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ÏÔ΢ӫ¹â¹âÆ×,Micro-photoluminescence spectraÓ¢Óï¶Ì¾ä,Àý¾ä´óÈ«

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ÏÔ΢ӫ¹â¹âÆ×,Micro-photoluminescence spectraÓ¢Óï¶Ì¾ä,Àý¾ä´óÈ«

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1)Micro-photoluminescence spectraÏÔ΢ӫ¹â¹âÆ×

2)micro-photoluminescence spectrumÏÔ΢ӫ¹âÆ×

3)microspectrofluorimeterÏÔ΢ӫ¹â¹âÆ×ÒÇ

4)fluorescence microscopyÓ«¹âÏÔ΢

1.Monochromator is a very important part in living cell fluorescence microscopy system.µ¥É«¼¤·¢¹âÔ´Êǵ¥Ï¸°ûÓ«¹âÏÔ΢ϵͳÖеÄÖØÒª×é³É²¿·Ö¡£

Ó¢ÎĶ̾ä/Àý¾ä

1.any of various fluorescent substances used in fluorescence microscopy to stain specimens.ÓÃÓÚÓ«¹âÏÔ΢ÊõÖиø±ê±¾È¾ÉÏÓ«¹âµÄÓ«¹âÎïÖÊ¡£

2.The Microscopic Analysis of Spontaneous Fluorescence in the Tea Leaves Suffering from the Fluorescent Green Spot Disease;²èÊ÷Ó«¹âÐÔÂÌ°ß²¡Ò¶µÄ×Ô·¢Ó«¹âÏÔ΢·ÖÎö

3.Fluorescence microscopy A form of microscopy in which fluorescent probes are added to the material being investigated.Ó«¹âÏÔ΢Êõ£ºÓÃÀ´¹Û²ìÑо¿²åÈëÓ«¹â̽ÕëºóµÄÎïÌåµÄÒ»ÖÖÏÔ΢¼¼Êõ¡£

4.a method of using fluorescence microscopy to detect the presence of an antigen indirectly.ÓÃÓ«¹âÏÔ΢¾µ¼ä½ÓµØ¼ì²â¿¹ÔµÄ·½·¨¡£

5.Design of the Fluorescent Microscopy Software to Measure [Ca¡«(2£«)]i in Living Cells;°ûÄÚ¸ÆÀë×ÓÓ«¹âÏÔ΢¼ì²âÈí¼þµÄÑÐÖÆ

6.A Design of the Fluorescent Microscopy System to Measure [Ca¡«(2£«)]_i in Living Cell;°ûÄÚ¸ÆÀë×ÓÓ«¹âÏÔ΢¼ì²âϵͳµÄÑÐÖÆ

7.A comparison of methods in observation Bursaphelenchus xylophilus by fluorescent microscopeËɲÄÏß³æÓ«¹âÏÔ΢¹Û²ì·½·¨±È½ÏÑо¿

8.Comparison of Lumin~(TM) LED fluorescent attachment,fluorescent microscopy and Ziehl-Neeisen for AFB diagnosisLumin~(TM)¹â¶þ¼«¹ÜÓ«¹â×°Öá¢Ó«¹âÏÔ΢¾µ¡¢ÝÂ-Äá·¨Õï¶Ï¿¹Ëá¸Ë¾úµÄ±È½Ï

9.The Design and Application of Fluorescent Microscopy Monochromator System;Ó«¹âÏÔ΢¾µµ¥É«¹âԴϵͳµÄÉè¼Æ¼°Ó¦ÓÃ

10.Research on the Random Access Two-photon Fluorescence Microscope;Ëæ»úɨÃèË«¹â×ÓÓ«¹âÏÔ΢³ÉÏñϵͳÑо¿

11.At 1 month-, 3 month- and 6 month-time point post operation, fluorescence microscopy was used to determine the fluorescence.Êõºó1,3,6¸öÔÂÈ¡²Ä,Ó«¹âÏÔ΢¾µ¹Û²ìËèºË×éÖ¯ÄÚÂÌÉ«Ó«¹âÇ¿¶È;

12.The spirals are not readily seen unless immunofluorescent stain or dark field illumination is employed.ÂÝÐýÌå²»Ò×¹Û²ì³ý·ÇÔÚÓ«¹âÏÔ΢¾µ»ò°µÊÓÒ°ÏÔ΢¾µ¹Û²ì¡£

13.Fabricate Enzymatic Micropatterns by SECM and Detect Rat IgG Molecules by Total Internal Reflection Fluorescence Microscopy;ɨÃèµç»¯Ñ§ÏÔ΢Êõ¹¹½¨Ã¸Í¼Ðμ°È«ÄÚ·´ÉäÓ«¹âÏÔ΢Êõ¼ì²âÊóIgG

14.Fluorescence Microscopic Diagnosis of Chinese Jujube Tree Infected with PhytoplasmaÓ«¹âÏÔ΢¼¼ÊõÔÚÔæ·è²¡²¡Ô¼ø¶¨ÖеÄÓ¦ÓÃ

15.Study of Intracellular Transport and Exocytosis of Vesicles Using Fluorescence Microscopy;ÒÔÓ«¹âÏÔ΢¼¼ÊõÑо¿Ï¸°ûÄÚÄÒÅÝתÔ˺ͰûÍÂ

16.flow microfluorometer analysisÁ÷¶¯ÏÔ΢ӫ¹â²â¶¨·ÖÎö

17.recording screen¼Ç¼ӫ¹âÆÁ -µç×ÓÏÔ΢¾µµÄ

18.Development of blood fingerprint and sweat fingerprint by microcrystalline fluorescent emulsion;΢¾§Ó«¹âÈé×ÇÒºÏÔÏÖѪ¡¢º¹Ö¸ÎƵÄÑо¿

Ïà¹Ø¶Ì¾ä/Àý¾ä

micro-photoluminescence spectrumÏÔ΢ӫ¹âÆ×

3)microspectrofluorimeterÏÔ΢ӫ¹â¹âÆ×ÒÇ

4)fluorescence microscopyÓ«¹âÏÔ΢

1.Monochromator is a very important part in living cell fluorescence microscopy system.µ¥É«¼¤·¢¹âÔ´Êǵ¥Ï¸°ûÓ«¹âÏÔ΢ϵͳÖеÄÖØÒª×é³É²¿·Ö¡£

5)microscopic fluorescent spectral imagingÏÔ΢ӫ¹â¹âÆ׳ÉÏñ

6)Fluorescence microscopy and fluorescence spectrofluorimeter coupling systemÓ«¹âÏÔ΢¾µÓëÓ«¹â¹âÆ×ÒÇñîºÏ

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