wang is at the School of Optometry and Vision Sciences at Cardiff University in the United Kingdom.  Ling Wang obtained his B.S. and Ph.D degree in optical engineering from Zhejiang University, China in 2000 and 2005, respectively