Academic literature on the topic 'Insecticidal formulation'

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Journal articles on the topic "Insecticidal formulation"

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Levchenko, Mikhail Alekseevich, Elena Anatolyevna Silivanova, and Ruzilya Husanovna Bikinyeva. "Selective toxicityof acetamiprid and fipronil as a part of insecticidal baits." Agrarian Scientific Journal, no. 1 (January 27, 2019): 48–52. http://dx.doi.org/10.28983/asj.v0i1.481.

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Monocomponent and combined insecticidal baits containing acetamiprid and fipronil are proposed to control the housefly Musca domestica at livestock facilities. The combination of active ingredients increases the insecticidal activity of formulations and simultaneously may lead to an increase in their toxicity to animals. The purpose of this work was to assess the selective toxicity of acetamiprid and fipronil as parts of mono- and bicomponent insecticides. The intestinal activity of insecticides against adult houseflies was assessed by no-choice feeding tests. The acute toxicity of insecticida
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Devi, Gitanjali, and Jisna George. "Formulation of Insecticidal Nematode." Annual Research & Review in Biology 24, no. 5 (2018): 1–10. http://dx.doi.org/10.9734/arrb/2018/39779.

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Davlianidze, Tatyana Alekseevna. "Reversibility of the knockdown effect at application of aerosols against pyrethroid-resistant house flies." Disinfection affairs, no. 4 (June 2021): 30–36. http://dx.doi.org/10.35411/2076-457x-2021-2-30-36.

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Knockdown resistance to pyrethroids and pyrethrins is the first sign of insecticide resistance, suggesting a decrease in insect nervous system sensitivity. On the Russian market of insecticides, there are many products in the aerosol package intended for the destruction of flying insects, which include pyrethroids, which provide a quick knockdown effect in insecticide susceptible insect strains. In resistant populations, in many cases, the reversibility of paralysis is observed, which indicates insufficient effectiveness of insecticidal products. The insecticidal activity of four products in a
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Yoon, Junho, Huijun An, Namjin Kim, and Jun-Hyung Tak. "Efficacy of Seven Commercial Household Aerosol Insecticides and Formulation-Dependent Toxicity Against Asian Tiger Mosquito (Diptera: Culicidae)." Journal of Medical Entomology 57, no. 5 (2020): 1560–66. http://dx.doi.org/10.1093/jme/tjaa070.

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Abstract For the indoor and outdoor pest controls, various types of insecticide formulations are available including aerosols, sprays, electric vaporizers, mosquito coils, and traps. In the present study, the insecticidal activity of aerosols, the most commonly used formulation of household insecticides for mosquito control, against Aedes albopictus (Skuse) was assessed using seven commercial products and some attributes which can affect the efficacy of aerosol were investigated as well. The products had difference in their chemical composition of active ingredients, propellant/liquid phase ra
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Syahputra, Edy, and Djoko Prijono. "Pembuatan formulasi ektrak kulit batang Calophyllum soulattri dan aktivitas residu terhadap larva Crocidolomia pavonana." Jurnal Entomologi Indonesia 5, no. 2 (2017): 61. http://dx.doi.org/10.5994/jei.5.2.61.

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One option to lessen the problems arising from the use of synthetic insecticides is to exploit plants that have insecticidal activities, such as species of Calophyllum(Clusiaceae). The study has been conducted to prepare insecticidal formulation from C. soulattri bark extract and to evaluate their residual activity against C. pavonana. Formulation prepared by using emulsifier, solvent, and sticking agent. Colour, acidity and emulsion stability were recorded as physic-chemical character of formulation. The result showed that the formulation of C. soulattri bark extract was stable, and their pH
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Mane, P. N., M. P. Moharil, N. S. Satpute, et al. "Storage Stability and Performance of Aqueous and Dry Formulations of Helicoverpa armigera Nuclear Polyhedrosis Virus." Journal of Biological Control 30, no. 1 (2016): 34. http://dx.doi.org/10.18311/jbc/30/1/6457.

