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980 results for “Coping”
data_coping
<p>Dataset associated with the paper: "<span>Coping strategies in mothers of children with autism and attention deficit hyperactivity disorder. Latent profile analysis"</span></p> <p> </p>
Cope David (c0690)
<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: Cope David<br><u>musiXplora-ID</u>: c0690<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/c0690">https://musixplora.de/mxp/c0690</a><br><u>Gender</u>: m<br><u>Date of Birth</u>: 17 May 1941<br><u>Place of Birth</u>: San Francisco<br><u>First Mentioned</u>: 1973<br><u>Sectors</u>: Hochschule, Instrumentenbau<br><u>Professions (Musical)</u>: Kompositionslehrer, Textdichter, Tonsetzer<br><u>Other Places of Activity</u>: California, Santa Cruz<br><br><br><br><u>Changelog</u>:<br> - v0.0.1: Initial Upload.<br>
Pauni (पौनि Bhandārā district) Maharashtra. Coping stone with inscription of Visamitā
<p>Pauni (पौनि Bhandārā district) Maharashtra. Coping stone with inscription of Visamitā</p>
Coping with Collapse: Functional Robustness of Coral-Reef Fish Network to Simulated Cascade Extinction
<p>Data set, codes and results related to the article "Coping with Collapse: Functional Robustness of Coral-Reef Fish Network to Simulated Cascade Extinction", accepted in the periodic Global Change Biology. Stored are the full results of site occupancy models fitted to fish data, with coral and turf algae cover as predictor variables (results published in Luza et al. 2022, Scientific Reports), and the results of the present article. The RData also contains site coordinates, and the fish traits used in trait-based analyzes.</p>
Automatic plankton image classification - can capsules and filters help coping with data set shift?
<p>This data set is related to the article 'Automatic plankton image classification - can capsules and filters help coping with data set shift?' published in 'Limnology and Oceanography: Methods' by Plonus <em>et al.</em> (2021).</p> <p>The images belong to the trainings set used to train the models in the aforementioned paper (training_) and three different additional data sets which were used to evaluate the performance of the trained models in application mode (fs446_; fs466_; fs534_). The Python-Script 'separate_files.py' can be used to move all the images in different folders for each data set and class respectively.</p>
Fig. 5 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 5: Osteology of Metynnis melanogrammus, INPA 18457, 144.8 mm SL: a. hyopalatine and opercular series; b, infraorbitals; c. hyoid arch; d. left pectoral girdle, lateral view; e. left pectoral girdle, medial view. ach, anterior ceratohyal; apal, autopalatine; ant, antorbital; br, branchiostegal rays; cle, cleithrum; cor, coracoid; dh, dorsal hypohyal; ect, ectopterygoid; end, endopterigoid; exs, extrascapular; hyo, hyomandibular; io1-5, infraorbital 1-5; iop, interopercular; mes, mesocoracoid; met, metapterygoid; op, opercle; pch, posterior ceratohyal; pcle1-3, postcleithrum 1-3; pecR, pectoral-fin rays; pop, preopercle; ptem, posttemporal; qua, quadrate; sca, scapula; scle, supracleithrum; sop, subopercle; sym, symplectic; uh, urohyal; vh, ventral hypohyal. Scale bars: 10 mm.
Fig. 8 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 8. Map of northern South America, including northern Brazil and southern Venezuela, showing distribution of Metynnis melanogrammus. The red star represents the type locality, red circles represent the paratype localities, and the black circle represents the locality on the rio Surunduri at which the live photograph of the new species (Fig. 7) was taken.
Fig. 1 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 1. Metynnis melanogrammus, Brazil, Amazonas, Maués, rio Parauari: a. INPA 52216, male, 141.3 mm SL, holotype; b. INPA 34811, female, 149.4 mm SL, paratype.
