Recent Developments in Invertebrate Repellents by Gretchen E. Paluch and Joel R. Coats (Eds.)

By Gretchen E. Paluch and Joel R. Coats (Eds.)

content material: PREFACE ; 1. A assessment OF ARTHROPOD REPELLENTS ; MARC C. DOLAN AND NICHOLAS A. PANELLA ; 2. improvement OF NOVEL REPELLENTS utilizing STRUCTURE?ACTIVITY MODELING OF COMPOUNDS within the USDA ARCHIVAL DATABASE ; ULRICH R. BERNIER AND MAIA TSIKOLIA ; three. CALLICARPENAL AND INTERMEDEOL: normal ARTHROPOD FEEDING DETERRENT AND REPELLENT COMPOUNDS pointed out FROM THE SOUTHERN folks therapy PLANT, CALLICARPA AMERICANA ; CHARLES L. CANTRELL AND JEROME A. KLUN ; four. CATNIP crucial OIL AND ITS NEPETALACTONE ISOMERS AS REPELLENTS FOR MOSQUITOES ; CHRISTOPHER J. PETERSON AND JOEL R. COATS ; five. PLANT crucial OILS AS REPELLENTS AND DETERRENTS TO AGRICULTURAL PESTS ; MURRAY B. ISMAN AND SABER MIRESMAILLI ; 6. touch AND SPATIAL REPELLENCY FROM CATNIP crucial OIL, NEPETA CATARIA, opposed to solid FLY, STOMOXYS CALCITRANS, AND different dirt FLIES ; JUNWEI JERRY ZHU ; 7. utilizing LONE megastar TICKS, AMBLYOMMA AMERICANUM (ACARI: IXODIDAE), IN IN VITRO LABORATORY BIOASSAYS OF REPELLENTS: DIMENSIONS, length, AND VARIABILITY ; J. F. CARROLL, A. ZHANG, AND M. KRAMER ; eight. improvement OF house REPELLENTS FOR VECTOR keep an eye on ; J. P. GRIECO AND N. L. ACHEE ; nine. REPELLENTS for cover FROM mattress insects: the necessity, THE applicants, security demanding situations, try out tools, AND the opportunity OF good fortune ; ROBIN G. TODD ; 10. improvement OF crucial OIL-BASED ARTHROPOD REPELLENT items ; GRETCHEN PALUCH, STEVEN BESSETTE, AND RODERICK BRADBURY ; eleven. the general public ENTOMOLOGY panorama: improvement OF CHEMICAL items opposed to BITING PESTS ; DANIEL STRICKMAN ; EDITORS' BIOGRAPHIES ; INDEXES ; writer INDEX ; topic INDEX

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15). Ma et al. (12) demonstrated that one could predict repellent duration based on compound structure, and specifically that the amide group and attached substituents played a significant role in the experimentally determined repellent efficacy. ; ACS Symposium Series; American Chemical Society: Washington, DC, 2011. ch002 et al. (16) applied Codessa Pro software (17) to develop a QSAR model for the prediction of complete protection time (CPT) from descriptors related to the structural and electronic properties of the DEET analogues.

In general, the more Gaussian the distribution of data used in a model, the more reliable the model is expected to be (23). The models were developed using 4 descriptors since adding additional descriptors complicated the model without adding a significant improvement in the predictive reliability (Table III). ; ACS Symposium Series; American Chemical Society: Washington, DC, 2011. Table III. Best 4 descriptors models and their statistical parameters. SOURCE: Reproduced from reference (23). 2822 Minimum e-n attraction for bond C-O a B, regression coefficient.

Callicarpenal and intermedeol, at 155 nmole/cm2 cloth repelled 98 and 96% of I. scapularis nymphs, respectively. Dose response tests with I. scapularis nymphs showed no difference in repellency among callicarpenal, intermedeol and DEET. 3% of I. 5% of I. scapularis nymphs 3 h after treatment. Neither compound was very effective at repelling A. americanum. Chen et. al. evaluated callicarpenal and intermedeol repellency using multiple choice digging bioassays against workers of red imported fire ants, Solenopsis invicta, black imported fire ants, Solenopsis richteri, and a hybrid of the two (9).

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