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81.
Wolfgang Stein 《Oecologia》1968,1(1-2):49-86
Zusammenfassung Die vorliegende Arbeit soll einen Beitrag zur Monographie von Apion virens liefern. Von den einzelnen Stadien werden die Entwicklungsdauer sowie verschiedene morphologische Einzelheiten angegeben. Die Lebensdauer der Imagines beträgt 11–12 Monate, wobei die Käfer allerdings während der Überwinterung Nahrung aufnehmen müssen.Die Ausfärbung der Puppen und Imagines erfolgt progressiv. Der Fortgang dieser Prozesse wird im einzelnen beschrieben.Die Zahl der abgelegten Eier betrug maximal 166/.Untersuchungen zur Phänologie ergaben verschiedene gut abtrennbare Phasen im Laufe des Jahres.Im Wirtspflanzenspektrum der Art spielen Trifolium-Arten die wichtigste Rolle.Die Vorzugstemperatur- und-lichtbereiche zeigen charakteristische Veränderungen ihrer Lage im Laufe des Jahres. Dabei ergeben sich hinsichtlich der Temperatur auch Unterschiede zwischen und .Von den Verhaltensweisen der Imagines werden Kopulation, Eiablage und Putzhandlungen eingehend beschrieben.
On the biology, morphology and behaviour of apion virens Hrbst. (Col., Curculionidae)
Summary This paper intends to give a contribution to a monography of Apion virens. From the different stages the duration of development and some details of the morphology are presented. The longevity of the adults reaches 11 to 12 months when uptake of food during hibernation is possible.The pigmentation of pupae and adults, which is described in detail, takes place progressively.The maximum number of eggs per female was 166.Investigations about the phenology showed several well separated phases in the course of one year. Trifolium species are the most suitable host plants of A. virens.The range of preference of temperature and humidity changes characteristically during the year. — Between and there exist also differences in the optimum temperature range.Copulation, egg-laying and cleaning behaviour are described in detail.
  相似文献   
82.
The Information Capacity of Nerve Cells Using a Frequency Code   总被引:4,自引:0,他引:4  
Approximate equations are derived for the amount of information a nerve cell or group of nerve cells can transmit about a stimulus of a given duration using a frequency code (i.e., assuming the mean frequency of nerve impulses measures the intensity of a maintained stimulus). The equations take into account the variability of successive interspike intervals, and any serial correlations between successive intervals, but do not require detailed assumptions about the mechanism of impulse initiation. The errors involved in using these approximations are evaluated for neurons which discharge either completely regularly, completely at random (Poisson process) or show a particular type of intermediate variability (gamma distribution model). The errors become negligibly small as the stimulus duration or the number of functionally similar nerve cells increases. The conditions for applying these equations to experimental data are discussed. The application of these equations should help considerably in eliminating the enormous discrepancies between some earlier estimates for the information processing capabilities of single nerve cells and systems of nerve cells.  相似文献   
83.
A procedure has been developed for the use of metal-ion buffers that depends on the formation of 2:1 complexes between suitable chelators and metal ions. beta-Alanine has been used as the chelator for Cu(2+) ions in a study of Cu(2+) binding by bovine pancreatic ribonuclease by the equilibrium-dialysis technique at pH7.0, 6.1 and 5.2. The results indicated the presence of two avid binding sites, the more avid group being implicated in the inhibition of enzyme activity by Cu(2+) ions.The binding constants of the more avid site were 2.97x10(7), 7.97x10(5) and 1.25x10(4) at pH7.0, 6.1 and 5.2 respectively, and the binding constants of the less avid site were 5.27x10(6) and 1.71x10(5) at pH7.0 and 6.1 respectively.The data show that the Cu(2+) is chelated to the protein through at least two ligand groups on the ribonuclease molecule.  相似文献   
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Summary The formation of the interconnection stimulus-response in a learning system is analysed. The system, a technical or a biological one establishes this correspondence by processing the information fed back from the medium during the learning process. This information has two aspects: a quantitative one related to the probability of the events, and a qualitative one related to the utility of the events in view of a goal. Both aspects are taken into consideration; by successive experiences the system eliminates the double uncertainty concerning the probabilistic dependence: stimulu — sresponse — outcome and its utility. Learning implies then a system for evaluating the utilities of different outcomes in view of a goal, a memory to record them and a decision system for selecting the corresponding responses upon a given criterion.

Der Beitrag stellt einen Teil der Untersuchungen dar, die zur Ausarbeitung der Doktor-Dissertation am Polytechnischen Institut Gheorghe Gheorghiu-Dej in Bukarest unternommen wurden.  相似文献   
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