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350 results for “southern Italy”
FIGURE 3 in Hieracium terraccianoi (Asteraceae), a new species endemic to the Pollino National Park (Southern Italy)
FIGURE 3. Hieracium terraccianoi fruiting in nature.
FIGURE 4 in Serapias ausoniae (Orchidaceae; Orchideae): a new species from southern Italy confirmed by morphological, cytological and molecular analyses
FIGURE 4. Somatic metaphase chromosomes in Serapias ausoniae (2n = 72). Bar = 10 µm.
Figure 2 in First European evidence for transcontinental dispersal of Crocodylus (late Neogene of southern Italy)
Figure 2. Blind pockets, or cecal recesses, are a synapomorphy of Crocodylus and absent in the only other brevirostrine crocodylian known in the European Miocene, the extinct alligatoroid genus Diplocynodon, and in the living African crocodylid genus Osteolaemus. A, B, right maxilla of Crocodylus sp. from Monte Gargano (BSP 2004 I 1) respectively in medial and latero-dorsal views; the arrows in A show anterior depressions and area of cecal recesses; the arrow in B shows the para-sagittal groove (see text). C, detail of a blind pocket; the arrows indicate a pocket whose lateral wall is only partly preserved. D, right maxilla in medial view of Crocodylus niloticus, juvenile, NMW 533; the arrows show anterior depressions and area of cecal recesses. E, right maxilla in medial view of Osteolaemus tetraspis, BSP 1982 X 5635. F, right maxilla in medial view of Diplocynodon styriacus from the Early Miocene (MN 5; BSP 1953 II 13) of Appertshofen, Germany. Teeth have been eliminated in D and F for ease of comparison. In order better to show the presence of the shallow depressions, the maxilla in A is figured in medial–ventral view; note that the palatal lamina is broken off at its base. The polygonal cavities visible on the right side of the D. styriacus maxilla in D are due to local breakage of the palatal lamina and are not cecal recesses. Scale bar equals 10 mm.
Figure 6 in Early eusuchia crocodylomorpha from the vertebrate-rich Plattenkalk of Pietraroia (Lower Albian, southern Apennines, Italy)
Figure 6. Detail of the choana of Pietraroiasuchus ormezzanoi, photograph and interpretation.
Figure 4 from: Musarella CM, Cano-Ortiz A, Pinar Fuentes JC, Navas-Urena J, Pinto Gomes CJ, Quinto-Canas R, Cano E, Spampinato G (2018) Similarity analysis between species of the genus Quercus L. (Fagaceae) in southern Italy based on the fractal dimension. PhytoKeys 113: 79-95. https://doi.org/10.3897/phytokeys.113.30330
Figure 4 Value of the medians for each homogeneous group. Fractal dimensions (mean values) of the studied species where Quercusilexsubsp.ilex and Quercussuber have an FD < 1.6 and the marcescent Quercus has a FD > 1.6.
Figure 2 from: Musarella CM, Cano-Ortiz A, Pinar Fuentes JC, Navas-Urena J, Pinto Gomes CJ, Quinto-Canas R, Cano E, Spampinato G (2018) Similarity analysis between species of the genus Quercus L. (Fagaceae) in southern Italy based on the fractal dimension. PhytoKeys 113: 79-95. https://doi.org/10.3897/phytokeys.113.30330
Figure 2 a RGB colour image b 8-bit greyscale image and c binary selection of an image of a Quercuscrenata leaf.
Open data for assessing habitats degree of conservation at plot level. An example dataset of forest structural attributes in Val d'Agri (Basilicata, Southern Italy)
<p>We provide a georeferenced dataset of vertical and horizontal structure of forest types belonging to 4 habitat types, sensu Council Directive 92/43/EEC. The dataset includes structural indicators commonly linked to old-growth forests in Europe, in particular the amount of standing and lying deadwood. We collected data on 32 plots (24 of 225 m<sup>2</sup>, and 8 of 100 m<sup>2</sup>, according to different forests type) during spring and summer of 2022, in Val d’Agri (Basilicata, Southern Italy). The dataset we provide follows the common national standard for field data collection in forest habitat types, published by ISPRA in 2016 (https://www.isprambiente.gov.it/public_files/direttiva-habitat/Manuale-142-2016.pdf) with the aim to promote a greater homogeneity in assessment of habitat conservation status at Country and biogeographical level, as requested by the Habitats Directive.</p> <p>Data were acquired by using a free Android application (VegApp, (https://vegapp.de/), and standardized field survey forms.</p> <p>The selection of the location of the sample sites were spatially balanced by using the sofware QGis vers. 3.22 (http://qgis.osgeo.org)</p> <p>plots_Table1 shows the characteristics of the sample sites, and information on type of management, when available.</p> <p>plots_Table2 provides the description and the measuring unit of all the attributes included in the dataset at plot level. It includes parameters used for assessing old-growth forests, linking them to the main type forests management, in order to both select indicators useful for assessing the conservation degree of forest habitat types, and identify good practices for nature conservation in these ecosystems.</p> <p>plots_Table3 contains information on living trees and deadwood at plot level.</p> <p>Trees describes the dataset related to single-tree data, and it contains the following fields for all living trees, exceeding 10 cm DBH, occurring in the plots. The nomenclature follows the Italian checklist available at https://dryades.units.it/floritaly/</p> <p>The shapefile "plots" contains the same information included in plots_Table1.</p>
FIGURE 6 in The first annotated checklist of Pentatomoidea (Hemiptera: Heteroptera) fauna of Alta Murgia National Park (Apulia region, Southern Italy)
FIGURE 6. Ventocoris falcatus (Cyrillus, 1791). Scale bar: 2 mm. Photo I. Laterza and O. Panzarino.