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Experiment on storage stability and performance of aqueous and dry formulation of <em>Helicoverpa armigera</em> nuclear polyhedrosis virus (HaNPV) was conducted during 2011-2013 in Bio control laboratory, Department of Entomology and Insect Biotechnology laboratory, Biotechnology Centre, Dr. Panjabrao Deshmukh Krishi Vidyapeeth, Akola with an objective to develop potent HaNPV formulation for improving shelf life and performance. Aqueous and dry form of HaNPV formulations with antimicrobials, UV protectant and phagostimulant were prepared and studied their shelf life and performance
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Brownbridge, M., C. Ferguson, D. J. Saville, J. Swaminathan, M. R. H. Hurst, and T. A. Jackson. "Potential for biological control of porina (Wiseana spp) with a novel insecticidal bacterium Yersinia n sp (MH96) EN65 strain." New Zealand Plant Protection 61 (August 1, 2008): 229–35. http://dx.doi.org/10.30843/nzpp.2008.61.6847.

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Porina (Wiseana spp larvae) are endemic pests of pasture If detected early young larvae can be controlled with diflubenzuron but generally damage is not predicted and organophosphate insecticides (eg diazinon chlorpyrifos chlorfon) are required Yersinia n sp (MH96) cf entomophaga (EN65 strain) a novel bacterium with insecticidal properties is pathogenic to late instar Wiseana spp larvae in laboratory assays and has potential as a biopesticide This trial measured the effect of two formulations of EN65 and a commercial formulation of Bacillus thuringiensis var kurstaki (Btk) against late instar
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Côté, J. C., C. Vincent, K. H. Son, and S. H. Bok. "Persistence of insecticidal activity of novel bio-encapsulated formulations of Bacillus thuringiensis var. kurstaki against Choristoneura rosaceana [Lepidoptera: Tortricidae]." Phytoprotection 82, no. 2 (2005): 73–82. http://dx.doi.org/10.7202/706218ar.

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DiPelTM, a registered Bacillus thuringiensis var. kurstaki (Btk)-based formulation, and experimental bio-encapsulated Btk formulations were sprayed in an apple orchard. Their persistence was assessed in the laboratory against obliquebanded leafroller (Choristoneura rosaceana) larvae for three consecutive years. In 1995, DiPel and the bio-encapsulated formulation caused significantly higher larval mortality than the control at least 1 day, and up to 27 days after treatments, respectively. In 1996, although 6.4 mm of rain fell during the day of treatments, DiPel and the bio-encapsulated formulat
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Schnabel, G., D. Fernández-Ortuño, W. C. Bridges, and S. B. Hudson. "Multiyear Evaluation of an Orange Peel Oil-based Spray Additive for Managing Insect Pests and Brown Rot of Nectarine." Plant Health Progress 13, no. 1 (2012): 12. http://dx.doi.org/10.1094/php-2012-0617-01-rs.

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Adjuvants are often added to pesticide formulations to enhance their effectiveness. In this multiyear field study, a proprietary formulation of orange peel oil-based spray additive containing alcohol ethoxylate (OPO-AE) was used alone or in combination with the pyrethroid insecticide esfenvalerate or the demethylation inhibitor fungicide fenbuconazole for pest and disease control of nectarine. Field performance of fenbuconazole for preharvest and postharvest brown rot control was not improved when OPO-AE was added to the spray tank. However, OPO-AE alone reduced preharvest but not postharvest
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Adesina, Jacobs Mobolade, Anjanappa Raghavendra, Yallappa Rajashekar, and Thomas Inomisan Ofuya. "Potential use of Clerodendrum capitatum extracts and its formulation for control of three major stored product beetles." Food Quality and Safety 3, no. 3 (2019): 179–85. http://dx.doi.org/10.1093/fqsafe/fyz018.

