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首页> 外文期刊>The Journal of Experimental Biology >AN ELECTRICAL MODEL FOR PERIPLANETA AMERICANA PRONOTAL INTEGUMENT - AN EPIDERMAL LOCATION FOR HYDRATION-DEPENDENT RESISTANCE
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AN ELECTRICAL MODEL FOR PERIPLANETA AMERICANA PRONOTAL INTEGUMENT - AN EPIDERMAL LOCATION FOR HYDRATION-DEPENDENT RESISTANCE

机译:南美白PER原膜的电气模型-抗水合作用的表皮位置

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Measurements of electrical resistance appear to be useful indicators of porosity and related water permeability in insect cuticle, To develop an adequate understanding of how such measurements relate to the physical and structural properties of the integument, we made detailed determinations of resistance and impedance values for pronotal cuticle in adult male Periplaneta americana, The most consistent estimates were obtained by averaging measurements across the integument on both sides of the midline at several intervals starting 15 min after electrode application. Pronotal resistance varied inversely with water content, from about 10 k Omega cm(2) in hydrated cockroaches to about 40 k Omega cm(2) in dehydrated insects, Though the dermal gland canals appear to act as the main conductive pathway across the cuticle, the variable 'barrier' is located in the epidermal layer, since removal of the epidermis from isolated pronota also removes most of the variable component of the integumental resistance, Comparison of measurements between two external electrodes with single-electrode measurements revealed a 'shunt' pathway parallel to the cuticle surface; modelling this shunt suggested that it was variable and located mostly internal to the cuticle, supporting an epidermal location for a variable barrier, Impedance measurements over a range of frequencies showed the integument to be electrically complex, and a model is proposed to account for its properties [References: 14]
机译:电阻的测量似乎是昆虫表皮中孔隙率和相关透水性的有用指标,为了充分了解这种测量与被膜的物理和结构特性之间的关系,我们详细确定了前额肌的电阻和阻抗值在成年雄性美洲Per蝶的角质层中,最均匀的估计值是通过在电极施加后15分钟开始的几个间隔内,对中线两侧的整个被膜的测量值取平均值而获得的。前胸膜阻力与含水量成反比,从含水蟑螂中的约10 k Omega cm(2)到脱水昆虫中的约40 k Omega cm(2),尽管真皮腺管似乎是跨表皮的主要传导途径,可变的“屏障”位于表皮层,因为从孤立的前胸膜去除表皮还可以去除大部分皮层电阻的可变成分。两个外部电极之间的测量结果与单电极测量结果的比较显示出“分流”途径平行于角质层表面;对这种分流器进行建模表明,该分流器是可变的,并且位于表皮内部,为表皮的位置提供了可变的屏障。在一定频率范围内的阻抗测量表明,该被膜是电复杂的,并提出了一个模型来说明其特性[参考:14]

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