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在漫射光下测量叶片的光学性质。

Measurement of the optical properties of leaves under diffuse light.

机构信息

Department of Biology, St Mary's College of Maryland, St Mary's City, MD, USA.

出版信息

Photochem Photobiol. 2010 Sep-Oct;86(5):1076-83. doi: 10.1111/j.1751-1097.2010.00761.x.

Abstract

Measuring leaf light absorptance is central to many areas of plant biology including photosynthesis and energy balance. Absorptance is calculated from measured values of transmittance and reflectance, and most such measurements have used direct beam light. However, photosynthesis and other processes can differ under direct and diffuse light. Optical properties under diffuse light may be different, but there have been technical difficulties involved in measuring total reflectance of diffuse light. We developed instrumentation to measure this reflectance using a chopped measuring beam delivered alternately to sample and reference integrating spheres, and lock-in detection. We also built instrumentation for measuring transmittance of diffuse light. We developed standards to calibrate our instruments and correct for substitution error, a known systematic error with integrating sphere-based measurements. Helianthus annuus leaves measured under diffuse light reflected 5-10% more and transmitted a few percent less 400-700 nm light than under direct light. Overall absorptance was only a few percent higher under direct light, but leaves may utilize absorbed direct and diffuse light differently. For example, of the light entering the leaf, significantly more direct light than diffuse light is transmitted through the leaf, suggesting differences in localization of absorption within the leaf.

摘要

测量叶片的光吸收率是植物生物学许多领域的核心内容,包括光合作用和能量平衡。吸收率是通过测量透射率和反射率来计算的,大多数此类测量都使用直射光束。然而,光合作用和其他过程在直射光和散射光下可能会有所不同。散射光下的光学特性可能不同,但测量散射光的总反射率存在技术困难。我们开发了一种仪器,使用交替传输到样品和参考积分球的斩波测量光束和锁定检测来测量这种反射率。我们还为测量散射光的透射率开发了仪器。我们开发了标准来校准我们的仪器,并纠正积分球测量中已知的系统误差——替代误差。在散射光下测量的向日葵叶片反射的光比直射光多 5-10%,在 400-700nm 光下的透射光少几个百分点。直射光下的总吸收率仅高出几个百分点,但叶片可能会以不同的方式利用吸收的直射光和散射光。例如,进入叶片的光中,直射光比散射光多得多穿过叶片,这表明吸收在叶片内的定位存在差异。

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