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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >A photoacoustic spectrometer for measuring heat dissipation and oxygen quantum yield at the microscopic level within leaf tissues
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A photoacoustic spectrometer for measuring heat dissipation and oxygen quantum yield at the microscopic level within leaf tissues

机译:一种用于测量叶片组织内微观水平的散热和氧量子产率的光声光谱仪

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摘要

A photoacoustic instrument has been developed to measure photothermal signals and oxygen evolution at the microscopic level within leaves and leaf cross sections. The device utilizes lines of light, obtained from laser diodes, that are focussed on the sample and permit measurements with a spatial resolution of 40 #mu#m. In cross sections of spinach leaves (700 #mu#m thick) the profile for the photothermal signals is bell shaped and coincides closely with the chlorophyll content of the tissues. By contrast, the profile for oxygen evolution is relatively flat, suggesting uniform capacity for oxygen evolution in the mesophyll. Maximum values for relative quantum yield for oxygen evolution are found in palisade tissues near the adaxial leaf surface. The photoacoustic device shows that it is possible to collect thermal and oxygen signals from microscopic leaf samples and opens a new avenue for studies of leaf structure-function.
机译:已经开发出一种光声仪器以在叶片和叶片横截面的微观水平上测量光热信号和氧气的释放。该设备利用从激光二极管获得的光线聚焦在样品上,并允许以40#mu#m的空间分辨率进行测量。在菠菜叶的横截面(厚700#μm)中,光热信号的轮廓呈钟形,并与组织中的叶绿素含量紧密一致。相反,氧气逸出的轮廓相对平坦,表明叶肉中氧气逸出的能力均匀。在近轴叶表面附近的栅栏组织中发现了氧气释放的相对量子产率的最大值。该光声装置表明可以从微观叶片样品中收集热和氧气信号,并为研究叶片结构功能开辟了一条新途径。

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