Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
1,790
datasets available to search
ShareScore release 0.9.0
Dataset results
1,790 results for “taxonomic status”
FIGURE 2 in A review of the taxonomic status of the New Caledonia Wattled Bat Chalinolobus neocaledonicus Revilliod, 1914 (Chiroptera: Vespertilionidae) and Chalinolobus gouldii venatoris Thomas, 1908 from northern Australia
FIGURE 2. Alcohol-preserved body of NMB 1751, holotype male of C. neocaledonicus: A, dorsal view; B, ventral view (images: AD).
FIGURE 3 in A review of the taxonomic status of the New Caledonia Wattled Bat Chalinolobus neocaledonicus Revilliod, 1914 (Chiroptera: Vespertilionidae) and Chalinolobus gouldii venatoris Thomas, 1908 from northern Australia
FIGURE 3. Dorsal and ventral pelage colour in holotype of C. gouldii venatoris A, dorsal view; and B, ventral view; C. neocaledonicus (NHML 1919.10.8.20, female) from Tiare; C, dorsal view; and D, ventral view (images: AD); E and F, adult female C. neocaledonicus from Tendo (image: GH). Scale bar = 4 mm.
FIGURE 6 in A review of the taxonomic status of the New Caledonia Wattled Bat Chalinolobus neocaledonicus Revilliod, 1914 (Chiroptera: Vespertilionidae) and Chalinolobus gouldii venatoris Thomas, 1908 from northern Australia
FIGURE 6. Mean greatest skull length (GL) vs. mean bulla length showing smaller mean bulla length of C. neocaledonicus compared with sample means of C. gouldii (squares) from Tidemann (1986): Tasmania (n = 10), Melbourne, Victoria (n = 9), Norfolk Island (n = 4) and Wave Hill, Northern Territory (n = 9), plus measurements for the holotypes of C. gouldii venatoris (open square) and C. neocaledonicus (open circle).
FIGURE 2 in Establishment of taxonomic status of Macrobrachium indicum Jayachandran & Joseph (Decapoda: Palaemonidae) through molecular characterization with a note on related species
FIGURE 2. Macrobrachium indicum: A—Entire specimen, B—anterior part and rostrum, C—larger chela of 2nd peraeopod.
FIGURE 1. NRM 8260, neotype for Coluber natrix. A in The taxonomic status of grass snake, Natrix natrix (Linnaeus, 1758) (Squamata: Colubridae), with designation of a neotype
FIGURE 1. NRM 8260, neotype for Coluber natrix. A) Dorsal view B) Ventral view. C) Immediately after being euthanized. D) Photo of the capture locality, Fada mill pond.
FIGURE 3 in Morphological variation in the genus Juliomys (Rodentia: Cricetidae Sigmodontinae) and taxonomic status of Juliomys anoblepas (Winge 1887) from the Quaternary of Southeast Brazil
FIGURE 3. Characters proposed herein and identified as polymorphic in Juliomys species. 1—Short nasal in the paratype of J. rimofrons (MN46703); 2—Long nasal in the paratype of J. rimofrons (MN61646); 3—Anterior cingulum in J. pictipes (UFES2269); 4—Vestigial anterior cingulum in J. ossitenuis (UFSM599); 5—Anterior cingulum absent in J. ossitenuis (MN81912); 6—Enteroloph and enterostyle, both present in J. pictipes (MN77793); 7—Only enterostyle present in J. pictipes (UFSM517); 8—Both absent in the holotype of J. ximenezi (MCNU868). Line = triple point lacrimal-maxillary-frontal suture; arrow = extension of nasal; ac = anterior cingulum; el = enteroloph; es = enterostyle. Scale = 2 mm in images 1–2 and 1 mm in images 3–8.
FIGURE 2 in Morphological variation in the genus Juliomys (Rodentia: Cricetidae Sigmodontinae) and taxonomic status of Juliomys anoblepas (Winge 1887) from the Quaternary of Southeast Brazil
FIGURE 2. Dorsal, ventral, and lateral views of skull of J. anoblepas. 1—Photo modified from Pardiñas & Teta (2011); 2—Photo by Kasper Hansen, illustrating the current state of preservation of the specimen. The specimen is housed at Lund Collection (ZMUC), Copenhagen, Denmark, but it has no catalog number. Its recognition is unquestionable by Winge (1887)'s description and illustration. Scale = 5 mm.
FIGURE 1 in Morphological variation in the genus Juliomys (Rodentia: Cricetidae Sigmodontinae) and taxonomic status of Juliomys anoblepas (Winge 1887) from the Quaternary of Southeast Brazil
FIGURE 1. Map showing the collecting localities of specimens of J. pictipes (black circles), J. anoblepas (star), J. ossitenuis (white circles), J. rimofrons (triangles), J. ximenezi (squares). Atlantic Forest extension is marked in gray and numbers correspond to the localities listed in appendix 1.
