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Cross-sectional Anatomy and Clinical Meanings of the Extraocular Muscles and Related Structures in Orbit
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作者 Jin-Ping LIU~1 Yun-Sheng LI~1 Kan-Xing ZHAO~(2Δ) Heng SHAO~1 Xue-Han QIAN~2 Jian-Sheng ZHI~11(Department of Anatomy, Tianjin Medical University, Tianjin 300070, China)2(Tianjin Eye Hospital, Tianjin 300040, China) 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2005年第S1期37-38,共2页
关键词 Cross-sectional Anatomy and Clinical Meanings of the Extraocular muscles and Related structures in Orbit
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Structural Changes and Rheological Properties of Dry Abalone Meat (Haliotis diversicolor) During the Process of Water Restoration 被引量:2
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作者 GAO Xin ZHANG Yaqi XU Jiachao SUN Yan ZHAO Qingxi CHANG Yaoguang 《Journal of Ocean University of China》 SCIE CAS 2007年第4期403-406,共4页
Changes in tissue structure, rheological property and water content of dry abalone meat in the process of water restora- tion were studied. The weight and volume of dry abalone meat increased with water restoration. W... Changes in tissue structure, rheological property and water content of dry abalone meat in the process of water restora- tion were studied. The weight and volume of dry abalone meat increased with water restoration. When observed under a light micro- scope, structural change in myofibrils was obvious and a distinct network was found. When water restoration time increased from 24 h to 72 h, the instantaneous modulus E0 and viscosity η1 increased, whereas the rupture strength and relaxation time (τ1) were re- duced. There were no significant changes of rheological parameters (E0, η1, τ1, rupture strength) from 72 h to 96 h of water restoration. Therefore, the dry abalone meat was swollen enough at the time of 72 h. The rheological parameters were obviously influenced by the structural changes. 展开更多
关键词 dry abalone water restoration muscle structure rheology MYOFIBRIL COLLAGEN
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Flat-top beam illumination for polarization-sensitive second-harmonic generation microscopy
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作者 Bing Wang Xiang Li +4 位作者 Wenhui Yu Binglin Shen Rui Hu Junle Qu Liwei Liu 《Chinese Optics Letters》 SCIE EI CAS CSCD 2024年第6期164-169,共6页
Wide-field second-harmonic generation (SHG) was used to obtain the second-harmonic signal from the entire image area for rapid imaging, despite the fact that conventional Gaussian beam illumination has low energy util... Wide-field second-harmonic generation (SHG) was used to obtain the second-harmonic signal from the entire image area for rapid imaging, despite the fact that conventional Gaussian beam illumination has low energy utilization efficiency,which makes it easy to overexpose the intensity of the image center area. However, flat-top beam illumination has uniform spatial distribution, thereby improving the photon excitation efficiency in the entire image region and reducing laser damage and thermal effect. By combining flat-top beam illumination and wide-field SHG polarization measurement, we can calculate more myosin fibril symmetrical axis orientations through polarization analysis of 16 images at a fast imaging speed while expanding the field of view. More importantly, the application of a flat-top beam can further improve the capability of polarization measurement in SHG microscopy. 展开更多
关键词 flat-top beam second-harmonic generation muscle structure
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