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91.
Cellphone electromagnetic radiation produces temperature alterations in facial skin. We hypothesized that the radiation-induced heat was transduced by warmth-sensing trigeminal neurons, as evidenced by changes in cognitive processing of the afferent signals. Ten human volunteers were exposed on the right side of the face to 1 GHz radiation in the absence of acoustic, tactile, and low-frequency electromagnetic stimuli produced by cellphones. Cognitive processing manifested in the electroencephalogram (EEG) was quantitated by analysis of brain recurrence (a nonlinear technique). The theoretical temperature sensitivity of warmth-sensing neurons was estimated by comparing changes in membrane voltage expected as a result of heat transduction with membrane–voltage variance caused by thermal noise. Each participant underwent sixty 12-s trials. The recurrence variable r (“percent recurrence”) was computed second by second for the ? band of EEGs from two bilaterally symmetric derivations (decussated and nondecussated). Percent recurrence during radiation exposure (first 4 s of each trial) was reduced in the decussated afferent signal compared with the control (last four seconds of each trial); mean difference, r = 1.1 ± 0.5%, p < 0.005. Mean relative ? power did not differ between the exposed and control intervals, as expected. Trigeminal neurons were capable of detecting temperature changes far below skin temperature increases caused by cellphone radiation. Simulated cellphone radiation affected brain electrical activity associated with nonlinear cognitive processing of radiation-induced thermal afferent signals. Radiation standards for cellphones based on a thermal/nonthermal binary distinction do not prevent neurophysiological consequences of cellphone radiation.  相似文献   
92.
The wrinkle layer is a dorsal shell structure occurring in a number of ammonoids, but its function is still debated. Here, we describe, from Moroccan material of the Early Carboniferous species Maxigoniatites saourensis (Pareyn, 1961 ), the most conspicuous wrinkle layer known within the Ammonoidea. This additional shell layer occurs in the ventrolateral portion of the adult body chamber and forms continuous lamellae, which range about two millimetres into the lumen of the body chamber. Possible functions are discussed and the most likely interpretation for the structure is ‘fabricational noise’, which is related to the coarsening of the shell ornament of the terminal body chamber.  相似文献   
93.
Phenotypic variation within populations has two sources: genetic variation and environmental variation. Here, we investigate the coevolution of these two components under fluctuating selection. Our analysis is based on the lottery model in which genetic polymorphism can be maintained by negative frequency-dependent selection, whereas environmental variation can be favored due to bet-hedging. In our model, phenotypes are characterized by a quantitative trait under stabilizing selection with the optimal phenotype fluctuating in time. Genotypes are characterized by their phenotypic offspring distribution, which is assumed to be Gaussian with heritable variation for its mean and variance. Polymorphism in the mean corresponds to genetic variance while the width of the offspring distribution corresponds to environmental variance. We show that increased environmental variance is favored whenever fluctuations in the selective optima are sufficiently strong. Given the environmental variance has evolved to its optimum, genetic polymorphism can still emerge if the distribution of selective optima is sufficiently asymmetric or leptokurtic. Polymorphism evolves in a diagonal direction in trait space: one type becomes a canalized specialist for the more common ecological conditions and the other type a de-canalized bet-hedger thriving on the less-common conditions. All results are based on analytical approximations, complemented by individual-based simulations.  相似文献   
94.
Explaining the origin and maintenance of phenotypic variation remains a central challenge in evolutionary biology. Using the trematode parasite Maritrema novaezealandensis, we examined variability in several morphological, behavioural, and physiological phenotypic traits at the same time as controlling for genotype by using genetically identical parasite clonal lineages. We measured several morphological traits, photoreactive responses, and survivorship to quantify the amount of phenotypic variation within and among 42 clonal parasite lines. Additionally, we tested Lerner's hypothesis that homozygotes are more variable than heterozygotes and assessed correlations between heterozygosity and phenotypic variation among clones. We found substantial differences among clones in morphology, photoreactive behaviour, and survivorship, yet no significant differences among clones in levels of intraclonal phenotypic variability were seen. Although the results demonstrate that conspecific trematode clones have significantly different levels of phenotypic variability, consistent differences over time were not always apparent. Finally, no correlation was found between heterozygosity and phenotypic variation among clones and the pattern of highly variable homozygotes, as observed by Lerner, was not evident in the present study. © 2011 The Linnean Society of London, Biological Journal of the Linnean Society, 2011, 103 , 106–116.  相似文献   
95.
96.
