Two-photon microscopy
- 网络双光子显微镜;双光子显微术;双光子显微镜法
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The authors used this feature in two-photon microscopy to track second-by-second pH changes in living cells .
作者根据这个特性,采用双光子显微镜可以一秒一秒地跟着活体细胞内pH值变化。
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Using two-photon microscopy , a state-of-the-art imaging system , the researchers found starvation-dependent changes of olfactory response in specific neurons .
采用先进的双光子显微镜成像系统,研究人员发现了一些特定神经元中对这种饥饿依赖的嗅觉响应改变。
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Image Processing on Two-photon Microscopy of Mouse Oral Mucosa Cell and Human Dermis Fiber
小鼠口腔上皮细胞与人体皮肤纤维的双光子显微图像处理
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Using standard test images and real images ( two-photon microscopy images on olfactory bulb of mouse ) for testing , the results have shown that the algorithms both have efficiency and practicality .
论文对所提出的三种改进算法均进行了仿真实验研究,使用标准测试图像和实际的小鼠嗅球双光子显微切片图像的实验结果都验证了算法的有效性和实用价值。
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Imaging Analysis of Two-photon Confocal Microscopy with Different Fluorescence Wavelength
不同荧光波长的双光子共焦成像分析
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Effect of Photobleaching on Fluorescence Correlation Spectroscopy in Two-photon Excitation Microscopy
双光子激发光漂白的荧光相关谱分析
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In this dissertation , the concept of the two-photon fluorescence microscopy is brought out based on the theory of fluorescence and fluorescence microscopy .
本文从一般的荧光和荧光显微镜理论出发,引出了双光子荧光显微镜的概念;
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The two-photon fluorescence microscopy has been used for three-dimensional imaging by detecting the fluorescence emitting from the specimen when absorbing two photons .
双光子荧光显微镜通过对样品在双光子激发后发出的荧光进行探测,实现样品的三维成像。
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So far , the two-photon fluorescence microscopy imaging technique havs become a molecular imaging technology with the highest temporal and spatial resolution , and its emergence and development greatly promoted the development of various fields of life sciences .
迄今为止,双光子共聚焦激光扫描荧光显微成像技术是活体分子成像领域中时间和空间分辨率最高的技术,它的出现和发展极大地促进了生命科学各个领域的发展。
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Image distortions of two-photon laser scanning microscopy induced by refractive - index mismatch of coverslips
双光子激光扫描显微镜中折射率失配引起的图象变形研究
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The principle of two-photon laser scanning fluorescence microscopy and its applications are reviewed .
文章对双光子激光扫描荧光显微镜的原理及其应用进行了综述。
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Two-photon laser scanning fluorescence microscopy and Its Applications
双光子激光扫描荧光显微镜及其应用
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With the developments of technologies based on two-photon , two-photon fluorescence microscopy is becoming an essential imaging system in the research on life science .
随着双光子技术的发展,双光子荧光显微镜在生命科学的研究中已经成为最重要的成像工具。
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Materials with two-photon absorption properties have potential application value in two-photon fluorescence microscopy and imaging , optical micro-machining , there-dimensional optical information storage .
具有双光子吸收性能的材料在双光子荧光显微和成像、光学微加工、三维光信息存储等方面具有潜在的应用价值。
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Chapter two analyzes the two-photon imaging characteristics theoretically and gets the point spread function of two-photon confocal microscopy .
第二章从基本原理出发,在理论上分析了双光子荧光显微镜的成像特点,推导了双光子荧光探测公式,并得到了双光子共焦显微镜的点扩散函数。
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These data suggest that the D-A-D compounds with contraposition methoxy groups show comparatively good two-photon absorption properties , and that TMOS is a promising candidate for applications such as two-photon microscopy and imaging for DNA in cells .
这些数据表明对位甲氧基的D-A-D型化合物具有较好的双光子吸收性能,TMOS是细胞中DNA双光子荧光显微与成像应用的良好候选材料。
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Two-photon excited fluorescence materials have potential applications in many important areas including optical power limiting , three-dimensional storage , two-photon dynamic therapy , up-converted lasing , and two-photon fluorescence microscopy .
双光子诱导荧光材料在三维信息存储、光动力学治疗、光学限幅、双光子上转换激光、双光子荧光显微技术等方面具有广阔的应用前景。