FIGURE 5 in Morphological variation in the genus Juliomys (Rodentia: Cricetidae Sigmodontinae) and taxonomic status of Juliomys anoblepas (Winge 1887) from the Quaternary of Southeast Brazil
FIGURE 5. Characters previously proposed as diagnostic, and herein identified as polymorphic or invariable. 1—Little excavated zygomatic notch in J. pictipes (MN81096); 2—Zygomatic notch more excavated in J. pictipes (MN69764); 3—Frontal fontanelle absent in J. pictipes (UFES2421); 4—Frontal fontanelle present in J. pictipes (UFES2432); 5–8—Interorbital region is hourglass shaped in all specimens of Juliomys: note differences in the shape of supraorbital margin, which is squared in J. pictipes (Fig. 5.5, MN77793), rounded in J. ossitenuis (Fig. 5.6, MN81085), rounded in J. rimofrons (Fig. 5.7, MN46703), and slightly squared in J. ximenezi (Fig. 5.8, MCNU868); 9–10—Posterolateral pits with same size in J. ossitenuis (Fig. 5.9, MN81852), and in J. pictipes (Fig. 5.10, MZUSP32666). Horizontal arrow = frontal fontanelle; inclined arrow = supraorbital margin. Scale = 2 mm in images 1–8 and 1 mm in images 9–10.
FIGURE 4 in Morphological variation in the genus Juliomys (Rodentia: Cricetidae Sigmodontinae) and taxonomic status of Juliomys anoblepas (Winge 1887) from the Quaternary of Southeast Brazil
FIGURE 4. Frequency of states related to characters that can be applied to J. anoblepas. 1—Extension of the nasal; 2—Depth of the zygomatic notch; 3—Frontal fontanelle; 4—Extension of the incisive foramen; 5—Anterior cingulum; 6—Enteroloph and enterostyle. Numbers in bars correspond to number of specimens that have each state. Abbreviations: pic = J. pictipes, oss = J. ossitenuis, rim = J. rimofrons, and xim = J. ximenezi.
FIGURE 6 in Morphological variation in the genus Juliomys (Rodentia: Cricetidae Sigmodontinae) and taxonomic status of Juliomys anoblepas (Winge 1887) from the Quaternary of Southeast Brazil
FIGURE 6. Scatterplot results of principal component analysis of log-transformed cranial measurements. Juliomys anoblepas hypodigm is indicated by an asterisk (*). Numbers indicate holotypes: 1, J. pictipes (FMNH26814); 2, J. ossitenuis (MN69752); 3, J. rimofrons (MN61647); and 4, J. ximenezi (MCNU868).
PLATE 9, FIGURES 1–4 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 9, FIGURES 1–4. Acanthopsyche ecksteini, biotope, male and case in nature: 1, resting male; 2, Russia, Saratov Region, Krasnokutskij District, Djakovsky Reserve, 3.V.2010; 3, female larval case; 4, Russia, Orenburg Region, Gajskij District, Khmelevka, 4.V.2012.
PLATE 8, FIGURES 1–5 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 8, FIGURES 1–5. Acanthopsyche ecksteini, cases: 1, Russia, Orenburg Region; 2, Ukraine, Tshernomorsky raion; 3, Italy, Monfalcone; 4, enlarged exuviae; 5, Russia, Saratov Region.
PLATE 7, FIGURES 1–5 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 7, FIGURES 1–5. Acanthopsyche ecksteini, male genitalia, ventral view: 1, Holotype of A. semiglabra (Russia, Saratov Region) (ID male genitalia in ZIN: 16113); 2, Ukraine, Tshernomorsky raion (ZIN); 3, Russia, Saratov Region (LOV: 1030); 4, Lectotype of A. ecksteini (Hungary, Budapest) (MFB: http>&&coll.mfn/berlin.de&u&fa64c5); 5, Hungary (ZIN).
PLATE 6 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 6. Acanthopsyche ecksteini, venation of the holotype of A. semiglabra (Russia, Saratov Region). Markings discussed within the text.
PLATE 5, FIGURES 1–5 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 5, FIGURES 1–5. Acanthopsyche ecksteini, venation: 1, Paratype of A. semiglabra (Russia, Saratov Region); 2, Ukraine, Tshernomorsky raion (LOV: 491); 3, Russia, Saratov Region (LOV: 1032); 4–5, Italy, Monfalcone.
PLATE 4, FIGURES 1–2 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 4, FIGURES 1–2. Acanthopsyche ecksteini, wings scales: 1, hindwing fringe; 2, medial part of forewing (Russia, Saratov Region).
PLATE 3, FIGURES 1–2 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 3, FIGURES 1–2. Acanthopsyche ecksteini, antenna: 1, ventral view; 2, dorsal view (holotype of A. semiglabra) (unscaled).
PLATE 2, FIGURES 1–9 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 2, FIGURES 1–9. Acanthopsyche ecksteini, additional males, dorsal view: 1, Hungary, Budapest (SMNK); 2–3, Hungary (ZIN); 4–5, Italy, Monfalcone (SMNK); 6, Georgia, Tbilisi (ZIN); 7, Ukraine, Tshernomorsky raion (LOV: 491); 8, Russia, Saratov Region (LOV: 1032); 9, Russia, Saratov Region (LOV: 1030).
PLATE 1, FIGURES 1–7 in On the taxonomical status of Acanthopsyche semiglabra Solyanikov with notes on morphology and distribution of Acanthopsyche ecksteini (Lederer) (Lepidoptera Psychidae)
PLATE 1, FIGURES 1–7. Acanthopsyche ecksteini, males, dorsal view: 1, Lectotype (MFB); 2–4, Paralectotypes (MFB); 5, Holotype of A. semiglabra (ZIN); 6–7 Paratypes of A. semiglabra (ZIN).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.