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729 results for “Slug”
Repeatability of energy metabolism and resistance to dehydration in the invasive slug Limax maximus
<p>Dataset from the paper "Repeatability of energy metabolism and resistance to dehydration in the invasive slug <em>Limax maximus"</em></p> <p>It contains metabolic rates and body mass assessed on 30 individuals of L. maximus in three different trials. Metabolic rates are in CO2 ml/m</p>
Dataset on: Land slugs in plant nurseries, a potential cause of dispersal in Argentina
<p>Commercial plant nurseries may serve as causes of dispersal of land snails and slugs (native and non-native) through the trade of plants and the related transport of eggs and small individuals that may pass unnoticed. Studies on the possible role of plant nurseries as a potential cause of dispersal of slugs in South America are lacking. To explore the role of garden centers, we collected and identified slugs in 12 commercial nurseries in two cities in the province of Buenos Aires, Argentina. Eight species of slugs were found. Based on our findings we validate the existence of <em>Deroceras laeve</em> and <em>Belocaulus angustipes</em> for Argentina and confirm the existence of <em>Ambigolimax valentianus</em>, which was recently cited for Argentina. We recommend that plant nurseries be regularly monitored given that snail and slug species are accidentally spread through trade in plants.</p>
FIGURE 1 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 1: Relief map of Idaho showing the localities of Kootenaia burkei new species. 1) Little Bumblebee Creek, Shoshone County (type locality), 2) Trestle Creek, Bonner County, 3) Beauty Creek, Kootenai County, 4) Heyburn State Park, Benewah County, and 5) East side of Harrison, Kootenai County. For detailed locality information see the Appendix. The lower photograph shows paratype CM 66247.
FIGURE 3 in Kootenaia burkei, a new genus and species of slug from northern Idaho, United States (Gastropoda: Pulmonata: Arionidae)
FIGURE 3. Eggs of Kootenaia burkei photographed on 10 September 2003, 62 days after being laid in the laboratory.
FIGURE 3. Phasmarhabditis bonaquaense n in Phasmarhabditis bonaquaense n. sp. (Nematoda: Rhabditidae), a new slug-parasitic nematode from the Czech Republic
FIGURE 3. Phasmarhabditis bonaquaense n. sp. light microscopy: Males A – B. A: male, tail region, lateral view; B: male, tail region, ventral view. Dauer juveniles C – D. C: DJs, tail region; D: DJs, head region.
FIGURE 2. Phasmarhabditis bonaquaense n in Phasmarhabditis bonaquaense n. sp. (Nematoda: Rhabditidae), a new slug-parasitic nematode from the Czech Republic
FIGURE 2. Phasmarhabditis bonaquaense n. sp. light microscopy: Females A – D. A: female, tail region, ventral view; B: female, tail region, lateral view; C: female, mid-body region with vulva; D: females, head region.
FIGURE 4. Phasmarhabditis bonaquaense n in Phasmarhabditis bonaquaense n. sp. (Nematoda: Rhabditidae), a new slug-parasitic nematode from the Czech Republic
FIGURE 4. Phasmarhabditis bonaquaense n. sp. scanning electron microscopy: Dauer juveniles A – B. A: DJs, head region with aphid (a) and lateral fields; B: DJs, tail region with anus, phasmid (p) and lateral fields. Females C – E. C: female, head region with labial papillae (lp), cephalic papillae (cp), small papilla-like protrusion (p) and amphid (a); D: female, tail region with phasmids (p), tail terminus broken; E: female, lateral fields. Males F. F: male, tail region with bursa and single papilla (s).
Figure 1. Onchidium typhae Buchannan, 1800 in New Distributional Records of Onchidiid Slugs from Coringa Wildlife Sanctuary, Andhra Pradesh
Figure 1. Onchidium typhae Buchannan, 1800; a) crawling animal in the mud, b) animal in the lab showing the long tentacles, c) the hyponotum and foot. Platevindex tigrinus (Stoliczka, 1869); d) animal on the trunk of the large Avicennia plant, e) animal in lab showing the papillae on the notum, f) hyponotum and foot.
Figures 46–47 in A contribution to the knowledge of the slug moths (Zygaenoidea: Limacodidae) of the Maputo Special Reserve
Figures 46–47. Female genitalia of Limacodidae. 46 – Caffricola vicina (MSR), genitalia slide No. LG 5729 (ANHRT); 47 – Caffricola vicina HT (South Africa), genitalia slide No. MFN 416 (MFN).
Figures 38–43 in A contribution to the knowledge of the slug moths (Zygaenoidea: Limacodidae) of the Maputo Special Reserve
Figures 38–43. Adults (collected in the MSR and deposited in coll. ANHRT). 38 – Chrysopoloma bicolor, male; 39 – ibidem, male; 40 – Chrysopoloma restricta, female; 41 – ibidem, male; 42 – ibidem, male; 43 – ibidem, male.
