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213 results for “species monitoring”
Figure 12 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 12. Paraonis lobulata sp. nov. holotype, paratype and non-type specimens: (a) antero-dorsal view of body, arrows pointing to lobated shapes of segments, paratype (ESFM-POL/2019-12); (b) antero-ventral view of body (ESFM-POL/2019-12); (c) ventral view of body, branchial region (ESFMPOL/2019-12); (d) dorsal view of prostomium (ESFM-POL/2018-124); (e) lateral margin of prostomium, dorsal side (ESFM-POL/2018-124); (f) modified neurochaetae on chaetiger 63 (ESFM-POL/2019-11); (g) bilobated posterior lip (ESFM-POL/2019-12); (h) notopodial papilla on chaetiger 12 (ESFM-POL/2017- 157); (i) lateral view of branchial region, unlabeled arrow pointing to lobe-shaped segment (ESFMPOL/2019-12); (j) posterior body region, unlabeled arrow pointing to lobe-shaped segment (ESFMPOL/2019-11); (k) dorsal view of chaetiger 12, with branchia and notopodial papilla (ESFM-POL/2017- 157). Scale bar: a = 121 µm; b = 96 µm; c = 155 µm; d = 71 µm; e = 71 µm; f = 44 µm; g = 74 µm; h = 16 µm; i = 30 µm; j = 255 µm; k = 130 µm. Abbreviations. bran: branchia; cb: ciliary band; co: cheek organ; no: nuchal organ; np: notopodial papilla; ntpcl: notopodial postchaetal lobe; per: peristomium; vl: ventral lobe.
Figure 10 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 10. Leitoscoloplos mediterranea sp. nov. paratype (ESFM–POL/2014–488): (a) abdominal parapodium, dorso-lateral view; (b) abdominal parapodium, lateral view; (c) thoracic chaetigers, lateral view; (d) middle abdominal chaetigers, lateral view. Scale bar: a = 200 µm; b = 75 µm; c = 101 µm; d = 217 µm. Abbreviations. br: branchia; brc: branchial ciliae; Crcap: crenulated capillaries; neP: neuropodium; nePsL: neuropodial postchaetal lobe; noPsL: notopodial postchaetal lobe; sp: subpodial papillae; sPod flange: subpodial flange; vC: ventral cirrus.
Figure 8 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 8. Leitoscoloplos mediterranea sp. nov. paratypes: (a) anterior abdominal segment, cross section, anterior view (ESFM–POL/2015–304); (b) posterior abdominal parapodium, anterior view (ESFM–POL/2017–204); (c) thoracic parapodium, anterior view (ESFM–POL/2017–204); (d) crenulated capillary chaetae (a: in thoracic region; b: in anterior abdominal region; c: in posterior abdominal region). Scale bar: a = 0.5 mm; b = 0.36 mm; c = 0.45 mm; d(a) = 18 µm; d(b) = 14 µm; d(c) = 20 µm. Abbreviations. br: branchia; brc: branchial ciliae; br w/Lat lobe: branchia with a lateral lobe; Crcap: crenulated capillaries; neP: neuropodium; nePsL: neuropodial postchaetal lobe; neS: neuropodial chaeta; noPsL: notopodial postchaetal lobe; noS: notopodial chaeta; sPod flange: subpodial flange.
Figure 19 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 19. Chaetozone elakata ESFM-POL/2018-073 and ESFM-POL/2013-1430: (a) anterior end, dorsolateral view; (b) anterior end, dorsal view; (c) anterior end, dorsal view, stained with methyl green; (d) posterior parapodium, cross section. Scale bar: a = 0.96 mm; b = 0.72 mm; c = 0.98 mm; d = 0.14 mm.
Figure 7 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 7. Leitoscoloplos mediterranea sp. nov. paratype (ESFM-POL/2014-285): (a) anterior end, dorsal view; (b) anterior end, lateral view; (c) anterior end, lateral view with proboscis everted; (d) posterior end, dorso-lateral view. Scale bar: a = 0.5 mm; b = 0.63 mm; c = 0.42 mm; d = 0.27 mm. Abbreviations. aC: anal cirrus; an: anus; Crcap: crenulated capillaries; mo: mouth; neP: neuropodium; nePsl: neuropodial postchaetal lobe; noPsl: notopodial postchaetal lobe; nuO: nuchal organ; per: peristomium; pr: prostomium; prob: proboscis; sp: subpodial papillae; sPod flange: subpodial flange.
