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Males ofDrosophila littoralis vibrate their wings during courtship to deliver a love song. This consists of 25- to 50-ms-long pulses with a basic frequency of about 250–400 Hz, separated by 250- to 500-ms pauses. When recording the sounds of flies from several localities in Europe, we found that males of one strain from northern Finland displayed courtship sounds with an unusally low wing beat frequency (below 250 Hz). In a genetic analysis utilizing marker stocks, the anomalous frequency was found to be caused by genes on all major autosomes, the strongest factors being on the second chromosome. Interaction between genes on chromosome 2 and on the fused chromosome 3–4 was nonadditive. In low-frequency sounds, the number of cycles in the pulse (CN) was decreased, so that the length of the sound pulse (PL) remained more or less unchanged. We suggest that the genetically and physiologically most thoroughly controlled trait in the sound ofDrosophila littoralis is the length of the pulse.  相似文献   
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本文对肠道运动进行分析,从结构上研究肠鸣音的产生机理和肠鸣音的时域、频域特点,从而得到其物理模型,并用等效电路来模拟肠鸣音的产生,为研究肠鸣音的数学模型,以及临床医学研究提供了方便。  相似文献   
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心音信号的分形研究   总被引:3,自引:0,他引:3  
本文通过引入分形概念,首次为描述心音信号的复杂程度给出了一个定量的指标——分数维数。研究结果表明:心音信号确实存在着“无标度区”,具有典型的分形特性;心音信号的分维值能显著性地区分正常心音、二尖瓣病变心音(包括二尖瓣狭窄、二尖瓣关闭不全及二尖瓣狭窄加关闭不全)和主动脉瓣病变心音(主动脉瓣狭窄、主动脉瓣关闭不全及主动脉瓣狭窄加关闭不全)。  相似文献   
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The question of the roles of the two main parts of the insect brain, the mushroom bodies and the central complex, in controlling motor coordination and triggering a variety of behavioral programs, including sound production, remains controversial. With the aim of improving our understanding of this question, we studied the parameters of songs used by five-day-old males during courtship for fertilized wild-type females (Canton-S, C-S) over 5-min periods at 25°C; males were of two wild-type Drosophila Melanogaster lines (Berlin and C-S). Berlin males lacking mushroom bodies because of treatment with hydroxyurea during development (chemical removal of the mushroom bodies) were used, along with two mutants with defects in the mushroom bodies (mbm 1 and mud 1), two mutants with defects in the central complex (ccb KS127 and cex KS181), and mutant cxb N71 with defects in both the mushroom bodies and the central complex. The experiments reported here showed that courtship songs in males lacking mushroom bodies were virtually identical to those of wild-type males. The main parameters of pulsatile song in mutants mbm 1 and mud 1 (interpulse interval and train duration) were insignificantly different from those of the songs of wild-type flies, though the stability of the pulse oscillator was the same. Flies of these lines were no different from wild-type flies in terms of courtship success (percentage of copulating pairs in 10-min tests). Conversely, the songs of mutants with defects in the central complex differed from those of wild-type males. Firstly, there was degradation of the stability of the pulse oscillator and interpulse intervals were very variable. In addition, pulses were often significantly longer and appeared multicyclic, as in the well-known cacophony mutant, while the mean train duration was significantly shorter. Males of the line cex KS181 usually courted very intensely, though abnormal sounds were generally emitted. Mutants cex KS181 and ccb KS127 were significantly less successful in courtship than wild-type flies. These data show that the central complex appears to play a very important role in controlling song, while the mushroom bodies are not related to this function.  相似文献   
8.
It is reported that some types of insects have a remarkable ability to detect the direction of an incident sound even though its acoustic sensory organs are in very close proximity each other. Maybe the ears are jointed by a cuticular structure with which the separated motions can be coupled mechanically and thus be magnified. In this paper, a detailed model is setup to describe the principle of this type of localization using a mechanical coupled structure. The transfer functions and the responses of the model in terms of time and frequency are analyzed to describe the mechanism of its ability of directional hearing. This analytical model provides a method to design the experimental model for the predetermined incident sound pressure, and the analysis of this model shows that this structure have the ability to determine the direction of the incident stimulus.  相似文献   
9.
Hoikkala  Anneli 《Behavior genetics》1985,15(2):135-142
Drosophila littoralis males and females emit sounds during courtship by vibrating their wings. Genetic variation in the male courtship sound of this species was studied by analyzing the sounds of males of 42 fresh isofemale strains from three localities in Finland and those of several laboratory strains originating from Europe and Caucasus. Among the fresh strains, the mean number of sound cycles in a pulse varied from 12 to 17 cycles, the length of a pulse from 39 to 51 ms, the length of a sound cycle from 2.9 to 3.6 ms, and the length of an interpulse interval (ipi) from 280 to 400 ms. The sounds of the old laboratory strains differed from each other more than the sounds of the fresh strains. There was, however, no sign of geographic differentiation.This study was aided by funds from The Academy of Finland.  相似文献   
10.
.The aim of this study is to estimate the chaos phenomenon in temporomandibular joints (TMJ) sound using fractal dimension (FD), and to examine the diagnostic value of the FD in comparing TMJ sounds produced by 6 asymptomatic and 25 symptomatic TMJ. Multiple mandibular opening and closing cycles recorded were used to calculate the waveform dimension and correlation dimension in the FD. Chaos in the TMJ sounds was estimated by the FD that was saturated with some constant value to an increase of embedding dimension. Results reveal that fractal analysis produces a high degree of reproducibility within, and similarity across subjects, and indicate that both FD values of the asymptomatic TMJ sounds are significantly higher than those of the symptomatic. These findings suggest that chaos is present in TMJ sounds and the difference in the FD is of diagnostic value in evaluation of pathological change in TMJ sound signals.  相似文献   
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