Global population growth and associated urban development are having profound effects on biodiversity. Two major outcomes of expanding development that affect wildlife are light and noise pollution. In this paper, we review literature reporting the effects of light and noise on biodiversity, and assess implications for conservation planning in Australia. Our results clearly indicate that light and noise pollution have the potential to affect the physiology, behaviour and reproduction of a range of animal taxa. Types of effects include changes in foraging and reproductive behaviours, reduction in animal fitness, increased risk of predation and reduced reproductive success. These could have flow‐on consequences at the population and ecosystem levels. We found a significant gap in knowledge of the impact of these pollutants on Australian fauna. To reduce the effect of light and noise pollution, there needs to be careful planning of urban areas in relation to protected areas, and for biodiversity more generally. Potential measures include strategically planning the types of development and associated human activities adjacent to protected areas, and the use of shields and barriers, such as covers for lights or the use of dense native vegetation screens, while still allowing movement of animals. Changes in government standards and regulations could also help to reduce the impacts of light and noise pollution.  相似文献   
97.
暴露于2450MHz连续(CW)微波 (功率密度 :2mW/cm2,SAR :1.2W/kg)的大鼠在水迷宫训练期特别是检测期显示了认知功能的下降 ,表明了空间“工作记忆”的消弱。但是 ,同时施加一个极低频 (ELF)噪声磁场 (rms:10μT) ,上述负效应完全消失。这一动物行为学结果暗示 ,时间不相干而空间相干的低强度ELF噪声磁场能长程抗拮大鼠对连续微波的负作用。  相似文献   
98.
旅游环境舒适度评价及其时空分异——以杭州西湖为例   总被引:1,自引:0,他引:1  
旅游环境舒适度是影响旅游者出行决策和消费行为的重要因素,进一步影响到目的地适游期长短和旅游设施利用率。影响旅游舒适度的因素主要包括气候与环境两方面。以杭州西湖景区为研究对象,尝试将影响舒适度的空气质量、噪音等环境因素与气候因素共同纳入评价体系,选取温度、相对湿度、二氧化碳、一氧化碳、噪音5项指标和6个代表性检测点,进行为期1a定时定点检测,在排除二氧化碳与一氧化碳影响的基础上,构建了旅游环境舒适度评价模型,研究景区尺度存在的旅游环境舒适度时空分异特征。研究发现:不舒适时段主要集中在1月上旬到2月下旬,舒适和较舒适时段主要集中于2月下旬到7月中旬、8月下旬到11月下旬;山区与湖区各项环境指标要优于近城区、游客集聚区及交通繁忙区,平均舒适度山区(1.30)湖心区(1.66)城区(1.82)近城区(2.02)游人集聚区(2.47)交通繁忙区(2.48)。6个观测点在不同时段表现的舒适度差异也不同,差异最大的时段出现在4月中旬到5月中旬,差异最小时段出现在1月上旬到2月下旬。温湿度与噪音存在反向协同作用,引起环境舒适度变化。温湿度舒适时段往往旅游活动频繁,导致噪音升高降低了旅游环境舒适度。温湿度不舒适期旅游活动减少使得声环境相对舒适。  相似文献   
99.
城市绿地的生态环境效应研究进展   总被引:10,自引:0,他引:10  
工业化的快速发展和城市化进程的加剧,使得城市生态环境的破坏和污染愈来愈严重,加速了城市的“生态环境危机”.城市绿地能够通过植被的光合作用、吸收作用、隔离阻挡作用、蒸腾以及蒸散作用改善城市的生态环境.目前研究主要集中在降温、增湿、固碳释氧、降噪、抗污染、生物多样性保护等6个方面.关于城区绿地对6种生态环境要素的改善程度、影响范围、机理问题以及不同植被种类生态环境效应的差异情况等,国内外学者都进行了大量详细的研究.基于传统实地观测数据进行城市绿地的生态环境效应研究是目前主要使用的研究方法,部分学者开始使用遥感技术手段研究城区绿地的降温增湿效应.在总结和分析前人研究成果的基础上,从研究内容的不同着手,主要总结并系统评估了目前关于城市绿地6种生态环境效应的研究,为今后相关研究提供参考.  相似文献   
100.
在自然环境中,人和动物常在一定的背景噪声下感知信号声刺激,然而,关于低强度的弱背景噪声如何影响听皮层神经元对声刺激频率的编码尚不清楚.本研究以大鼠听皮层神经元的频率反应域为研究对象,测定了阈下背景噪声对79个神经元频率反应域的影响.结果表明,弱背景噪声对大鼠初级听皮层神经元的听反应既有抑制性影响、又有易化性影响.一般来说,抑制性影响使神经元的频率调谐范围和最佳频率反应域缩小,易化性影响使神经元的频率调谐范围和最佳频率反应域增大.对于少数神经元,弱背景噪声并未显著改变其频率调谐范围,但却改变了其最佳频率反应域范围.弱背景噪声对63.64%神经元的特征频率和55.84%神经元的最低阈值无显著影响.神经元频率调谐曲线的尖部比中部更容易受到弱背景噪声的影响.该研究结果有助于我们进一步理解复杂声环境下大脑听皮层对听觉信息的编码机制.  相似文献   
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