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Abstract Objective Insecticidal activity of Clerodendrum capitatum extracts against the stored product insect pest, Sitophilus oryzae (L.), Rhyzopertha dominica (F.), and Tribolium castaneum (Herbst) were investigated. Materials and Methods Hundred grams of C. capitatum powder was sequentially extracted with a series of solvents of increasing polarity in a Soxhlet apparatus and the extracts were concentrated on rotary evaporator to make it solvent free and the residue dissolved in a known volume of methanol and the solution was assayed for insecticidal activity by the fumigant toxicity. Hexane
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Dissertations / Theses on the topic "Insecticidal formulation"

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Nguemtchouin, Mbouga Marie Goletti. "Formulation d’insecticides en poudre par adsorption des huiles essentielles de Xylopia aethiopica et de Ocimum gratissimum sur des argiles camerounaises modifiées." Thesis, Montpellier, Ecole nationale supérieure de chimie, 2012. http://www.theses.fr/2012ENCM0005/document.

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En Afrique sud- saharienne, plusieurs méthodes de protection des stocks alimentaires sont utilisées ; parmi elles, les insecticides synthétiques qui représentent un risque réel pour la santé humaine. Pour apporter une alternative à ces insecticides chimiques potentiellement dangereux, le présent travail a pour objectif de développer des bio-insecticides en formulant des poudres par adsorption d’huiles essentielles sur des argiles. Deux argiles naturelles du Cameroun ont été utilisées comme adsorbants des composés terpéniques des huiles essentielles de Xylopia aethiopica et Ocimum gratissimum p
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Pitti, caballero Javier ernesto. "Nanoencapsulation d’un agent synergisant chimique, la deltaméthrine pour potentialiser l’effet d’un insecticide, l’indoxacarbe contre les insectes nuisibles." Thesis, Angers, 2019. http://www.theses.fr/2019ANGE0005.

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L’utilisation non raisonnée d’insecticides a des conséquences sur l’environnement et la santé humaine mais aussi sur le développement de résistances chez les insectes nuisibles. Dans ce contexte, ce travail de thèse porte sur le développement d'une technique de nanoencapsulation d'un agent synergisant chimique, la deltaméthrine (pyréthrinoide), associé un pro-insecticide l’indoxacarbe (oxadiazine). Sur la base d’études in vitro sur cellules neurosecrétrices de blattes (Periplaneta americana), une action synergique entre la deltaméthrine et le DCJW (métabolite actif de l’indoxacarbe) a été démo
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Wooster, Mark T. "Sublethal vapor-induced responses of the German cockroach to commercial pesticide formulations." Diss., Virginia Polytechnic Institute and State University, 1988. http://hdl.handle.net/10919/54466.

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The overall purpose of this study was to examine the effects of an insecticide vapor pulse on the dispersal response of the German cockroach, Blattella germanica (L). An apparatus was designed to expose test cockroaches to vapors from commercial pesticide formulations. Insecticide vapor-induced dispersal responses were recorded during a two hour period from different strains that had been allowed to acclimate to a harborage. The dispersal response of large nymphs from a pesticide susceptible laboratory strain (VPI) was compared to two propoxur resistant field strains (Carver, Kenly) after exp
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Auberlet, Delle-Vedove Agnès. "Synthèse et étude structurale de n-benzoyl-n'-phenylurees, insecticides, en vue d'établir une relation entre la structure, la rétention dans des adsorbants modèles et le mode de dégradation. Suivi de recherches sur l'enseignement expérimental de la formulation : étude d'une famille de tensioactifs." Angers, 1995. http://www.theses.fr/1995ANGE0002.

