5 Papers
15 Citations
Ju Liu is an academic researcher from Capital Medical University. The author has contributed to research in topics: Visual acuity & Metamorphopsia. The author has an hindex of 4, co-authored 4 publications.
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Papers
Assessment of macular function in patients with idiopathic Epiretinal membrane by multifocal Electroretinography: correlation with visual acuity and optical coherence tomography.
TL;DR: The mfERG abnormalities show macular function changes and correlate with visual acuity and central macular thickness in eyes with ERM, and P1 wave changes may be a sensitive functional measurement for ERM patients.
Pathophysiological correlations between fundus fluorescein angiography and optical coherence tomography results in patients with idiopathic epiretinal membranes
TL;DR: It is demonstrated that FFA may effectively identify the degree of changes in retinal macular vasculature, and suggest a potential application of FFA in the pre- and post-surgical evaluation of patients with ERMs.
Retinal-image quality and contrast sensitivity function in eyes with epiretinal membrane: a cross-sectional observational clinical study
TL;DR: Retinal-image quality measured by OQAS based on double-pass technique could be useful for assessing the retinal- image quality for ERM-affected eyes, in which retinal scattering was significantly increased.
Vision-related quality of life after pars plana vitrectomy with or without combined cataract surgery for idiopathic macular hole patients
TL;DR: Visual function and VR-QOL were significantly improved after successful macular hole surgery, and PPV combined with cataract surgery can help macular holes patients to maintain stable VR- QOL improvement by degrees.
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The prelimbic cortex regulates itch processing by controlling attentional bias
Guang-yan Wu,Xiao-Xia Zheng,Shanyao Zhao,Yi Wang,Yi-Song Wang,Yi-Lun Yi,Juan Yao,Huiqing Wen,Ju Liu,Hong-Li Li,Jian-feng Sui +10 more
TL;DR: This paper found that the prelimbic cortex (PrL) is associated with itch processing and that the manipulation of itch-responsive neurons in the PrL significantly disrupted itch-induced scratching.
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