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Figure 51 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figure 51. Geographical distribution of the five currently known Cricotopus species (tremulus-group) in the Tyrrhenian Region delimited by continental France, Italy, Spain and Corsica: C. latellai sp. n. ⦿, C. mantetanus ✻, C. nevadensis ✪, C. royanus ✩, C. tremulus ✭.
Figures 31-44. Cricotopus spp., male pupal exuviae. C in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figures 31-44. Cricotopus spp., male pupal exuviae. C. latellai sp. n.: 31, frontal apotome; 32, cephalothorax, chaetotaxy and granulation; 33-35, thoracic horn, three aspects; 34, thoracic horn, details of apical part; 36, cephalothorax, details of anteromedian area. C. mantetanus: 37, cephalothorax with dorsocentrals; 38, thoracic horn. C. latellai sp. n.: 39, armament and chaetotaxy of abdominal segments V-VII with details of the hook rows on tergites (left) and sternites (right); 40, lateral view of segments VII-VIII and anal segment; 41, armament of tergites V-VI (dorsal view) with median patch of spines and details of the hook rows; 42, anal lobe, right half, dorsal; 43, ventral view of sternites V (distal part) and VI (posteromedian patch of spines); C. mantetanus: 44, anal lobe, right half, dorsal.
Figures 1-12 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figures 1-12. Male adult of Cricotopus spp. C. latellai sp. n.: 1, tarsomere 3 with sensilla coeloconica; 2, tergite IX, lateral; 3, tergite IX, dorsal; 4, distribution pattern of setae on median area of tergites II-V. C. mantetanus: 5, tergite IX, dorsal; 6, distribution pattern of setae on median area of tergites II-V. C. latellai sp. n.: 7-8, hypopygium in dorsal and ventral view; 9, inferior volsella, dorsal; 10, left gonostylus, dorsal, at right angle; 11, right gonostylus, dorsal, at acute angle. C. mantetanus: 12, inferior volsella, dorsal.
Figures 13-30 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figures 13-30. Male and female adults of Cricotopus spp. C. latellai sp. n., male adult: 13, gonocoxite and inferior volsella, lateral; 14, inferior volsella, lateral; 15, gonostylus, lateral. 16, C. mantetanus: inferior volsella, lateral. C. latellai sp. n., female adult: 17, palpomere 3 with sensilla coeloconica; 18-19, antenna, segments 1-3, two aspects; 20- 21, last flagellomere, two aspects; 22, distribution pattern of setae on median area of tergites II-V; 23, genitalia, ventral and dorsal view with gonapophysis VIII, sternite VIII and seminal capsules; 24, dorsomesal and ventrolateral lobes; 25, apodeme lobe; 26, tergite IX, dorsal; 27, cercus. C. mantetanus: 29, apodeme lobe; 30, seminal capsule.
Word-related parameters and discriminative power of NWRT for bilingual children (Italian-German) with/without DLD
<p>Dataset with word-related parameters, adult monolingual ratings and mean repetition scores by bilingual children with/without (risk of) DLD. Word-related parameters include length, number of syllables, number of clusters, monolingual adults' direct (in-person) repetition rates and direct ratings of Pronounceability (PR), Word-likeness (WLike); online ratings of Pronounceability (avPR), Specificity (avSP, corresponding to percent target language assignment), and children's repetition rates (averages from children with/without DLD). IT, Italian, GER, German.</p>
ITALIC: An Italian Intent Classification Dataset
<p><strong>ITALIC: An Italian Intent Classification Dataset</strong></p> <p>ITALIC is a dataset of Italian audio recordings and contains annotation for utterance transcripts and associated intents. The ITALIC dataset was created through a custom web platform, utilizing both native and non-native Italian speakers as participants. The participants were required to record themselves while reading a randomly sampled short text from the MASSIVE dataset.</p> <p>ITALIC dataset containing 16,521 audio recordings collected by 70 different volunteers. The dataset is composed of:</p> <ul> <li><em>recordings</em>: a folder containing the audio recordings in <em>.wav</em> format. It contains all the recordings composing the data collection.</li> <li><em>[CONFIG_NAME]_[SPLIT_NAME].json</em>: the files containing metadata used for generating the configuration proposed in the paper and their corresponding splits: <ul> <li><em>[CONFIG_NAME]</em> is the name of the configuration, e.g. <em>massive</em>, <em>hard_noisy</em>, or <em>hard_speaker</em>. For the description of the configurations, please refer to the paper.</li> <li><em>[SPLIT_NAME]</em> is the name of the split, e.g. <em>train</em>, <em>validation</em>, or <em>test</em>. Each split is different for each configuration.