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The use of permethrin to control an outbreak of hen fleas (Ceratophyllus gallinae).

Complaints from workers suffering from insect bites led to the investigation of three broiler breeder houses. These houses were found to be infested with the hen flea, Ceratophyllus gallinae. Large numbers of adult fleas and larvae were extracted by Tullgren funnel from samples of wood shavings used as nest box material. Lower numbers were extracted from the litter under these nest boxes. A pilot trial using infested nest boxes and floor litter showed good control of adult fleas and larvae could be obtained using a .25% spray prepared from a permethrin water dispersable powder. In more extensive trials the following year, almost complete control of hen fleas and larvae was obtained following monthly treatments of nest boxes with a .125% permethrin spray or a 1% permethrin powder.

Aerosols↗

[Characteristics of distribution of fleas from small mammals and birds in the southern taiga of Priirtysh'ie].

The analysis of the landscape distribution of fleas from small mammals and birds in the southern taiga of Priirtishje is given. According to their abundance and faunistic composition the population of fleas from small mammals can be arranged into four groups: fleas of forest floodland landscape, those of forest-meadow floodland landscape, fleas of settlements and bogs.

Animals↗

Dose titration of an injectable formulation of lufenuron in cats experimentally infested with fleas.

OBJECTIVES: To identify the lowest single dose of lufenuron injected s.c. that results in a 90% disruption of the flea (Ctenocephalides felis) life cycle for 6 months in cats. ANIMALS: 40 domestic shorthair cats (20 males, 20 females) between 5 and 7 months old. PROCEDURE: Cats were randomly assigned to 1 of 5 eight-cat groups and experimentally infested with C. felis on days -8, -7, -6, and -4. On day 0, cats in the 4 treatment groups were treated with an injectable formulation of lufenuron at doses of 2.5, 5, 10, or 20 mg/kg of body weight, respectively. Control cats received the injectable formulation without lufenuron. Experimental infestations were repeated and flea eggs collected at various intervals for 196 days after treatment. Eggs were placed in media and incubated in an insectary for 28 days to determine effects of injectable lufenuron on egg and larval development. Number of adults that emerged from eggs were compared among groups. RESULTS: Lufenuron injected once at a dose of 10 or 20 mg/kg, but not at 2.5 or 5 mg/kg, resulted in a 90% decrease in number of adult fleas emerging from eggs for 196 days after treatment. CONCLUSIONS AND CLINICAL RELEVANCE: Results indicate that control of flea egg and larval development for at least 6 months can be achieved in cats with a single s.c. injection of lufenuron (10 mg/kg). The injectable formulation may provide veterinarians and cat owners an alternative to the tablet formulation of lufenuron.

Animals↗

Infection and seroconversion of cats exposed to cat fleas (Ctenocephalides felis Bouché) infected with Rickettsia felis.

Cats with no prior exposure to cat fleas were exposed to fleas infected with Rickettsia felis and monitored monthly for seroconversion via an indirect fluorescent assay (IFA). Each of 12 cats continually infested with fleas, seroconverted by four months post-exposure. Three of six cats fed on by 50 fleas for 15 minutes once per week also seroconverted by month four. Rickettsia felis DNA was detected by PCR in the blood of five of the 16 cats.

Animals↗

Study of rickettsioses in Slovakia. II. Infestation of fleas and mites in mole nests in some localities in Central Slovakia with C. burneti and Rickettsiae belonging to the spotted fever (SF) group.

Fleas and mites obtained from 115 mole nests in Central Slovakia from an area where Q fever and rickettsiosis due to rickettsie of the SF occur, from the border of this area and apart from it, were tested for infestation with rickettsiae by the method of isolation of rickettsiae on chick embryo yolk sacs, by the method of detection of rickettsiae on smears from the arthropods using immunofluorescence, by the method of exposure of albino mice and Apodemus flavicollis to mole nests and by the method of inoculation of suspension from the arthropods to albino mice. In the latter two methods, infestation of the arthropods was assessed according to the formation of antibodies in the mice. It has been found that fleas and mites in all three areas under test are infected with C. burneti and with rickettsia of the SF group. C. burneti was currently detected in the focus of rickettsioses and in the localities situated in its borders while only one case was observed apart from the focus. Rickettsiae of the SF group were found in fleas and mites in all areas tested showing no greater percentual differences. The method of detection of rickettsia in smears from the arthropods using the immunofluorescence technique and antibody response in mice inoculated with infected arthropods was found to be the most effective in these studies. On the basis of the obtained results the authors believe that mites and fleas living in mole nests participate in the circulation of both species of rickettsiae in nature in the transfer of rickettsiae among small mammals. The question whether these arthropods are a reservoir, a biological or a mechanical vector, still remains open.

