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仓鼠输卵管外植体纤毛摆动频率的分析

Analysis of ciliary beat frequencies in hamster oviducal explants.

作者信息

Di Carlantonio G, Shaoulian R, Knoll M, Magers T, Talbot P

机构信息

Department of Biology, University of California, Riverside 92521, USA.

出版信息

J Exp Zool. 1995 Jun 1;272(2):142-52. doi: 10.1002/jez.1402720208.

Abstract

We have developed a simple direct method, requiring minimal manipulation, to measure beat frequencies of the cilia on the external surface of hamster oviducal infundibula in vitro. Two perfusion chambers (closed and open) were used; both can be hand-made in a few minutes and discarded after use. Ciliary beat frequencies were determined by measuring variations in light intensity with time in a single pixel positioned over a video image of the beating cilia. Data files were collected using Image 1 software and later transferred to PSI Plot or Lotus 123 spreadsheets for analysis by counting the number of brightness peaks recorded per second or by subjecting the data to Fourier transformation with or without smoothing. These methods of analysis gave similar results. To verify that Image 1 data files contain accurate representations of CBF, videotapes of beating cilia were made and subjected to frame-by-frame analysis. Image 1 interfaced with a standard video camera was found to collect reliable data over a beat frequency range of 0-15 cycles/sec. In some Fourier transforms, secondary peaks were observed and were shown to represent cilia beating at more than one frequency in a sampled region. Coefficients of variation for repeated measurements taken on the same region varied from 4.1% to 9.0%. Small but significant differences were found between beat frequencies at different regions of the same oviduct. When chambers were perfused discontinuously and measurements of beat frequency were made at least 5 min after each perfusion, no effect of perfusion on frequencies was observed. However, during continual perfusion of the open chamber, a slight but significant increase in beat frequency was observed after perfusion was initiated. Muscle contraction, which sometimes occurs in the open chamber, did not affect beat frequency measurements. Infundibula could be stored at 4 degrees C overnight without any negative effect on beat frequencies. Cold storage also reduced muscle contraction. Placement of a small coverslip on infundibula in the open chambers was also found to reduce muscle contraction and facilitate beat frequency measurements. Coverslipping did not affect beat frequencies. This method of beat frequency analysis will be valuable for analyzing factors that regulate or influence cilia in mammalian oviducts.

摘要

我们开发了一种简单的直接方法,所需操作极少,用于在体外测量仓鼠输卵管漏斗部外表面纤毛的搏动频率。使用了两种灌注室(封闭和开放);两者都可以在几分钟内手工制作,使用后丢弃。通过测量位于搏动纤毛视频图像上单个像素处光强度随时间的变化来确定纤毛搏动频率。使用Image 1软件收集数据文件,随后将其传输到PSI Plot或Lotus 123电子表格中,通过计算每秒记录的亮度峰值数量或对数据进行有或无平滑处理的傅里叶变换来进行分析。这些分析方法得出了相似的结果。为了验证Image 1数据文件是否准确表示了CBF,制作了搏动纤毛的录像带并进行逐帧分析。发现与标准摄像机连接的Image 1在0 - 15个周期/秒的搏动频率范围内收集可靠数据。在一些傅里叶变换中,观察到了二次峰值,并且显示这些峰值代表采样区域内以不止一种频率搏动的纤毛。在同一区域进行重复测量的变异系数在4.1%至9.0%之间。在同一输卵管的不同区域,搏动频率之间发现了微小但显著的差异。当对灌注室进行间断灌注且在每次灌注后至少5分钟进行搏动频率测量时,未观察到灌注对频率有影响。然而,在开放灌注室持续灌注期间,开始灌注后观察到搏动频率有轻微但显著的增加。开放灌注室中有时会出现的肌肉收缩并不影响搏动频率测量。漏斗部可以在4℃下储存过夜,对搏动频率没有任何负面影响。冷藏也减少了肌肉收缩。还发现,在开放灌注室的漏斗部上放置一个小盖玻片也能减少肌肉收缩并便于搏动频率测量。覆盖盖玻片不影响搏动频率。这种搏动频率分析方法对于分析调节或影响哺乳动物输卵管中纤毛的因素将是有价值的。

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