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49 results for “Haemaphysalis”
Figure 4 in Ticks (Acari: Ixodida) of the genus Haemaphysalis Koch, 1844 in Senegal: a review of host associations, chorology, and identification
Figure 4 Collecting sites ofHaemaphysalis of the leachi group indicated in red; blue dots show localization of all other collection sites: A – Haemaphysalis (Rhipistoma) leachi; B – Haemaphysalis (Rhipistoma) moreli; C – Haemaphysalis (Rhipistoma) muhsamae; D – Haemaphysalis (Rhipistoma) spinulosa.
Figure 3 in Ticks (Acari: Ixodida) of the genus Haemaphysalis Koch, 1844 in Senegal: a review of host associations, chorology, and identification
Figure 3 Collecting sites of Haemaphysalis (Rhipistoma) houyi indicated in red; blue dots show localization of all other collection sites.
Figure 2 in Ticks (Acari: Ixodida) of the genus Haemaphysalis Koch, 1844 in Senegal: a review of host associations, chorology, and identification
Figure 2 Collecting sites ofHaemaphysalis (Ornithophysalis) hoodi indicated in red; blue dots show localization of all other collection sites.
Figure 1 in Molecular identification of Haemaphysalis sulcata (Acari: Ixodidae) larval stages collected using the Berlese funnel in Northern Iran
Figure 1. Dorsal aspect of a tick larvae sample collected in this study.
Environmental variables serve as predictors of the exotic and invasive Asian longhorned tick (Haemaphysalis longicornis Neumann): an approach for targeted tick surveillance
<p>Since the 2017 discovery of established populations of the Asian longhorned tick, (<em>Haemaphysalis longicornis </em>Neumann) in the United States, populations continue to be detected in new areas. For this exotic and invasive species, capable of transmitting a diverse repertoire of pathogens and blood-feeding on a variety of host species, there remains a lack of targeted information on how to best prepare for this tick and understand when and where it occurs. To fill this gap, we conducted two years of weekly tick surveillance at four farms in Tennessee (three <em>H. longicornis</em>-infested and one without) to identify environmental factors associated with each questing life stage, to investigate predictors of abundance, and to determine the likelihood of not collecting ticks at different life stages. A total of 46,770 ticks were collected, of which 12,607 <em>H. longicornis</em> and five other tick species were identified. Overall, abundance of <em>H. longicornis </em>was associated with spring and summer seasons, forested environments, relative humidity and barometric pressure, sunny conditions, and in relation with other tick species. The likelihood of not collecting <em>H. longicornis</em> was associated with day length and barometric pressure. Additional associations for different life stages were also identified and included other tick species, climatic variables, and environmental conditions. Here, we demonstrated that environmental variables can be useful to predict the presence of questing <em>H. longicornis</em> and provide ideas on how to use this information to develop a surveillance plan for different southeastern areas with and without infestations.</p>
Environmental variables serve as predictors of the exotic and invasive Asian longhorned tick (Haemaphysalis longicornis Neumann): an approach for targeted tick surveillance
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Detection and response to <em>Haemaphysalis longicornis</em> and <em>Theileria orientalis</em> Ikeda on a cow-calf farm in Tennessee (USA)
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Calculation of R2 regression values after square root transformation of the data in intact condition of Haemaphysalis darjeeling
<p>Table: Calculation of R2 regression values after square root transformation of the data in intact condition of <em>Haemaphysalis darjeeling</em></p>
FIGURE 8 in Description of a new species of Haemaphysalis Koch, 1844 (Acari: Ixodidae), a parasite of hares and rabbits (Lagomorpha: Leporidae) in Texas, Oklahoma and Colorado (USA), that was misidentified as H. leporispalustris (Packard, 1869) for more than a century
FIGURE 8. Haemaphysalis leporispalustris (Packard, 1869), scanning electron micrographs of female (A, C, E, G, I: Camp Bullis, Bexar, Texas, USA, USNMENT 01784453; B, D, F, H, J: Bitterroot Valley, Ravalli, Montana, USA, USNMENT 01784454). A, B, Gnathosoma, dorsal view; C, D, Gnathosoma, ventral view; E, F, Gnathosoma, anteroventral view; G, H, Ventral spur of palpal segment III; I, J, Coxa I. Scale-bars: A–F, I, J, 0.1 mm; G, H, 0.05 mm.
FIGURE 6 in Description of a new species of Haemaphysalis Koch, 1844 (Acari: Ixodidae), a parasite of hares and rabbits (Lagomorpha: Leporidae) in Texas, Oklahoma and Colorado (USA), that was misidentified as H. leporispalustris (Packard, 1869) for more than a century
FIGURE 6. Haemaphysalis leporispalustris (Packard, 1869), scanning electron micrographs of male and female (A, C, E, G, I: Camp Bullis, Bexar, Texas, USA, USNMENT 01784453; B, D, F, H, J: Bitterroot Valley, Ravalli, Montana, USA, USNMENT 01784454). A, B, Conscutum of male, dorsal view; C, D, Conscutum of male, dorsolateral view; E, F, Conscutum of male showing punctations and setae, dorsal posterolateral surface; G, H, Scutum of female, dorsal view; I, J, Scutum of female, dorsolateral view. Scale-bars: A–D, G–J, 0.2 mm; E, F, 0.1 mm.
