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1)  Fluorescence photon transport
荧光传输时间
2)  transmission time
传输时间
1.
Measuring method and system for sonar signal transmission time;
声呐信号传输时间测量方法与系统
2.
Analysis in effects to high frequency protection command transmission time in carrier wave channel;
浅析高频保护命令载波通道传输时间的影响
3.
This paper introduces the parameter testing methods of protection channel,including transmission time,time broadening and removing locked signal etc.
文章简要介绍了有关保护通道的几种重要参数的测试方法,这些测试包括对传输时间、展宽时间、解除闭锁信号的测试等,简单介绍了测试电路的原理。
3)  travel time
传输时间
1.
A Scheduling Problem with Travel Time Between Machines;
考虑工件传输时间的一类排序问题
2.
The flowshop scheduling problem with travel time between machines is very practical and useful in the Robotics and FMS.
考虑传输时间的同顺序排序问题是在机器人设计及柔性制造系统中有着广泛应用的一类排序问题。
4)  time transfer
时间传输
1.
The micro-wave time transfer system between Lintong and Pucheng has been used to synchronize the time signal from the time-keeping clock room(located in Lintong)and the signal from the broadcast control clock room(located in Pucheng)for over 28 years till the end of 2006.
中国科学院国家授时中心的临潼--蒲城微波时间传输系统承担着守时基准钟房(临潼)与发播控制钟房(蒲城)之间的时间同步比对任务。
2.
This paper developed a new approach to improve GPS carrier phase measurement, for the purpose to reduce the ambiguity integer value or use it in time transfer technology.
并用这种理论应用在载波相位测量的改进上,以降低模糊度确定的复杂性,或用于时间传输技术。
5)  fluorescence transport model
荧光传输模型
1.
To investigate the effect of different probing depths during cardiac optical mapping,the electrical transmural propagation model,and the fluorescence transport model were adopted to simulate the distribution of transmembrane potentials during the transmural propagation and the fluorescence signals coming form three different optical probing depths.
为了估计心脏光学标测过程中不同探测深度对光标测结果的影响,利用电兴奋跨壁传导模型和荧光传输模型,模拟了心室电兴奋跨壁传播时跨膜电位的分布和不同光探测深度的荧光信号,并将深度权重的荧光信号与组织表层细胞的荧光信号做了比较,并分析了产生差异的原因。
6)  time resolved fluorescence fiber optic biosensor
时间分辨荧光光纤生物传感器
补充资料:时间分辨免疫荧光光谱法
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CAS号:

性质:时间分辨技术与荧光免疫技术相结合的一种分析方法。利用标记抗原或抗体的荧光探针的荧光寿命长于样品背景荧光寿命,采用快速脉冲光源激发样品,用门控检测系统检测背景消失后的荧光信号。由此可显著降低背景荧光的干扰,大大提高测量灵敏度。参见荧光免疫分析法和时间分辨荧光光谱法。

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