Supplementary material 1 from: Maurizi E, Campanaro A, Chiari S, Maura M, Mosconi F, Sabatelli S, Zauli A, Audisio P, Carpaneto GM (2017) Guidelines for the monitoring of Osmoderma eremita and closely related species. In: Carpaneto GM, Audisio P, Bologna MA, Roversi PF, Mason F (Eds) Guidelines for the Monitoring of the Saproxylic Beetles protected in Europe. Nature Conservation 20: 79-128. https://doi.org/10.3897/natureconservation.20.12658
Scheme of protocol suggested by MIPP to monitoring the O. eremita population and list of materials to building the pheromone traps, BCWT :
Supplementary material 1 from: Rosa G, Penny S, Andreone F, Crottini A, Holderied M, Rakotozafy L, Schwitzer C (2014) A new species of the Boophis rappiodes group (Anura, Mantellidae) from the Sahamalaza Peninsula, northwest Madagascar, with acoustic monitoring of its nocturnal calling activity. ZooKeys 435: 111-132. https://doi.org/10.3897/zookeys.435.7383
Calls of Boophis ankarafensis sp. n. emitted from streamside vegetation in Ankarafa Forest.: Explanation note: Calls of Boophis ankarafensis sp. n. emitted from streamside vegetation in Ankarafa Forest (Sahamalaza – Iles Radama National Park). Calls consist of multi-pulsed trill notes (type 1) and 1-3 pulsed click notes (type 2). Cut 1: chorus recorded on 13 October 2011, 18:34 h, 26.7 °C; Cut 2: chorus with background calls of Cophyla berara recorded on 30 December 2011 at 18:44 h, 28.4 °C.
Fig. 1 in Coleoptera Monitoring Following Prescribed Fire Disturbance Yields 43 New State Species Records for Kentucky, USA
Fig. 1. Traps used for specimen collection in Berea College Forest, Madison County, Kentucky, USA. Lindgren flight intercept traps placed in: A) Burned forest, B) Unburned forest. C) Pitfall trap placed in burned forest, D) Burn Unit 1 photographed 48 h post-burn.
Data from: Active sound production of scarab beetle larvae opens up new possibilities for species-specific pest monitoring in soils
Root-feeding Scarabaeidae larvae can pose a serious threat to agricultural and forest ecosystems, but many details of larval ecology are still unknown. We developed an acoustic data analysis method based on active sound production by larvae (i.e. stridulations) for gaining new insights into larval ecology. In a laboratory study, third instar larvae of the Common Cockchafer (Melolontha melolontha) (n = 38) and the Forest Cockchafer (M. hippocastani) (n = 15) kept in soil-filled containers were acoustically monitored for 5 min each, resulting in the first known stridulation recordings for each species. Subsequent continuous monitoring of three M. hippocastani larvae over several hours showed that a single larva could stridulate more than 70 times per hour, and stridulation rates increased drastically with increasing larval abundance. The new fractal dimension-based data analysis method automatically detected audio sections with stridulations and provided a semi-quantitative estimate of stridulation activity. It is the first data analysis method specifically targeting Scarabaeidae larvae stridulations in soils, enabling for the first time non-invasive species-specific pest monitoring.
Figure 1 in Molecular data extend Australian Cricotopus midge (Chironomidae) species diversity, and provide a phylogenetic hypothesis for biogeography and freshwater monitoring
Figure 1. Schematic phylogeny based on a majority rule consensus maximum-likelihood (ML) topology for the reduced data set. Relevant nodal support values are shown, which correspond to Bayesian posterior probabilities and ML bootstrap support, respectively; –, nodes unresolved by ML; *, posterior probabilities of 1.00 or bootstrap support of 100. Thick branches denote Australian clades; thin branches are non-Australian taxa. Geographical distributions and tolerances to ecosystem impact for Australian Cricotopus species are shown according to the inset legend, with the forms of divergent species coded based on assumptions made from the current sampled localities.