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Dans une première partie, cinq n-benzoyl-n'-phenylurees sont synthétisées, en vue de modéliser leurs interactions avec l’environnement : rétention dans les sols, dégradation. Ces molécules sont des insecticides rémanents agissant par inhibition de la biosynthèse de la chitine. L'analyse d'extraits d'adsorbants modèles traites avec ces molécules est effectuée par chromatographie liquide haute pression en phase inverse. L'étude structurale de ces molécules est réalisée par la combinaison de diverses techniques spectroscopiques : spectrométrie de masse, spectroscopie de rayons X, RMN du proton, d
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Zimmermann, Ana Lucia Santos. "Desenvolvimento e avaliação de micropartículas contendo microrganismos viáveis utilizados como bioinseticida." Universidade de São Paulo, 2001. http://www.teses.usp.br/teses/disponiveis/9/9139/tde-09022015-103417/.

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Neste trabalho foi feito um estudo para obtenção de formulações multiparticuladas, formadas por micropartículas de polímeros naturais, solúveis em água, não tóxicos e biodegradáveis. Os polímeros utilizados foram: Caseína, Hidroxietilcelulose (HEC), Hidroxipropilmetilcelulose (HPMC), Alginato de sódio e Quitosana. As técnicas utilizadas para obtenção das micropartículas foram o spray drying e a atomização de alginato de sódio em uma solução de CaCl2, para gelificação das gotículas formadas, com uma complexação ou não com quitosana. O estudo de micropartículas secas de alginato de cálcio e algi
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Pitti, Caballero Javier Ernesto. "Nanoencapsulation d’un agent synergisant chimique, la deltaméthrine pour potentialiser l’effet d’un insecticide, l’indoxacarbe contre les insectes nuisibles." Thesis, 2019. http://www.theses.fr/2019ANGE0005/document.

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L’utilisation non raisonnée d’insecticides a des conséquences sur l’environnement et la santé humaine mais aussi sur le développement de résistances chez les insectes nuisibles. Dans ce contexte, ce travail de thèse porte sur le développement d'une technique de nanoencapsulation d'un agent synergisant chimique, la deltaméthrine (pyréthrinoide), associé un pro-insecticide l’indoxacarbe (oxadiazine). Sur la base d’études in vitro sur cellules neurosecrétrices de blattes (Periplaneta americana), une action synergique entre la deltaméthrine et le DCJW (métabolite actif de l’indoxacarbe) a été démo
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Roy, Susan J. "The Japanese beetle and neem : efficacy of commercial formulations on laboratory and field populations." 1995. https://scholarworks.umass.edu/theses/3067.

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Chang, Wen-Fen, and 張文芬. "The Research and Development of the Technology for The Emulsion in Water and Granular Formulation of The Insecticides." Thesis, 1999. http://ndltd.ncl.edu.tw/handle/49447689936142555298.

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碩士<br>朝陽大學<br>應用化學研究所<br>87<br>In this study, the formulation technologies of emulsifiable concentrates(EC)and granules(GR)are developed. EC and GR are the two favorable forms that farmers like to use in Taiwan. The study of emulsifiable concentrates includes two parts. The first part shows the improvement of emulsifiable concentrates which contain large amount of organic solvent. The formulation is changed into water based emulsion, i.e. emulsion in water, with water as the carrier. The formulation is examined on its separation effect, bloom test, active ingredient analysis, th
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QIU, SHU-YUAN, and 邱淑媛. "Studies on production and application of microbial insecticides : characteristics of crystal protein and^^conditions of formulation in Bacillus thuringiensis." Thesis, 1991. http://ndltd.ncl.edu.tw/handle/72621340750515348183.

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Books on the topic "Insecticidal formulation"

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Sundaram, K. M. S. Distribution, dissipation and persistence of aminocarb in aquatic components of the forest environment after aerial application of two Matacil 180F formulations. Forest Pest Management Institute, 1987.

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Groome, John Martin. Physico-chemical aspects of the transfer of insecticide formulations from treated surfaces to target insects. De Montfort University, 1994.

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J, Peterson Chris, and Stout Daniel M, eds. Pesticides in household, structural, and residential pest management. American Chemical Society, 2009.