Animals↗

The effect of behavioural interactions on the transfer of fleas (Siphonaptera) between two rodent species.

The transfer of fleas between the house mouse, Mus musculus, and the midday jird, Meriones meridianus, through social contacts was studied by performing interspecific dyadic encounters on a neutral arena. M. meridianus and M. musculus exchanged parasites through social contacts. The intensity of this exchange was higher between mice and adult male and young jirds than between mice and adult female jirds. The pattern of behavioural interactions was the main determinant of the intensity of flea exchange. Adult female jirds were highly aggressive towards mice. In contrast, interactions between male and young jirds and mice were mainly cohesive and resulted in higher frequency of flea transfer. The proportion of fleas transferred was positively correlated with the number and cumulative duration of tactile contacts between opponents in dyads.

Aggression↗

[Characteristics of basic phenoperiods of fleas--parasites of small and mountain susliks in the Northern Caucasus].

For the fleas of sousliks of the North Caucasus, whose imagoes are in nature throughout a year, the authors identify three phenoperiods: 1) a phenoperiod of gonotropic activity (in fleas that have two generations, it consists of a phenophase of multiplication of second-generation imagoes of a previous year and of that of multiplication of first-generation imagoes of a current year; 2) a phenoperiod of preparation for gonotropic hibernation; 3) a phenoperiod of gonotropic hibernation. In the fleas that exist as imagoes for a short period of a year, in spring and summer, the authors single out two phenoperiods: imaginal and preimaginal that consists of a phenophase of flea existance at the stages of metamorphosis and a phenophase of imago cocooning.

Animals↗

[The seasonal dynamics of fleas (Siphonaptera) on bank voles (Clethrionomys glareolus) in the north part of Novgorod region].

The twelve flea species were revealed on bank voles. Only four of them (Amalaraeus penicillige, Ctenophthalmus uncinatus, Megabothris turbidus, Peromescopsylla bidentata) were abundant in some seasons of the year. Four other species (Ct. agyrtes, Hystrichopsylla talpae, P. silvatica, Rhadinopsylla integella) are the parasites of bank vole too but their numbers were always low in the study area. The four last species (Amphypsylla rossica, M. walkeri, Doratopsylla dasycnema, Palaeopsylla soricis) are not peculiar to bank vole. They occurs on it occasionally from other animals--the voules of Mucrotus and shrews. The most species diversity of fleas on bank vole was observed at the period from August to October, the least one--in late winter, spring and early summer. The total abundance indices of fleas on the voles (mean number of the insects per host) ranged in different months from 0.17 to 5.65. The time of minimum flea numbers was August-September. The peak abundance was reached in springtime (March-April).

Animals↗

[Notes on fleas (Siphonaptera) in plague foci on the Tay Nguyen plateau (Vietnam)].

The fleas of wild and commensal small mammals, domestic animals (dogs, cats) and free-living flea forms in houses have been collected in plague nidi of Tay Nguyen plate, Dak-Lak province, Vietnam. Pulex irritans, Ctenocephalides felis felis, Ct. felis orientis were found in the houses on dogs, cats and on the ground floor. Commensal rats in populated areas were infested by Xenopsylla cheopis and rarely by Lentistivalius klossi. The agricultural zone was inhabited by both home and wild animals such as commensal, savannah and forest-dwelling small mammals. The flea fauna of this zone is presented by X. cheopis and L. klossi. In the tropical forest surrounding villages four of the flea species were found: X. vexabilis, a specific parasite of the forest-dwelling rat Berylmys berdmorei, L. klossi found on six species of forest small mammals, Acropsylla girshami from Berylmys bowersii and Pariodontis subjugis from Hystrix brachyura. The agricultural zone is the most possible place of commensal and forest-dwelling small mammals contact, where the latter can get plague microbe.

