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.
26
datasets available to search
ShareScore release 0.9.0
Dataset results
26 results for “karst conservation”
Fig. 2. A in Conservation of Peninsular Malaysia's Karst Herpetofauna: A review of herpetological discoveries, research trends, and challenges
Fig. 2. A, Limnonectes blythii from an unnamed cave in Tambun, Perak; B, Limnonectes cf. macrognathus from Gua Wang Burma, Perlis; C, Phrynoidis asper from Gua Wang Burma, Perlis; D, Hylarana malayana from Gua Wang Burma, Perlis; E, Lycodon cavernicolus from Gua Wang Burma, Perlis; F, Elaphe taeniura ridleyi from Gua Wang Burma, Perlis; G, Cyclemys sp. from Gua Katak, Merapoh; H, Dogania subplana from Gua Wang Burma, Perlis. (Photographs by Liz Price [A & G] and Evan Quah [B–F & H]).
Fig. 1 in Conservation of Peninsular Malaysia's Karst Herpetofauna: A review of herpetological discoveries, research trends, and challenges
Fig. 1. Map of the main regions of karst in Peninsular Malaysia and selected areas of known herpetofaunal endemism. (1) Langkawi Archipelago, Kedah. (2) Nakawan Range that encompasses locations like Gua Wang Burma, Wang Kelian and Ulu Wang, as well as karst outcrops in Perlis like Bukit Cabang and Kuala Perlis. (3) Gunung Baling, Kedah. (4) Lenggong Valley, Perak. (5) Kinta Valley, Perak that encompasses locations such as Gua Kanthan, Gua Tempurung, Gunung Lanno, and Tambun. (6) Batu Caves and Dark Cave, Selangor. (7) Gunung Reng, Kelantan. (8) Gua Musang area, Kelantan that encompasses locations like Gua Bayu and Felda Chiku 7. (9) Merapoh, Pahang that encompasses locations like Gua Gunting and Gua Goyang. (10) Gunung Senyum, Pahang. (Map courtesy of Junn Kitt Foon and adapted from Liew et al. (2016)).
Fig. 3. A in Conservation of Peninsular Malaysia's Karst Herpetofauna: A review of herpetological discoveries, research trends, and challenges
Fig. 3. A, Cnemaspis cf. hangus from Felda Chiku 7, Kelantan; B, Cnemaspis biocellata from Gua Wang Burma, Perlis; C, Cyrtodactylus guakanthanensis from Gua Kanthan, Perak; D, Cyrtodactylus lenggongensis from Lenggong Valley, Perak; E, Cyrtodactylus hidupselamanya from Felda Chiku 7, Kelantan; F, Cyrtodactylus evanquahi from Gunung Baling, Kedah; G, Cyrtodactylus consobrinus from Curtain Cave, Pasoh, Negeri Sembilan; H, Calotes emma from Gua Kelam, Perlis. (Photographs by Ali Shamsul Bahar [G] and Evan Quah [A–F & H])
Data from: Context- and taxon-dependent small-scale taxonomic and phylogenetic nestedness of bryophytes on insular rocks in a karst natural reserve and its implication for their conservation
Open the record for dataset details and reuse information.
FIG. 1 in Bats of the Sangkulirang limestone karst formations, East Kalimantan - a priority region for Bornean bat conservation
FIG. 1. Map of the Sangkulirang peninsula, East Kalimantan, Indonesia, showing settlements and major rivers as well as the major karst formations (dark grey shading) and forest cover (light grey shading). Base camps used at the formations are marked by circles. Map produced by Paul Banks using a forest coverage (including plantations and burnt areas) from the Berau Forest Management Project, and karst and geographic information from Regional Development Agency (BAPPEDA) in Berau, and Anon (1973)
FIGURE 6 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 6. Upper left: Cyrtodactylus quadrivirgatus (LSUDPC 2509) from Fraser's Hill, Pahang, Peninsular Malaysia. Lower left: C. guakanthanensis (LSUDPC 8072) from Gua Kanthan, Perak, Peninsular Malaysia. Upper right: C. tebuensis (LSUDPC 7990) from Gunung Tebu, Terengganu, Peninsular Malaysia. Lower right: C. sworderi (LSUDPC 5875) from Gunung Panti, Johor, Peninsular Malaysia.
FIGURE 4 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 4. Type series of Cyrtodactylus gunungsenyumensis sp. nov. from Gunung Senyum, Hutan Lipur Gunung Senyum, Pahang, Peninsular Malaysia.
FIGURE 2 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 2. Inferred phylogenetic relationships within the sworderi complex. The phylogram is a Maximum Likelihood topology with Bayesian posterior probabilities and Maximum Likelihood bootstrap values, respectively. The green circles indicate instances of independent evolution of karst ecosystem ecology.
FIGURE 1 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 1. Distribution of Cyrtodactylus gunungsenyumensis sp. nov., C. tebuensis, C. guakanthanensis, and C. sworderi of the sworderi complex. Stars indicate type localities.
FIGURE 3 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 3. Left: Cyrtodactylus gunungsenyumensis sp. nov. Upper left: LSUHC 12200 subadult female; middle left: 12201 juvenile; lower left; LSUHC 12209 adult female. Right: Microhabitat of C. gunungsenyumensis sp. nov. at Gunung Senyum, Hutan Lipur Gunung Senyum, Pahang, Peninsular Malaysia.