Matrix aggregation of species of Phyla Annelida (Polychaeta), Mollusca, Arthropoda (Decapoda, Stomatopoda, Amphipoda, and Chelicerata), and Echinodermata registered of the Caribbean Sea and Gulf of Mexico region by Ocean Biodiversity Information Systems of the research "Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) for capturing the biological diversity of two coral reefs in the Yucatán Península, México"
<p>This database consists of an aggregation matrix of species from Ocean Biodiversity Information Systems using as geographic filters the Caribbean Sea region (ID 34287) and the Gulf of Mexico region (ID 34287) nomenclature and hierarchical classification of each Phyla from World Register of Marine Species used for the calculation of average taxonomic distinction of species belonging to the Phyla Annelida (Polychaeta), Mollusca, Arthropoda (Decapoda, Stomatopoda, Amphipoda, and Chelicerata), and Echinodermata associated to Autonomous Reefs Monitoring Structures from the research “Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) to estimate cryptic diversity in two coral reefs of the Yucatan Península, México”</p> <p><strong>*Corresponding autor: </strong>edlinguerra@gmail.com</p> <p>BIS Ocean Biodiversity Information System. Available online: <a href="http://www.iobis.org/">www.iobis.org</a>.</p> <p>Horton, T.; Gofas, S.; Kroh, A.; Poore, G.C.B.; Read, G.; Rosenberg, G.; Stöhr, S.; Bailly, N.; Boury-Esnault, N.; Brandão, S.N.; et al. Improving nomenclatural consistency: A decade of experience in the World Register of Marine Species. <em>Eur. J. Taxon.</em> <strong>2017</strong>, <em>2017</em>, doi:10.5852/ejt.2017.389.</p> <p><span lang="EN-US">was produced in collaboration with the Biodiversidad Marina de Yucatán project. </span><a href="https://www.bdmy.org.mx/carteles-publicaciones/" target="_blank" rel="noopener">https://www.bdmy.org.mx/,</a> Universidad Nacional Autonoma de México and Escuela Nacional de Estudios Superiores</p>
Bold Park reptile species capture data for: Decadal abundance patterns in an isolated urban reptile assemblage: Monitoring under a changing climate
<p class="MsoNormal"><span>Fenced pitfall trapping in four sampling sites <span>representing different habitats and fire history</span> over the primary reptile activity period for 35 consecutive years with over 17000 individuals captured during 3300 days of sampling; the trapping regime was modified for the last 28 years.</span></p>
Figure 12 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 12. Adult Varanus tanimbar sp. nov. (WAM 109896) Lorulun, Yamdena Island (photo Richard How).
Figure 11 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 11. Juvenile Varanus tanimbar sp. nov. caught by local hunters at Saumlaki, Yamdena (photo VW).
Figure 3 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 3. Dorsal, ventral and head profile of the holotype (ZMUT Sa197) of Varanus louisiadensis sp. nov.
Figure 2 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 2. Linear discriminant analysis showing morphospaces for members of the Varanus indicus group based on scalation characters P, Q, R, S, T, N, XY and m.
Figure 1 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 1. Map of the western Pacific region showing the geographic ranges of the species of the Varanus indicus group.
Figure 10 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 10. Adult Varanus tanimbar sp. nov. male killed by local hunters near Saumlaki, Yamdena (photo VW).
Figure 7 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 7. Map of the Papuan region (A) with the Tanimbar Islands (B) and Louisiade Archipelago (C) enlarged. The type locality of Varanus louisiadensis sp. nov. on Misima island is indicated with a filled circle, and additional collection localities for the paratypes on Sudest and Rossell are indicated by open circles. The type locality of V. tanimbar sp. nov., Latdalam, is indicated by a filled star, and the collection locality of one of the paratypes at Adaut, Selary Island, with an open star.
Data from: Long-term monitoring data provide evidence of declining species richness in a river valued for biodiversity conservation
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