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长江江豚背部皮肤表面有一长条小齿,由1—3排组成。它是由表皮向体表突起而成。小齿区皮肤中的乳头深深伸入表皮,几达表面,它的高度在成体约占整个表皮厚度的70—80%,新生幼儿为84.6%。经研究,我们发现在小齿区皮肤中存在着大量类似于人类皮肤中的环层小体那样的被囊神经末梢和几种有鞘神经纤维束。根据这些结构,我们认为小齿是一种感觉器官,它并不能起到防止幼儿从母体背部滑落的作用。

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本文根据浮游植物生产量求得对鲢、鳙的供饵能力,并通过浮游植物对鲢、鳙转化效率的计算,估算出武昌东湖鲢、鳙的生产潜力,进而求得武昌东湖鲢、鳙的合理投放量。作者求得东湖浮游植物全年对鲢、鳙的供饵能力是61,153吨(鲜重);由此估算出东湖鲢、鳙的生产潜力是789公斤/公顷以上,每年鱼种(四寸以上)的合理投放量,鲢是 209万尾,鳙是 110万尾。

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<正> 粒鲇科Akyisidae鱼类是分布在东南亚地区的小型鱼类,包括三个属。其中大粒鲇属Achrochodomchthys Bleeker只产于苏门答腊岛、爪哇岛和加里曼丹岛。狭尾粒鲇属Breitensteinia Steindachner只产于苏门答腊岛和加里曼丹岛。粒鲇属Akysis Bleeker鱼类已记录的有下列8种:Akysis variegatus(Bleeker),1846;Akysis macronemus Bleeker,1860;Akysis pictus Gnther,1883;A

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<正> 1976年6月至8月,中国科学院青藏高原综合科学考察队藏北分队对冈底斯山,念青唐古拉山以北,昆仑山以南的广大藏北地区进行了多学科的综合考察。我所陈宜瑜同志参加了这次考察,对该地区各种水体的水生生物进行了广泛地采集,在采得的标本中,藻类是十分丰富的。我们在鉴定该区振泉湖藻类标本时,发现一特殊类型的藻类。通过对液浸标本和固定染色标本的研究,确定它是绿藻门丝藻目的一新属。

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<正> 黑龙江流域的鲫鱼,是渔获物中的主要粗成之一,约占总产量的20%。黑龙江流域的水利枢扭建成后,它将成为水库中的主要养殖对象,因此,调查研究鲫鱼的生活习性及其种群变异,对于今后的渔业利用是有很大益处的。一、种群的变异鲫鱼在黑龙江流域的分布极其广泛,各种不同的水体中都能棲息生存。在额尔古纳河,鲫鱼是捕捞的主要对象;在黑龙江,则主要是分布在干流相通的附属水体中。其它如达赖湖、镜泊湖、小兴凯湖、五大连池等湖泊里均有相当数量的鱼群。

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<正> 一.绪言桡足类的主要组成部分是自由生活的剑水溞(Cyclopoida)和镖水溞(Calanoida),它们都是鱼类的优良食料。另一部分就是营寄生生活的种类,其中有些对于鱼类的危害性很大。鳋科(Ergasilidae)是一群由自由生活的剑水溞演变成寄生生活的过渡类型,其幼虫及雄虫完全营自由生活,只有雌性的成虫始寄生在鱼体上。因此过去如 Gurney氏等认为它们是半寄生性的种类,是很正确的论断。

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Cetaceans produce sound signals frequently. Usually, acoustic localization of cetaceans was made by cable hydrophone arrays and multichannel recording systems. In this study, a simple and relatively inexpensive towed acoustic system consisting of two miniature stereo acoustic data-loggers is described for localization and tracking of finless porpoises in a mobile survey. Among 204 porpoises detected acoustically, 34 individuals (similar to 17%) were localized, and 4 of the 34 localized individuals were tracked. The accuracy of the localization is considered to be fairly high, as the upper bounds of relative distance errors were less than 41% within 173 m. With the location information, source levels of finless porpoise clicks were estimated to range from 180 to 209 dB re 1 mu Pa pp at 1 m with an average of 197 dB (N=34), which is over 20 dB higher than that estimated previously from animals in enclosed waters. For the four tracked porpoises, two-dimensional swimming trajectories relative to the moving survey boat, absolute swimming speed, and absolute heading direction are deduced by assuming the animal movements are straight and at constant speed in the segment between two consecutive locations.