FIGURE 3 in The first annotated checklist of Pentatomoidea (Hemiptera: Heteroptera) fauna of Alta Murgia National Park (Apulia region, Southern Italy)
FIGURE 3. Holcogaster fibulata (Germar, 1831). Scale bar: 2 mm. Photo I. Laterza and O. Panzarino.
FIGURE 1 in The first annotated checklist of Pentatomoidea (Hemiptera: Heteroptera) fauna of Alta Murgia National Park (Apulia region, Southern Italy)
FIGURE 1. Map of the sampling sites within the Alta Murgia National Park area.
FIGURE 4 in The first annotated checklist of Pentatomoidea (Hemiptera: Heteroptera) fauna of Alta Murgia National Park (Apulia region, Southern Italy)
FIGURE 4. Sciocoris homalonotus (Fieber, 1851). Scale bar: 2 mm. Photo I. Laterza and O. Panzarino.
Fig. 3 in New lizards and rhynchocephalians from the Lower Cretaceous of southern Italy
Fig. 3. Eichstaettisaurus gouldi sp. nov., holotype MNP 19457. A. Skull. B. Enlargement of frontoparietal region. Scale bars 1 mm.
Fig. 2 in New lizards and rhynchocephalians from the Lower Cretaceous of southern Italy
Fig. 2. Eichstaettisaurus gouldi sp. nov. Holotype MNP 19457, preserved in ventral view. A. Complete specimen. B. Detail of skull (small arrows mark intercentra). C. Right pes.
Fig. 11 in New lizards and rhynchocephalians from the Lower Cretaceous of southern Italy
Fig. 11. Comparison of skulls in Eichstaettisaurus. A. Eichstaettisaurus schroederi, BSPHM 1937 I 1, Solnhofen, Germany. B. Eichstaettisaurus sp., IEI LP−3400, Montsec, Catalonia, Spain. C. Eichstaettisaurus gouldi sp. nov., MPN 19457, Pietraroia, Italy. A, B, dorsal views, C, ventral view. Scale bars 1 mm.
Fig. 1 in New lizards and rhynchocephalians from the Lower Cretaceous of southern Italy
Fig. 1. The locality of Civita di Pietraroia showing the topology of the outcrop (la Cavere, marked by asterisk) and its relationship to the small town of the same name, with insets demonstrating (bottom left) the position of Pietraroia within Italy and (top right) its position in relation to the city of Naples. Modified from Bravi (1996: 148).
Fig. 7. Pietraroia specimen MPN A01 in New lizards and rhynchocephalians from the Lower Cretaceous of southern Italy
Fig. 7. Pietraroia specimen MPN A01/82. Posterior caudal vertebra showing lateral zygapophyseal ridge and dorsal depression.
Development of an Ensemble Learning-based, Multi-dimensional Sensory Impairment Score to Predict Cognitive Impairment in an Elderly Cohort of Southern Italy
ClinicalTrials.gov study NCT06783010. IPD Sharing: UNDECIDED. Countries: 0. Publications: 8.
Mid-Miocene to recent tectonic evolution of the Punta Stilo Swell (Calabrian Arc, southern Italy): an effect of Calabrian Arc migration.
<p>An approach consisting of seismics, wells, bathymetrics and literature information provides a better understanding of the origin of an unknown submerged morphological high, the so-called Punta Stilo Swell (S Italy). The Punta Stilo Swell is the expression of alternating phases between contractional, extensional and extetnsional/transpressional tectonics occurred since late Messinian onwards, linked to the Calabrian Arc kinematics</p>
Figure 1 from: Cannucci S, Angiolini C , Anselmi B, Banfi E, Biagioli M, Castagnini P, Centi C, Fiaschi T, Foggi B, Gabellini A, Lastrucci L, Lattanzi E, Scoppola A, Selvi F, Viciani D, Bonari G (2019) Contribution to the knowledge of the vascular flora of Miniera di Murlo area (southern Tuscany, Italy). Italian Botanist 7: 51-67. https://doi.org/10.3897/italianbotanist.7.33763
Figure 1 Boundaries of the study area (Miniera di Murlo, Siena).
Effect of neurological screening on early dementia detection in southern Italy
<p>Objective</p> <p>Population screening can facilitate early diagnosis of dementia and improve disease management. This study examined the effects of a screening campaign for neurodegenerative disorders on the early diagnosis of dementia using 2-year follow-up data.</p> <p>Methods</p> <p>A 5-day screening campaign was conducted that comprised neurological, neuropsychological and other specialist examinations. Identification of alterations during the neurological examination was followed-up by further diagnostic examinations to confirm the neurological impairment.</p> <p>Results</p> <p>Neurological alterations were observed in 39% of the screened subjects, who were mostly diagnosed with mild cognitive impairment and referred to a dementia and cognitive disorders centre. Suspicion of neurological impairment was a risk factor for inclusion in a specific neurological ambulatory follow-up and a condition for exemption from payment for medical examinations.</p> <p>Conclusions</p> <p>Neurodegenerative screening initiatives should include subjects selected by general practitioners. It would be useful to create a network including primary care physicians and cognitive disorder centres. Telemedicine tools (e.g., teleconsulting) could also be used to facilitate early diagnosis.</p>
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.