Animals↗

[Influence of a temperature factor on the vector capacity of the flea Citellophilus tesquorum altaicus].

The impact of temperatures (2-3 to 23-25 degrees C) of flea keeping on their vector capacity was studied in the experiment. In hibernated fleas, the relationship of their vector capacity to the temperature of their keeping, estimated by the level of plague block in species and by the case rates of animals was insignificant, i.e. there is a trend for these indices to increase with elevated temperatures. In the fleas of current years breeding, the rate of block significantly increased with a rise of temperatures from 5-6 to 23-25 degrees C. There were also increases in the number of transmissions of a plague pathogen to susliks and in the number of animals with generalized infection with a rise in temperature up to 16-18 degrees C. The findings and constructed regression equations may predict the pattern of changes in the vector capacity of the flea C. tesquorum altaicus in the study range of temperatures in the enzootic area of a Tuva natural focus of plague.

Animals↗

[Seasonal dynamics of infecting ability of the flea Citellophilus tesquorum altaicus in the Tuva natural focus of the plague].

The infecting ability of the fleas Citellophilus tesquorum altaicus loff, 1936, the main plague vectors in the Tuva natural focus, was experimentally studied in different periods of the epizootic season. Seasonal dynamics in the efficiency of infecting the long-tailed Siberian souslik with the plague causative agent through flea bites was noticed. Seasonal differences in infectivity of the "blocked" flea bites are revealed. An increase of infected experimental animals with a generalization of infection process in the period of epizooty activation in the natural focus was observed. A resistance of the long-tailed Siberian souslik to the plague agent infection through flea bites in the spring season was registered.

Animals↗

Rodent-flea-plague relationships at the higher elevations of San Diego County, California.

Rodent-flea-plague relationships were examined at sites located at higher elevations of San Diego County during 1991-2002. The most frequently sampled rodents were the California ground squirrel, Spermophilus beecheyi, and white-footed mice, Peromyscus spp. Higher seasonal mean dependent variables (prevalences of squirrels and indices of O. montana), higher mean amounts of seasonal rainfall, and lower seasonal mean ambient temperatures were found at sites during 1991--1993 compared with 2000--2002. Levels of plague antibody indicate that squirrels seroconverted at most sites during spring/early summer when exposed to infected fleas when cleaning out burrows following hibernation, when interacting more with other squirrels occurred establishing home ranges, and when dispersing juveniles occupied abandoned burrows containing old nests. The majority of squirrels (35/41) were reported seropositive at Heise County Park (elev. 1,281 m) during 1996, 2001, and 2002. This may reflect fewer fleas biting squirrels more often when squirrels spent more time below-ground in order to avoid higher ambient temperatures. In contrast, most squirrels (12/13) were reported seropositive at two higher sites (elev. 1,584 and 1,641 m) on Palomar Mountain during 1993--1996 when there were higher mean dependent variables and amounts of seasonal rainfall compared with 1999--2002. This increased rainfall may have benefited host and flea populations and thus plague transmission. Seasonal indices were usually reduced after dusting squirrel burrows with 2% diazinon dust. Findings also indicated that S. beecheyi is a primary reservoir for plague at the higher elevations of these and other sites in southern California, and that the deer mouse, Peromyscus maniculatus, and other Peromyscus spp. were not major host reservoirs at the sites sampled.

Analysis of Variance↗

[Flea fauna and ecology of jerboas in the southern Balkhash region (Aphaniptera)].

22 species of fleas have been found on five species of jerboa in southern Pribalkhashje. Of them 8 species are parasites of jerboa, 13 -- of gerbils and one -- of birds. Most abundant are three species of fleas of jerboa: M. lenis, M. eucta and O. volgensis. Of gerbils' fleas representatives of the genus Xenopsylla were dominant on jerboa. The greatest indices of abundance have been reported for A. severtzovi, A. elator, A. acontion. The gerbils' fleas are more abundant on D. sagitta than on the other species.