</li> </ul> </li> </ul> <p> </p> <p>The metadata files are in JSON format, with one sample per line. Each sample is a JSON object with the following fields:</p> <ul> <li><em>id</em>: the unique identifier of the sample.</li> <li><em>age</em>: the age of the speaker (self-reported)</li> <li><em>gender</em>: the gender of the speaker (self-reported)</li> <li><em>region</em>: the region of origin of the speaker (self-reported)</li> <li><em>nationality</em>: the nationality of the speaker (self-reported)</li> <li><em>lisp</em>: the presence of a lisp in the speaker (self-reported)</li> <li><em>education</em>: the education level of the speaker (self-reported)</li> <li><em>speaker_id</em>: the unique identifier of the speaker</li> <li><em>environment</em>: the environment in which the recording was made (self-reported)</li> <li><em>device</em>: the device used for recording (self-reported)</li> <li><em>scenario</em>, <em>field</em>, <em>intent</em>: the information parsed from <a href="https://github.com/alexa/massive">massive</a> annotations and accompanying metadata.</li> <li><em>utt</em>: the utterance to be spoken by the speaker. This information is also taken from <a href="https://github.com/alexa/massive">massive</a>.</li> </ul> <p> </p> <p><strong>Important Note:</strong></p> <p><strong>By downloading and accessing the dataset, you agree not to attempt to determine the identity of speakers in the ITALIC dataset or to clone their voices.</strong></p> <p> </p> <p><strong>License</strong></p> <p>The ITALIC dataset is released under the <a href="https://creativecommons.org/licenses/by/4.0/">Creative Commons Attribution 4.0 International License</a>.</p> <p>If you use the dataset in your work, please cite the ITALIC paper.</p>
Robotic Monitoring of Alpine Screes: a Dataset from the EU Natura2000 habitat 8110 in the Italian Alps
<p>Data collected between the 19th and the 21rd of July 2022, in Valfurva, 23030 (SO), Italy, within the Stelvio National Park, located inside the Natura 2000 SPA IT2040044. The data acquisition has been conducted by a team composed of both robotic engineers and plant scientists. The platform used to collect the data is the ANYmal C quadrupedal robot.</p> <p> </p> <p>The dataset contains two different sets of data:</p> <p>1) typical and early warning species data - videos of seven different typical species of the habitat 8110 and one early warning species.</p> <p>2) monitoring mission data - video of the monitoring mission, robot status and point clouds, pictures and videos taken by the robot during the autonomous surveys.</p> <p> </p> <p>This dataset has a multidisciplinary scope and can be used by researchers in several fields. For instance, point clouds and information about the robot state could be used by robotic engineers to test or validate their own methods as well as benchmark the robot performance. On the other hand, plant videos and images recorded by the robot could be used by botanists to assess the quality of this information as well as the habitat's conditions, or by computer scientists interested in testing their AI algorithms for species detection and classification.</p>
Fig. 16 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 16 – a, Vespa crabro ♀, pronotum. b, Dolichovespula media ♀, pronotum. c, Vespula vulgaris ♀, pronotum. d, Dolichovespula saxonica ♀, malar space. e, Vespula austriaca ♀, malar space.
Fig. 14 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 14 – a, Rhynchium oculatum ♂, mesoscutum and scutellum. b, Rhynchium oculatum ♂, head. c, Rhynchium oculatum ♂, mid femur. d, Stenodynerus fastidiosissimus ♀, mesosoma. e, Stenodynerus fastidiosissimus ♀, tegula and axillary fossa. f, Stenodynerus fastidiosissimus ♀, pronotum. g, Allodynerus delphinalis ♂, mesosoma. h, Allodynerus delphinalis ♂, tegula and axillary fossa. i, Allodynerus rossii ♀, pronotum.
Fig. 12 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 12 – a, Leptochilus limbiferus ♀, tegula. b, Leptochilus tarsatus ♀, tegula. c, Leptochilus regulus ♀, T2. d, Microdynerus parvulus ♀, mandible. e, Microdynerus nugdunensis ♀, mandible. f, Microdynerus parvulus ♂, flagellum. g, Microdynerus nugdunensis ♀, clypeus. h, Microdynerus microdynerus ♀, clypeus.
Fig. 10 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 10 – a, Chlorodynerus kelidopterus ♂, pronotum. b, Syneuodynerus egregius ♀, pronotum. c, Chlorodynerus kelidopterus ♂, mid and hind legs. d, Syneuodynerus egregius ♀, propodeum. e, Euodynerus posticus ♀, propodeum. f, Euodynerus dantici ♀, propodeum. g, Euodynerus posticus ♀, vertex. h, Euodynerus notatus ♂, mid and hind tarsi. i, Euodynerus semisaecularis ♀, vertex. j, Euodynerus semisaecularis ♂, mid and hind tarsi.