Fig. 2. Metynnis melanogrammus, INPA 18457, 144.8 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 2. Metynnis melanogrammus, INPA 18457, 144.8 mm SL. Abdominal spines: a. left lateral view; b. dorsal view. blSp, bilateral spine; bpt, basipterygium; poPvSp, postpelvic spines; prPvSp, prepelvic spines; pvR, pelvic-fin rays. Scale bars: 10 mm.
Fig. 7 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 7. Freshly collected Metynnis melanogrammus, male, not-preserved; lago do Aracu, rio Sucunduri, rio Madeira basin. Photo: A. Zenaid.
Fig. 4 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 4. Neurocranium of Metynnis melanogrammus, INPA 18457, 144.8 mm SL: a. lateral view; b. dorsal view; c. ventral view. boc, basi occipital; epBar, epiphyseal bar; epo, epiotic; exoc, exoccipital; fro, frontal; int, intercalar; lEt, lateral ethmoid; mes, mesethmoid; nas, nasal; neu, neural; olf, olfactory fossa; osph, orbitosphenoid; par, parietal; pro, prootic; psph, parasphenoid; ptf, posttemporal fossa; pto, pterotic; ptsph, pterosphenoid; soc, supraoccipital; sorb, supraorbital; sph, sphenotic; vom, vomer. Scale bar: 10 mm.
Fig. 3 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 3. Mandibular series of Metynnis melanogrammus, INPA 18457, 144.8 mm SL: a. labial and lingual view of premaxillary; b. labial and lingual view of dentary; c. maxillary. 1-5, teeth in labial row; 1'-2', teeth in lingual row; anAr, anguloarticular; ap, ascending process; dp, descending process; lm, lamellae at symphysis; lp, lateral process of premaxilla; ret, retroarticular; sy, symphyseal tooth; rt, replacement teeth. Scale bar: 10 mm.
Fig. 6 in A new Silver Dollar species of Metynnis Cope, 1878 (Characiformes: Serrasalmidae) from Northwestern Brazil and Southern Venezuela
Fig. 6. Axial skeleton of Metynnis melanogrammus, INPA 18457, 144.8 mm SL: a. dorsal fin, left lateral view; b. anal fin, left lateral view; c. caudal fin, left lateral view; d. abdominal spines, left lateral view; e. abdominal spines, dorsal view. anR, anal-fin rays; blSp, bilateral spine; bpt, basipterygium; dBs, dorsal bony stay; doR, dorsal-fin rays; dRd, distal radial; ep1-2, epural 1-2; h1-5, hypural 1-5; pCdr, principal caudalfin rays; pMRd, proximal-middle radial; poPvSp, postpelvic spines; prDSp, predorsal spine; prPvSp, prepelvic spines; pU2-3, preural centrum 2-3; pvR, pelvic-fin rays; U, compound ural centrum. Scale bars: 10 mm.
Data and code from: Spatial ecology of the Turks & Caicos boa, Chilabothrus c. chrysogaster Cope, 1871 (Serpentes: Boidae)
<p><span>Obtaining ecological and natural history data from cryptic squamates can be challenging, but is crucial to understanding species' biology, particularly in the context of conservation. In the Greater Antilles, this challenge is especially apparent, particularly among the West Indian boas (genus <em>Chilabothrus</em>). Most species have had only minimal natural history study, with a few exceptions. The Turks & Caicos boa (<em>C. chrysogaster</em>) has been studied intensively for over 16 years on the small privately owned island of Big Ambergris Cay, Turks and Caicos Islands. We conducted a multi-year radio-tracking study on the species to generate information relevant to spatial habitat use and movement that will inform conservation decision-making in the face of increasing development pressure. We tracked a total of 19 female snakes using surgically implanted transmitters, enabling us to obtain between 16 and 40 location observations per boa over the lifetime of each transmitter. We estimated home ranges, the core space used by an animal, using range distributions, finding that females have a home range of 0.70 ha to 1.2 ha. We also estimated occurrence distributions, the use of space between specific time intervals, finding an average occurrence area of 1.62 ha. Several females overlapped in their spatial habitat use, and we observed female boas using two novel habitats for the species (iron shore wrack and red mangrove). This study provides valuable information on the spatial ecology of an endangered boa and will serve to inform conservation work that is currently underway. </span></p>