Dataset for: Conservation genomics of federally endangered Texella harvester species (Arachnida, Opiliones, Phalangodidae) from cave and karst habitats of central Texas
<p>Genomic-scale data for non-model taxa are providing new insights into landscape genomic structuring and species limits, leading to more informed conservation decisions, particularly in taxa with extremely restricted microhabitat preferences and small geographic distributions. This study applied sequence capture of ultraconserved elements (UCEs) to gather genomic-scale data for two federally endangered <i>Texella</i> harvester species distributed in Edwards Formation cave and karst habitats of central Texas, near Austin. We gathered UCE data for 51 <i>T. reyesi </i>specimens from 46 different caves, seven <i>T. reddelli</i> specimens from five caves, and from relevant outgroup species. For these UCE data we applied a combination of phylogenomic, multispecies coalescent phylogenetic, and single-nucleotide polymorphism (SNP) machine-learning analyses. We found that samples of <i>T. reddelli</i> and <i>T. reyesi</i> together form a single clade in phylogenetic analyses, but that <i>T. reddelli </i>samples are not recovered as monophyletic. Instead, <i>T. reddelli </i>samples from three northern caves are embedded within a larger <i>T. reyesi</i> genetic clade. Significantly, the genetic structuring of all samples closely follows geologic barriers defined for the region and formalized as karst fauna regions (KFRs). One exception is the Jollyville Plateau KFR, which includes two divergent, non-sister genetic lineages. Levels of troglomorphy, here assessed by a simple scoring of corneal and retinal development, also closely follows clade (and geographic) boundaries, implying that divergent genetic lineages might also have distinct ecologies. Overall, our study has important taxonomic implications, is the first to explore (and validate) regional KFR boundaries using intraspecific genetic data, and provides essential data for future management decisions involving these federally endangered species.</p>
Figure 6 in Ecological niche overlap of two allopatric karst-adapted tiger geckos (Goniurosaurus) from northern Vietnam: microhabitat use and implications for conservation
Figure 6. (a) Scatterplots of all variable groups on coordinates of (1) Dim1–Dim2, (2) Dim3–Dim4 axes in the multiple factor analysis (MFA); (b) the first four important variables contributing to (1) Dim1, (2) Dim2, (3) Dim3, (4) Dim4; (c) scatter diagrams illustrating ecological spaces of Goniurosaurus huuliensis and Goniurosaurus luii on coordinates of (1) Dim1–Dim2, (2) Dim3–Dim4 axes.
Figure 4 in Ecological niche overlap of two allopatric karst-adapted tiger geckos (Goniurosaurus) from northern Vietnam: microhabitat use and implications for conservation
Figure 4. Microhabitat parameters and activity of Goniurosaurus huuliensis (1) and Goniurosaurus luii (2): (a) substrate type; (b) position to cave/ crevice; (c) activity status; (d) substrate moisture.
Figure 5 in Ecological niche overlap of two allopatric karst-adapted tiger geckos (Goniurosaurus) from northern Vietnam: microhabitat use and implications for conservation
Figure 5. The number of observed individuals of Goniurosaurus huuliensis and Goniurosaurus luii at different time intervals.
Figure 3 in Ecological niche overlap of two allopatric karst-adapted tiger geckos (Goniurosaurus) from northern Vietnam: microhabitat use and implications for conservation
Figure 3. Microhabitat characters of Goniurosaurus huuliensis and Goniurosaurus luii. (a) Air temperature; (b) substrate surface temperature; (c) animal temperature; (d) relative air humidity; (e) substrate angle; (f) occupied height; (g) canopy coverage; (h) elevation.
Figure 2 in Ecological niche overlap of two allopatric karst-adapted tiger geckos (Goniurosaurus) from northern Vietnam: microhabitat use and implications for conservation
Figure 2. (a) Karst mountain inhabited by Goniurosaurus huuliensis; (b) Microhabitat of Goniurosaurus luii; (c) G. huuliensis; and (d) G. luii on rock substrate. (Photographed by Hai N. Ngo.)
Figure 1 in Ecological niche overlap of two allopatric karst-adapted tiger geckos (Goniurosaurus) from northern Vietnam: microhabitat use and implications for conservation
Figure 1. Geographic distribution of Goniurosaurus huuliensis (violet circles enclosed by a violet line) and Goniurosaurus luii (pink triangles – northern Vietnam; pink squares – southern China – enclosed by a pink line). The orange square represents the distribution of another tiger gecko species, namely Goniurosaurus araneus, in China.
Figure 7 in Ecological niche overlap of two allopatric karst-adapted tiger geckos (Goniurosaurus) from northern Vietnam: microhabitat use and implications for conservation
Figure 7. Anthropogenic impacts in natural habitats of Goniurosaurus huuliensis and Goniurosaurus luii: (a) quarrying for cement production; (b) timber logging. (Photographed by Hai N. Ngo.)
Dataset for: Conservation genomics of federally endangered Texella harvester species (Arachnida, Opiliones, Phalangodidae) from cave and karst habitats of central Texas
Open the record for dataset details and reuse information.
FIGURE 5 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 5. Google Earth photograph of Hutan Lipur Gunung Senyum, Pahang, Peninsular Malaysia.
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.