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101.
Ricardo A. Rodríguez Ada M. HerreraRüdiger Otto Juan D. DelgadoJosé M. Fernández-Palacios José R. Arévalo 《Ecological modelling》2012,224(1):18-24
The direct equivalence between ecology and thermodynamics has not been attained despite accepted thermodynamic features of the ecosystem. This article explores the homeomorphism between ecology and statistical mechanics by analysis of ruderal vegetation. In conventional thermostatistical algorithm, the pro-kinetic effect of temperature on molecules was replaced by the anti-kinetic effect of species diversity on biological individuals. The existence of an ecological equivalent of the thermodynamic Boltzmann constant was empirically verified. From the relationship of this constant with biocenological variables, we derived a probable ecological equation of state under stationary and quasi-stationary conditions. This equation of state is homeomorphic with regard to the ideal gas state equation, and it is useful to infer the value of some biocenological parameters whose direct measurement is difficult, as biomass, energy and dispersal. According to these results, ecosystem assessment from conventional thermostatistics is plausible and empirically verifiable. This approach offers useful analytical tools for the conservation and restoration of ecosystems. 相似文献
102.
Sylvia Moenickes Marieke Frassl Jeanette Schlief Moritz Kupisch Michael Mutz Frank Suhling Otto Richter 《Marine Biology》2012,159(11):2605-2620
In this paper, we present an approach for describing the environmentally induced temporal pattern of structured populations by partial integro-differential equations. Populations are structured according to size or stage. Growth, energy allocation and stage transitions are affected by environmental conditions of which temperature, photoperiod, water depth and food supply were taken into account. The resulting modelling framework was applied to describe, analyse and predict alterations in populations with continuous development, populations with distinct state structures and interacting populations. Our exemplary applications consider populations of freshwater Amphipoda, Isopoda and Odonata. The model was capable of simulating life cycle alterations in dependence on temperature in interaction with other environmental factors: (1) population dynamics, (2) seasonal regulation, (3) water depth-dependent dispersal, (4) intraguild predation and (5) consumer-resource dynamics. 相似文献
103.
Oliver Behr Mirjam Knörnschild Otto von Helversen 《Behavioral ecology and sociobiology》2009,63(3):433-442
In many animal species, individuals compete for resources but avoid escalated conflicts by threat displays, i.e. a mutual
signalling behaviour that enables the opponents to predict the outcome of the conflict without the necessity of actual fighting.
For example, territory holders may use acoustic signals to communicate not only their own identity and the borders of their
territory but also their competitive quality, fighting ability and motivation. Here, we show that male sac-winged bats, Saccopteryx bilineata, adjust their vocal territorial displays according to the fundamental frequency of territorial songs of their opponents.
In playback experiments with territorial males, low-frequency stimuli elicited a higher territorial song rate and length than
high-frequency stimuli. Male S. bilineata that sing more often and with lower fundamental frequencies have been shown to sire more offspring than their competitors.
Fundamental frequency of territorial songs, hence, may reveal male quality and, consequently, the resulting threat posed to
competing males. We argue that this is reflected in the increased response of competitors to low-frequency territorial songs
shown here. Such competitive signalling behaviour has been shown in a few mammal species like red deer and baboons but, thus
far, not in bats.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
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Otto Neunhoeffer 《Die Naturwissenschaften》1958,45(11):255-259
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