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J, Peterson Chris, and Stout Daniel M, eds. Pesticides in household, structural, and residential pest management. American Chemical Society, 2009.

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Book chapters on the topic "Insecticidal formulation"

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Ghrab, Sana, Samir Bouaziz, and Mourad Benzina. "Technological Characterization of Organo-beidellite for a New Insecticidal Formulation." In Recent Advances in Environmental Science from the Euro-Mediterranean and Surrounding Regions. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-70548-4_339.

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Heppner, John B., D. G. Boucias, J. C. Pendland, et al. "Insecticide Formulation." In Encyclopedia of Entomology. Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-6359-6_1542.

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Perry, A. S., I. Yamamoto, I. Ishaaya, and R. Perry. "Formulations of Insecticides." In Insecticides in Agriculture and Environment. Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-662-03656-3_3.

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Sasson, Yoel, Ganit Levy-Ruso, Ofer Toledano, and Isaac Ishaaya. "Nanosuspensions: Emerging Novel Agrochemical Formulations." In Insecticides Design Using Advanced Technologies. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-46907-0_1.

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Young, S. Y. "Formulation and Application of Viral Insecticides." In Natural and Engineered Pest Management Agents. American Chemical Society, 1993. http://dx.doi.org/10.1021/bk-1994-0551.ch027.

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Pant, Megha, Saurabh Dubey, and P. K. Patanjali. "Recent Advancements in Bio-botanical Pesticide Formulation Technology Development." In Herbal Insecticides, Repellents and Biomedicines: Effectiveness and Commercialization. Springer India, 2016. http://dx.doi.org/10.1007/978-81-322-2704-5_7.

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Mangan, Robert L. "Priorities in Formulation and Activity of Adulticidal Insecticide Bait Sprays for Fruit Flies." In Trapping and the Detection, Control, and Regulation of Tephritid Fruit Flies. Springer Netherlands, 2014. http://dx.doi.org/10.1007/978-94-017-9193-9_12.

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Stephenson, Richard R. "A Pyrethroid Insecticide for Use in Rice - Effects of Formulation on Fish Toxicity and its Assessment." In Pest Management in Rice. Springer Netherlands, 1990. http://dx.doi.org/10.1007/978-94-009-0775-1_37.

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Narayanasamy, P. "Potential and Futuristics of Fly Ash Nanoparticle Technology in Pest Control in Agriculture and Synthesis of Chemical and Herbal Insecticides Formulations." In Circular Economy and Fly Ash Management. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-15-0014-5_7.

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Cardarelli, Nate. "Controlled Release Insecticides." In Controlled Release Pesticides Formulations, edited by Gunter Zweig. CRC Press, 2018. http://dx.doi.org/10.1201/9781351070881-6.

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Conference papers on the topic "Insecticidal formulation"

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Kim, Tae-Wan. "Bacillus thurigneisisserovaraizawaispray-dried formulations on the insecticidal effect of strain CAB566." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.112376.

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O'Byrne, Daniel J. "Fastac® CS Insecticide: Alpha-cypermethrin in an innovative formulation." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.112768.

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Yunira, Eka Nur’azmi, Ani Suryani, and Dadang. "Characteristics of Insecticide Formulation Using Surfactant Based on Palm Oil and Its Mortality Effect Against Spodoptera litura." In International Conference and the 10th Congress of the Entomological Society of Indonesia (ICCESI 2019). Atlantis Press, 2020. http://dx.doi.org/10.2991/absr.k.200513.015.

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Romero, Alvaro. "Understanding residual efficacy of insecticides on bed bugs: What does formulation and substrate have to do with it?" In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.93663.

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Wu, Shaohui. "Additive or synergistic interactions between bifenthrin and an emulsifiable formulation ofBeauveria bassianaagainst insecticide-resistant annual bluegrass weevil, Listronotus maculicollis." In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.111060.

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