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Microthermometry of laser-heated Chinese hamster ovary cells and sperm cells

机译:激光加热的中国仓鼠卵巢细胞和精子细胞的显微温度计

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Abstract: Microthermometric measurements on optically-trapped Chinese Hamster Ovary (CHO) cells and sperms cells re reported, using a noninvasive microfluorometric detection technique. Within an optical tweezer system that has been outfitted with a spectral fluorescence excitation and detection capability, the changes in temperature induced by the process of sample confinement by a focused laser beam has been quantified over micron-sized spatial regions of both motile and immotile cells. Our measurement technique is based on the use of environmentally sensitive fluorophores that can be incorporated into the cell membrane and used to sense local changes in temperature when the cell membrane is perturbed optically or via other environmental stress factors. Using a cw 1.064 $mu@m Nd:YAG laser for trapping CHO and human sperm cells, a temperature increase of $APEQ 1$DGR@C per 100 mW laser power was observed. At this infrared wavelength, cellular heating as result of laser confinement appears to be mainly due to radiation absorption by water.!17
机译:摘要:报道了使用无创微荧光检测技术对光学捕获的中国仓鼠卵巢(CHO)细胞和精子细胞进行微温测量的报道。在配备有光谱荧光激发和检测功能的光学镊子系统中,由聚焦激光束限制样品的过程所引起的温度变化已在活动细胞和活动细胞的微米大小的空间区域中进行了量化。我们的测量技术基于对环境敏感的荧光团的使用,该荧光团可以掺入细胞膜中,并在光学或其他环境压力因素引起细胞膜受到扰动时用于检测温度的局部变化。使用cw 1.064 µm @ m Nd:YAG激光捕获CHO和人类精子细胞,观察到每100 mW激光功率使温度升高$ APEQ 1 $ DGR @ C。在此红外波长下,由于激光束缚而导致的蜂窝状加热似乎主要是由于水吸收了辐射!17

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