Post-hypnotic safety suggestion improves stress coping with long-lasting effects
<p>Effective coping with acute stress is important to promote mental health and to build stress resilience. Interventions improving stress coping usually require long training periods. In this study, we present a hypnosis-based intervention that produces long-term effects after a single hypnosis session. In that session, we established a post-hypnotic safety suggestion that participants can activate afterwards with a cue. We tested 60 participants in our study who all received the hypnosis session and a stress task. The safety group used the post-hypnotic safety cue during acute stress (Trier Social Stress Test, TSST). The control group used a neutral trigger instead. We measured subjective stress responses via self-reports and physiological stress responses via saliva and blood samples as well as heart rate. One week later, all participants filled in an online survey to measure long-term effects of the post-hypnotic safety suggestion. We found that participants using the post-hypnotic safety cue during the TSST reported significantly lower stress compared to the control group. The safety group also reported significantly fewer negative thoughts concerning their TSST performance than the control group during the stress recovery phase and one week later. All participants indicated that the post-hypnotic safety suggestion still worked one week after its establishment. Suggestibility did not affect the efficacy of the post-hypnotic safety suggestion. Our findings demonstrate that post-hypnotic safety suggestions improve stress coping with long-lasting effects, which makes it a promising intervention to promote mental health and establish stress resilience in just one hypnosis session.</p> <p>The manuscript is published in Scientific Reports on February 12, 2024 and available here: https://doi.org/10.1038/s41598-024-54071-3</p>
FIGURE 13 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.
FIGURE 13. The most compressive Bayesian phylogenetic relationship of Heptapteridae based on coI. The circles nodes represent the Bayesian support (black circle = 1 and grey circle = 0.9). Species delimitations of Pariolius are represented by bar (black bar = morphological delimitation (MOR), red bar = general mixed yule coalescent (GMYC) and blue bar = poisson tree processes (PTP). ORI (Orinoco River) and AMA (Amazonas River).
FIGURE 9 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.
FIGURE 9. Geographical distribution of Pariolius pax (yellow) and Pariolius maldonadoi (red) from Colombia. Star represents the type localities. Each symbol may represent more than one specimen.
FIGURE 7 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.
FIGURE 7. Dorsal view of the branchial arch of (A) Pariolius pax, MPUJ 10047, paratype, 36.7 mm SL. (B) Pariolius maldonadoi, MPUJ 13076, paratype, 28.4 mm SL. Abbreviations of the anatomical parts: bb2-4 = basibranchial 2 a 4; cb 1-5 = ceratobranchial 1 to 5; eb1-4 = epibranchial 1 to 4; pb3-4 = pharyngo- branchial 3 to 4; hb1-3 = hypobranchial 1 to 3.
FIGURE 10 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.
FIGURE 10. Pariolius maldonadoi, MHNU-I 3257, holotype, 32.6 mm SL, Potosí creek tributary to Inírida River, Guaviare State. (A) Lateral view. (B) Ventral view. (C) Dorsal view. Bar = 1 cm.
FIGURE 5 in DARIO R. FAUSTINO-FUSTER, JEISSON A. LÓPEZ-CASTAÑO, JHONATAN M. QUIÑONES & VANESSA MEZA-VARGAS (2024) Increasing the species diversity of the monotypic genus Pariolius Cope 1872 (Siluriformes: Heptapteridae) after more than 150 years. Zootaxa, 5433 (3): 389-403.
FIGURE 5. Dorsal view of the complex anterior vertebra of (A) Pariolius pax, MPUJ 10047, paratype, 34.0 mm SL and (B) Pariolius maldonadoi, MPUJ 13077, paratype, 27.3 mm SL. Abbreviations of the anatomical parts: scl = supracleithrum; tri = tripus; trp4 = transverse process 4; trp5: transverse process 5 and vc6: sixth vertebral centrum.
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