Figures 26–37 in A contribution to the knowledge of the slug moths (Zygaenoidea: Limacodidae) of the Maputo Special Reserve
Figures 26–37. Adults (collected in the MSR and deposited in coll. ANHRT). 26 – Zinara cymatoides, female; 27 – ibidem, male; 28 – Micraphe lateritia, male; 29 – ibidem, male; 30 – Neomocena convergens, male; 31 – ibidem, male; 32 – ibidem, male; 33 – Trogocrada deleter, male; 34 – ibidem, male; 35 – Niphadolepis auricincta, male; 36 – ibidem, male; 37 – Unidentified Limacodinae sp., male.
Figures 14–25 in A contribution to the knowledge of the slug moths (Zygaenoidea: Limacodidae) of the Maputo Special Reserve
Figures 14–25. Adults (collected in the MSR and deposited in coll. ANHRT unless otherwise stated). 14 – Scotinochroa inconsequens, male; 15 – ibidem, male; 16 – Ctenolita habenichti, male; 17 – Latoia intermissa, male Syntype (NHMUK); 18 – Latoia intermissa, male; 19 – Latoia albicosta, male Syntype (NHMUK); 20 – Latoia albicosta, male; 21 – Latoia latistriga, male; 22 – ibidem, female; 23 – Latoia vivida, female; 24 – ibidem, male; 25 – ibidem, male.
Figures 1–13 in A contribution to the knowledge of the slug moths (Zygaenoidea: Limacodidae) of the Maputo Special Reserve
Figures 1–13. Adults (collected in the MSR and deposited in coll. ANHRT). 1 – Caffricola vicina, female; 2 – ibidem, male; 3 – ibidem, male; 4 – G. velutina, female; 5 – ibidem, male; 6 – ibidem, male; 7 – ibidem, male; 8 – Halseyia biumbrata, male; 9 – ibidem, male; 10 – Macroplectra rufopallens, male; 11 – ibidem, male; 12 – Parapluda invitabilis, female; 13 – ibidem, male.
Figures 44–45 in A contribution to the knowledge of the slug moths (Zygaenoidea: Limacodidae) of the Maputo Special Reserve
Figures 44–45. Male genitalia of Limacodidae (a: clasping apparatus; b: phallus). 44 – Caffricola vicina (MSR), genitalia slide No. LG 5728 (ANHRT); 45 – Caffricola vicina PT (South Africa), genitalia slide No. MFN 417 (MFN).
Figures 48–49 in A contribution to the knowledge of the slug moths (Zygaenoidea: Limacodidae) of the Maputo Special Reserve
Figures 48–49. Male genitalia of Limacodidae (a: clasping apparatus; b: phallus). 48 – Latoia intermissa (MSR), genitalia slide No. TT 020 (ANHRT); 49 – Latoia "albicosta" (MSR), genitalia slide No. TT 023 (ANHRT).
Fig. 2 in Fast Recent Expansion Of The Spanish Slug (Gastropoda, Stylommatophora, Arionidae) Across Ukraine
Fig. 2. Distribution of the Spanish slug in Ukraine. Black circles — anatomically confirmed locations; empty circles — by external view only.
Fig. 2 in Comparative Karyotype Analysis Of Slugs Of The Genus Arion (Gastropoda, Pulmonata, Arionidae)
Fig. 2. Chromosomes of Arion spp. in the diakinesis (meiosis) (n): 1 — A. distinctus; 2 — A. fasciatus; 3 — A. fuscus.
Fig. 1 in Comparative Karyotype Analysis Of Slugs Of The Genus Arion (Gastropoda, Pulmonata, Arionidae)
Fig. 1. Chromosomes of Arion spp. in the mitotic metaphase (2n): 1 — A. distinctus; 2 — A. lusitanicus s. l.; 3 — A. fuscus, 4 — A. fasciatus.
Figs 2–4 in Occurrence And Abundance Of Invasive And Native Arion Slugs In Three Types Of Habitats In Urban Area Of Wrocław (Sw Poland)
Figs 2–4. Sampled habitat types: 2 = natural habitat in forest Las Pilczycki (locality no 2); 3 = semi-natural habitat with watercourse, the Dolna Oława in Park Wschodni (locality no
Fig. 1 in Occurrence And Abundance Of Invasive And Native Arion Slugs In Three Types Of Habitats In Urban Area Of Wrocław (Sw Poland)
Fig. 1. Location of sampling sites in Wrocław (see Table 1) and map of administrative division of Poland. Symbols indicate the type of habitat. Colours indicate species and hybrids
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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