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Journal ArticleDOI

A method of computing the effectiveness of an insecticide

TLDR
In order to make experimental studies comparable and statistically meaningful, the article recommends the following formula: per cent control = 100(X - Y)/X, which eliminates errors due to deaths in the control sample which were not due to the insecticide.
Abstract
There are several statistical methods used in biology (entomology) for computing the effectiveness of an insecticide, based on relating the number of dead insects in the treated plat to the number of live ones in the untreated plat. In order to make experimental studies comparable and statistically meaningful, the article recommends the following formula: per cent control = 100(X - Y)/X, where X = % living in the untreated check sample and Y = % living in the treated sample. Calculation using this method eliminates errors due to deaths in the control sample which were not due to the insecticide. An example based on treatments of San Jose scale includes computation of probable errors for X and Y, and the significance of the difference between the two counts. Common biometric convention holds that when the difference between the results of two experiments is greater than three times its probable error, the results are significant and due to the treatment applied.

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Laboratory evaluation of the novel naturally derived compound spinosad against Ceratitis capitata

TL;DR: Spinosad was more effective than fenthion in suppressing larval development when neonate larvae were reared on treated diet supplemented with a range of concentrations from 0.02 to 0.83 mg kg -1 diet.
Journal ArticleDOI

Differential Patterns of Insecticide Resistance in Eggs and First Instars of Triatoma infestans (Hemiptera: Reduviidae) from Argentina and Bolivia

TL;DR: It is indicated that the expression of insecticide resistance in eggs varies between populations and that the pyrethroid resistance diagnosed in T. infestans first instars is not indicative of resistance in the egg stage.
Journal ArticleDOI

Conspicuousness is correlated with toxicity in marine opisthobranchs.

TL;DR: A significant correlation between conspicuousness and toxicity is found, indicating that conspicuousness acts as an honest signal when signifying level of defence and provides evidence for aposematism in opisthobranchs.
Journal ArticleDOI

Field trials against Hoplia philanthus (Coleoptera: Scarabaeidae) with a combination of an entomopathogenic nematode and the fungus Metarhizium anisopliae CLO 53

TL;DR: The pathogen combinations tested are compatible elements of integrated pest management and are likely to improve control of H. philanthus larvae and perhaps other insect pests beyond what is expected from single application of the pathogen.
Journal ArticleDOI

Pyrethroid-resistance and presence of two knockdown resistance (kdr) mutations, F1534C and a novel mutation T1520I, in Indian Aedes aegypti.

TL;DR: The Aedes aegypti population of Delhi is resistant to DDT, deltamethrin and permethrin, and two kdr mutations, F1534C and a novel mutation T1520I, were identified in this population, the first report of k dr mutations being present in the Indian Ae.
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