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311.
312.
Klapwijk  S. P. 《Hydrobiologia》1990,199(2):87-100
In two canals and two lakes in the western part of the Netherlands a comparision is made between data on water chemistry and phytoplankton from 1941/1942 with recent data. Orthophosphate in particular, but also inorganic nitrogen, has increased tremendously, especially in the Gouwe canal, where Rhinewater enters the area. The inorganic N/P mass ratio decreased in the last 45 years, indicating that the limiting nutrient has changed from phosphate in 1941 to nitrogen in 1987.The average seston volume, measured by filtering 1001 water through a plankton net (50 µm), has doubled. In the early 1940s the blue-green alga Microcystis aeruginosa regularly formed waterblooms, as it does now. The plankton composition seems to have become impoverished in the last decennia, since several taxa have disappeared. Others are strongly reduced in number. The saprobic index has not changed.Based on the relations between chlorophyll-a and biological oxygen demand (BOD) and between transparency and seston volume, BOD, dry weight and ash free dry weight in 1987 chlorophyll-a and transparency in 1941 are estimated. The average chlorophyll-a concentration in the lakes has doubled or tripled in the last 45 years and the mean transparency in the Gouwe canal declined from 75 to 50 cm. Submerged higher plants at some sites have disappeared in the last decennia. The results can be used to develop ecological objectives for combatting eutrophication in canals and lakes and possibly in the river Rhine.  相似文献   
313.
The present state of a man-cut canal and a waste stream discharging into it was assessed. Some chemical and physical aspects of the study area have been measured and the diversity of the macroinvertebrates has been quantified.Species diversity of the net populations varied inversely to the degree of pollution. In the benthos, however, the nature of the bottom seemed to be largely responsible for the changes in community composition: the indices of diversity increased with increase in the amounts of silt and organic detritus. The ranges of phosphate, nitrite, ammonia, temperature, dissolved oxygen, chlorine (in chlorides), hardness, pH, transparency and velocity of the water were insufficient to produce detectable effects upon the diversity of the fauna.The waste stream had no macroscopic animal, save for the pollution-tolerant oligochaete, Limnodrilus.  相似文献   
314.
Investigation into the evolution of human language has involved evidence of many different kinds and approaches from many different disciplines. For full modern language, humans must have evolved a range of physical abilities for the production of our complex speech sounds, as well as sophisticated cognitive abilities. Human speech involves free‐flowing, intricately varied, rapid sound sequences suitable for the fast transfer of complex, highly flexible communication. Some aspects of human speech, such as our ability to manipulate the vocal tract to produce a wide range of different types of sounds that form vowels and consonants, have attracted considerable attention from those interested in the evolution of language. 1 , 2 However, one very important contributory skill, the human ability to attain very fine control of breathing during speech, has been neglected. Here we present evidence of the importance of breathing control to human speech, as well as evidence that our capabilities greatly exceed those of nonhuman primates. Human speech breathing demands fine neurological control of the respiratory muscles, integrated with cognitive processes and other factors. Evidence from comparison of the vertebral canals of fossil hominids and those of extant primates suggests that a major increase in thoracic innervation evolved in later hominid evolution, providing enhanced breathing control. If that is so, then earlier hominids would have had quite restricted speech patterns, whereas more recent hominids, with human‐like breath control abilities, would have been capable of faster, more varied speech sequences.  相似文献   
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The lack of mesocoelomic pores and the existence of a stone canal connecting proto-and mesocoel are characteristic peculiarities of echinoderms in contrast with the situation in other trimeric archicoelomates. The ultrastructure of the stone canal has been studied in order to understand its function in the strategically important position between two coelomic spaces with different functions. The epithelium of the Eucidaris (Echinoidea) stone canal is composed of three cell types: (1) ciliated cells, (2) cells with long basal processes containing myofilaments, and (3) granulated cells, which may represent secretory neurons. Nerve fibres of two types are common in the epithelium. We consider the stone canal to be a structure controlling fluid transport; its wall may exert peristaltic movements or tonic contractions and dilations which are under control of the nervous system. The ciliated cells additionally may have phagocytotic capacities. Similarities with the fine structure of the wall of the mesocoelomic pores in the pterobranch Cephalodiscus are discussed.  相似文献   
317.
The aim of this study was to investigate effect of radiofrequency radiation (RFR) emitted from mobile phones on DNA damage in follicle cells of hair in the ear canal. The study was carried out on 56 men (age range: 30–60 years old)in four treatment groups with n = 14 in each group. The groups were defined as follows: people who did not use a mobile phone (Control), people use mobile phones for 0–30 min/day (second group), people use mobile phones for 30–60 min/day (third group) and people use mobile phones for more than 60 min/day (fourth group). Ear canal hair follicle cells taken from the subjects were analyzed by the Comet Assay to determine DNA damages. The Comet Assay parameters measured were head length, tail length, comet length, percentage of head DNA, tail DNA percentage, tail moment, and Olive tail moment. Results of the study showed that DNA damage indicators were higher in the RFR exposure groups than in the control subjects. In addition, DNA damage increased with the daily duration of exposure. In conclusion, RFR emitted from mobile phones has a potential to produce DNA damage in follicle cells of hair in the ear canal. Therefore, mobile phone users have to pay more attention when using wireless phones.  相似文献   
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