effect n. 1.結果。 2.效能,效果,效力,效應,作用,功效;影響。 3.感觸,印象;外觀,現(xiàn)象。 4.旨趣,意義。 5.實行,實施。 6.(布的)花紋。 7.〔pl.〕物品,動產,家財。 8.〔pl.〕〔英國〕仿制品。 cause and effect 因果。 curative effects 療效。 general effect 大意,綱領。 household effects 家產,家具什物。 love of effect 愛面子,愛(修飾)外表。 no effects 無存款。 personal effects 私人財物,手提行李。 sound effects 音響效果。 three-dimensional effect 立體感。 be in (full) effect 正在實行[厲行]。 bring [carry] into [to] effect 實行,實現(xiàn),貫徹。 come [go] into effect 開始實施[生效]。 feel the effects of 痛感…。 for effect 裝門面。 give effect to 實行,實施。 have an effect on [upon] 對…有影響[效果]。 in effect 實際上;總之;有效,生效。 of no effect 無效;無益,不中用。 put into effect 實行。 take effect 奏效,見效,有效驗,應驗;生效。 to no effect =without effect 無效,不靈驗。 to the effect that ... 大意是說…,內容是 (A telegram to the effect that .... 電報大意是說…)。 to this [that, the same] effect 按這種[那種、同樣]意思。 with effect 有效地。 vt. 1.產生,招致,導致,引起。 2.完成,達到,實現(xiàn)(目的等)。 effect a cure 發(fā)揮治療效果。 effect an insurance 參加保險。 n. -or 〔生〕效應器,效應基因。
On the base of studying imaging theory of lens, the imaging theory of laser confocal scanning microscopy was analyzed in detail in this paper, and the advancement of that the optical fiber was applied to the system was described; on the base of completed the demonstration for whole project, the experiment scheme was designed; the relationship between the main parameters of key devices and the resolution was deduced, and the requirements of coupling efficiency and vignetting effects to optical system was analyzed; the design of optical system and the planar scanning controlling circuit was completed; a new method was put forward to resolved the inherent non-liner scanning problem of the galvanometer scanner by using software liner controlling in circuit design, and the perfect planar scanning was realized; at last the low noise, high multiple and non-distortion amplify circuit of photoelectric detector was completed 本文在透鏡成像理論的基礎上,系統(tǒng)、深入地分析了共焦掃描顯微成像的機理,論述了應用單模光纖的激光共焦掃描顯微成像系統(tǒng)的優(yōu)點;進行了總體方案的論證,并設計確定了單模光纖激光共焦掃描顯微成像系統(tǒng)的總體方案;從理論上推導分析了分辨率要求與試驗系統(tǒng)中相關器件主要參數(shù)之間的關系,分析了系統(tǒng)耦合效率和漸暈現(xiàn)象對光學系統(tǒng)的設計要求;完成了方案中光學系統(tǒng)和二維掃描控制電路的設計,并在電路設計中采用了用軟件解決檢流計式光學掃描器(振鏡)非線性問題的新方法,能夠實現(xiàn)較為理想的二維模擬掃描;完成了高增益、低噪聲和低失真的探測接收系統(tǒng)的設計和調試。