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Fractal analysis of retinal vasculature in normal subjects on ultra-wide field fluorescein angiography 被引量:3
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作者 Wen-Ying Fan Alan Fleming +6 位作者 Gavin Robertson Akihito Uji Jano van Hemert michael Singer Min Sagong michael ip SriniVas R.Sadda 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2020年第7期1109-1114,共6页
AIM: To evaluate the fractal feature of the retinal vasculature of normal eyes on a stereographic projected and montaged ultra-wide field(UWF) fluorescein angiography(FA).METHODS: Prospective, observational, cross-sec... AIM: To evaluate the fractal feature of the retinal vasculature of normal eyes on a stereographic projected and montaged ultra-wide field(UWF) fluorescein angiography(FA).METHODS: Prospective, observational, cross-sectional study. Totally 59 eyes of 31 normal subjects were imaged using the Optos 200 Tx. Images obtained at different gaze angles stereographically projected and montaged. The early-phase UWF FA frames were processed to segment the retinal vasculature and the results were exported as binary masks. The fractal dimension(FD) was calculated using the box-counting method.RESULTS: The global FD for the entire retina was 1.6±0.04, with no difference between males and females(1.59±0.04 vs 1.61±0.04, P=0.084) or between right and left eyes(1.6±0.04 vs 1.6±0.05, P=0.61). FD was nonuniformly distributed among four quadrants(P<0.001) and decreased as the distance from the fovea increased(P<0.001). A negative association was observed between FD and age(R=-0.37, P=0.006), and this relationship was observed in the posterior and mid-peripheral retina(P<0.05) but absent in far-periphery(P>0.05).CONCLUSION: Fractal geometry is non-uniformly distributed across the retina in normal eyes and decreases from the fovea to the far-periphery. Subjects with an older age tend to have a smaller FD, however, the FD in the farperiphery does not appear to be influenced by age. 展开更多
关键词 fractal analysis RETINA ultra-wide field fluorescein angiography normal subject
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通过接触突触而激活的NMDAR通路是促进乳腺癌脑部转移的重要机制
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作者 邵晨(编译) Zeng Q +1 位作者 michael ip Zhang P 《国际老年医学杂志》 2020年第4期233-233,共1页
乳腺癌脑转移(B2BM)是女性最常见的肿瘤转移类型,虽然有很多机制探究了促进B2BM的关键分子,但是关于肿瘤细胞和神经元之间的关联在其中的作用甚为欠缺。本文报道了B2BM肿瘤细胞能够代替胶质细胞,与前后突触形成一个假的突触三元复合体(p... 乳腺癌脑转移(B2BM)是女性最常见的肿瘤转移类型,虽然有很多机制探究了促进B2BM的关键分子,但是关于肿瘤细胞和神经元之间的关联在其中的作用甚为欠缺。本文报道了B2BM肿瘤细胞能够代替胶质细胞,与前后突触形成一个假的突触三元复合体(pseudo-tripartite synapses),从而利用神经元的谷氨酸依赖GluN2B-NMDAR信号通路支持自身的肿瘤微环境促进生长,进而推动B2BM发展的重要机制。 展开更多
关键词 肿瘤微环境 肿瘤转移 胶质细胞 NMDAR 神经元 突触 乳腺癌 肿瘤细胞
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