FIGURE 1. Haemaphysalis mariae n in Description of a new species of Haemaphysalis Koch, 1844 (Acari: Ixodidae), a parasite of hares and rabbits (Lagomorpha: Leporidae) in Texas, Oklahoma and Colorado (USA), that was misidentified as H. leporispalustris (Packard, 1869) for more than a century
FIGURE 1. Haemaphysalis mariae n. sp., scanning electron micrographs of male (Camp Bullis, Bexar, Texas, USA, A–C: USNMENT 01784400, D: USNMENT 01784410, paratypes). A, Conscutum, dorsal view; B, Conscutum, dorsolateral view; C, Conscutum showing punctations and setae, dorsal posterolateral surface; D, Apron. Scale-bars: A, B, 0.2 mm; C, D, 0.1 mm.
FIGURE 2. Haemaphysalis mariae n in Description of a new species of Haemaphysalis Koch, 1844 (Acari: Ixodidae), a parasite of hares and rabbits (Lagomorpha: Leporidae) in Texas, Oklahoma and Colorado (USA), that was misidentified as H. leporispalustris (Packard, 1869) for more than a century
FIGURE 2. Haemaphysalis mariae n. sp., digital photographs of male (Camp Bullis, Bexar, Texas, USA, A: USNMENT 01784410, B: USNMENT 01784400, paratypes). A, Postgenital sclerite; B, Adanal sclerites. Scale-bars: A, 0.05 mm; B, 0.1 mm.
FIGURE 9 in Description of a new species of Haemaphysalis Koch, 1844 (Acari: Ixodidae), a parasite of hares and rabbits (Lagomorpha: Leporidae) in Texas, Oklahoma and Colorado (USA), that was misidentified as H. leporispalustris (Packard, 1869) for more than a century
FIGURE 9. Map showing the known geographic distribution of Haemaphysalis mariae n. sp. Filled star shows the type-locality and filled circles show confirmed localities.
FIGURE 5. Haemaphysalis mariae n in Description of a new species of Haemaphysalis Koch, 1844 (Acari: Ixodidae), a parasite of hares and rabbits (Lagomorpha: Leporidae) in Texas, Oklahoma and Colorado (USA), that was misidentified as H. leporispalustris (Packard, 1869) for more than a century
FIGURE 5. Haemaphysalis mariae n. sp., scanning electron micrographs of female (Camp Bullis, Bexar, Texas, USA, USNMENT 01784410, paratype). A, Spiracular plate (arrows indicate orientation of spiracular plate: a, anterior; d, dorsal); B, Gnathosoma, dorsal view; C, Gnathosoma, ventral view; D, Gnathosoma, anteroventral view; E, Ventral spur of palpal segment III; F, Coxae and trochanters; G, coxa I; H, Trochanter I, dorsal view. Scale-bars: A–E, G, H, 0.1 mm; F, 0.2 mm.
Figure 2 from: Egizi AM, Robbins RG, Beati L, Nava S, Evans CR, Occi JL, Fonseca DM (2019) A pictorial key to differentiate the recently detected exotic Haemaphysalis longicornis Neumann, 1901 (Acari, Ixodidae) from native congeners in North America. ZooKeys 818: 117-128. https://doi.org/10.3897/zookeys.818.30448
Figure 2 SEM photos of male H.longicornis from a colony started with specimens from Jeju-teukbyeoljachido, Republic of Korea. (Accession # RML48803) a dorsal full body b dorsal capitulum c ventral full body d ventral capitulum.
Figure 4 from: Egizi AM, Robbins RG, Beati L, Nava S, Evans CR, Occi JL, Fonseca DM (2019) A pictorial key to differentiate the recently detected exotic Haemaphysalis longicornis Neumann, 1901 (Acari, Ixodidae) from native congeners in North America. ZooKeys 818: 117-128. https://doi.org/10.3897/zookeys.818.30448
Figure 4 SEM photos of larval H.longicornis from a colony started with specimens from Queensland, Australia (Accession # RML58949). a dorsal full body b dorsal capitulum c ventral full body d ventral capitulum.
Figure 3 from: Egizi AM, Robbins RG, Beati L, Nava S, Evans CR, Occi JL, Fonseca DM (2019) A pictorial key to differentiate the recently detected exotic Haemaphysalis longicornis Neumann, 1901 (Acari, Ixodidae) from native congeners in North America. ZooKeys 818: 117-128. https://doi.org/10.3897/zookeys.818.30448
Figure 3 SEM photos of nymphal H.longicornis from a colony started with specimens from Jeju-teukbyeoljachido, Republic of Korea (Accession # RML48803). a dorsal full body b dorsal capitulum c ventral full body d ventral capitulum.
Figure 1 from: Egizi AM, Robbins RG, Beati L, Nava S, Evans CR, Occi JL, Fonseca DM (2019) A pictorial key to differentiate the recently detected exotic Haemaphysalis longicornis Neumann, 1901 (Acari, Ixodidae) from native congeners in North America. ZooKeys 818: 117-128. https://doi.org/10.3897/zookeys.818.30448
Figure 1 SEM photos of female H.longicornis from a colony started with specimens from Jeju-teukbyeoljachido, Republic of Korea (Accession # RML48803) a dorsal full body b dorsal capitulum c ventral full body d ventral capitulum.
A microRNA profile of saliva and role of miR-375 in Haemaphysalis longicornis (Ixodida: Ixodidae)
GEO Series GSE123407. Haemaphysalis longicornis. 1 samples. Type: Non-coding RNA profiling by high throughput sequencing.
Transcriptome profile of Haemaphysalis longicornis (Acari: Ixodidae) exposed to C. citratus essential oil and citronellal
GEO Series GSE176275. Haemaphysalis longicornis. 21 samples. Type: Expression profiling by high throughput sequencing.
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