Fig. 7 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 7 – a, Odynerus poecilus ♀, head. b, Paragymnomerus spiricornis ♀, mesoscutum. c, Odynerus poecilus ♀, mesoscutum. d, Paragymnomerus spiricornis ♂, mid femur. e, Odynerus melanocephalus ♂, mid femur. f, Odynerus poecilus ♀, metanotum. g, Odynerus albopictus ♂, mid coxa.
Fig. 5 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 5 – a, Pterocheilus phaleratus ♀, labial palpus. b, Hemipterochilus bembeciformis ♀, labial palpus. c, Onychopterocheilus sp. ♀, labial palpus. d, Tropidodynerus flavus ♀, labial palpus. e, Pterocheilus phaleratus ♀, head. f, Tropidodynerus flavus ♀, mesosoma.
Fig. 4 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 4 – a, Ischnogasteroides picteti tenuis ♀, T1. b, Delta unguiculatum ♀, T1. c, Alastor atropos ♀, fore wing. d, Alastor atropos ♀, tegula. e, Tropidodynerus flavus ♂, tegula. f, Allodynerus delphinalis ♂, tegula. g, Tropidodynerus flavus ♂, antenna.
Fig. 3 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 3 – a, Eumenes mediterraneus ♀, T1. b, Euodynerus dantici ♀, metasoma. c, Allodynerus delphinalis ♂, metasoma. d, Microdynerus longicollis ♂, metasoma. e, Eumenes papillarius ♀, T2. f, Katamenes arbustorum ♂, T2. g, Katamenes arbustorum ♂, head. h, Delta unguiculatum ♀, head. i, Katamenes arbustorum ♂, fore tarsi.
Fig. 2 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 2 – a, Raphiglossa spinosa ♀, fore wing. b, Katamenes arbustorum ♂, fore wing. c, Raphiglossa spinosa ♀, mouthparts. d, Katamenes arbustorum ♂, mouthparts. e, Psiliglossa zeppelini ♀, metasoma. f, Raphiglossa spinosa ♀, metasoma. g, Discoelius dufourii ♀, mid tibia. h, Eumenes coarctatus ♂, mid tibia.
Fig. 13 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 13 – a, Parodontodynerus ephippium ♀, pronotum. b, Pseudepipona lativentris ♀, pronotum. c, Parodontodynerus ephippium ♀, metanotum. d-e, Pseudepipona lativentris ♀, propodeum. f, Pseudepipona lativentris ♀, tegula. g, Pseudepipona herrichii ♂, mandible. h, Antepipona deflenda ♀, metanotum.
Fig. 1 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 1 – a, Celonites abbreviatus ♀, antenna. b, Polistes dominula ♀, antenna. c, Jugurtia sp. ♀, fore wing. d, Polistes dominula ♀, fore wing. e, Jugurtia sp. ♀, antenna. f, Celonites abbreviatus ♀, metasoma. g, Jugurtia sp. ♀, metasoma. h, Paragymnomerus spiricornis ♀, tarsal claws. i, Vespa crabro ♀, tarsal claws. j, Katamenes arbustorum ♂, head. k, Vespa crabro ♀, head.
Fig. 9 – a in Illustrated key to the genera and a checklist of Italian Vespidae (Hymenoptera)
Fig. 9 – a, Eustenancistrocerus blanchardianus ♀, pronotum. b, Ancistrocerus antilope ♀, pronotum. c, Eustenancistrocerus amadanensis ♀, tegula. d, Eustenancistrocerus blanchardianus ♀, tegula. e, Ancistrocerus biphaleratus triphaleratus ♀, tegula. f, Tachyancistrocerus rhodensis ♀, tegula. g, Ancistrocerus biphaleratus triphaleratus ♀, mesosoma. h, Ancistrocerus biphaleratus triphaleratus ♀, T1. i, Tachyancistrocerus rhodensis ♀, mesosoma. j, Tachyancistrocerus rhodensis ♀, T1.
Fig. 4 in Orthopteran diversity and distribution in the Monviso Natural Park (Western Italian Alps) (Orthoptera)
Fig. 4 – Plot representing the species-sample rarefaction curve, calculat- ed using the 2019-2020 surveys data (1200 records in 395 survey points, 49 species). The grey area identifies the 95% confidence interval.
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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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