Animals↗

Polygenic detection of Rickettsia felis in cat fleas (Ctenocephalides felis) from Israel.

The presence of Rickettsia felis, an emerging bacterial pathogen, was investigated in 79 cat flea (Cteno-cephalides felis) pools from Israel (5 to 20 fleas each) by polymerase chain reaction (PCR) and sequencing of 5 different genes. Amplified targets included both metabolic (gltA and fusA) and surface antigen (ompA, ompB, and the 17-kDa antigen) genes. R. felis DNA was detected in 7.6% of the flea pools. Two genotypes similar in their housekeeping gene sequences but markedly different in their surface antigenic genetic milieus were characterized. This is the first detection of this flea-transmitted rickettsia within its vector in Israel and the Middle East. Although no clinical case has been reported in human beings in Israel to date, these findings suggest that this infection is prevalent in Israel.

Amino Acid Sequence↗

Bartonella and Rickettsia in fleas and lice from mammals in South Carolina, U.S.A.

Species in the genera Bartonella and Rickettsia are vector-borne pathogens of humans and domestic animals. The natural reservoirs and enzootic transmission cycles of these bacteria are poorly known in South Carolina. Thirteen species of lice and fleas were collected from urban animals and screened for the presence of Bartonella and Rickettsia by PCR amplification using genus-specific primers. Bartonella henselae was present in cat fleas (Ctenocephalides felis) from Virginia opossums (Didelphis virginiana) and a novel genotype of Bartonella was detected in Orchopeas howardi from an eastern gray squirrel (Sciurus carolinensis). We detected R. typhi and three novel genotypes Rickettsia in other species of fleas and lice. Rickettsia typhi, the causative agent of murine typhus, was detected in two pools of lice (Enderleinellus marmotae) from the woodchuck (Marmota monax). Cat fleas harbored one of two novel genotypes of Rickettsia. A third novel Rickettsia was detected in Orchopeas howardi from an eastern gray squirrel.

Animals↗

[Fleas and diseases transmissible to man].

Fleas are wingless insects that parasitize mammals and more rarely birds. They are able to jump and may bite people. Adult fleas are hematophagous. The impact of fleas on public health is related to their ability to act as vectors for transmission of infectious agents during blood meals. The purpose of this article is to describe fleas and the diseases that they transmit to humans. Special focus is placed on epidemiological aspects.

Animals↗

[Questionnaire on the incidence and control of fleas in dogs and cats presented to German small animal practices].

2590 small animal practitioners in Germany have been asked by a questionnaire from which 1694 (65.4%) replied. 1186 of these veterinarians (70%) often see ectoparasite infestation. Fleas are predominant and occur on cats (1016/60%), followed by dogs (424/25%), small mammals and birds (254/15%). Flea infestations on dogs and cats are observed throughout the year, but the prevalences are generally higher during the summer season. The results reveal that topically administered spot-on formulations is the most popular method used for flea control. The most common applied antiparasitic substances both in dogs and in cats were fipronil (535/31.6%; 690/40.7%), imidacloprid (290/17.1%; 417/24.6%) and selamectin (267/15.8%; 319/18.8%). Due to 771 (45.5%) of the answering veterinarians the animal owner himself, and according 694 (41%) respectively 229 (13.5%) of the replies the veterinarian or the veterinary technician applies the antiparasiticide onto the skin. 1457 veterinarians (86%) administer compounds against adult fleas and their developmental stages also in the animal's environment.

Animals↗

[The ability of flea species on the common vole from mountainous Dagestan to transmit and preserve the causative agent of plague].

The infection ability and terms of preservation of plague microbe in fleas of common vole from Dagestan high-mountain plague focus (Frontopsylla causasica, Megabothris turbidus, Ctenophthalmus intermedius and Amphipsylla rossica) was studied experimentally. Block formation and transmission of the infection by F. caucasica and M. turbidus was observed. The transmission of plague microbe by Ct. intermedius fleas was first carried out. These species of fleas preserve the infection for a long time. Experiments with fleas of A. rossica yielded negative results.

Animals↗