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zenodo40/100

Fig. 3 in A new rupicolous species of gecko of the genus Hemidactylus Oken, 1817 from the Satpura Hills, Central India

Fig. 3. Hemidactylus chipkali sp. nov. male holotspe NCBS AT107, (A) dorsal view of trunk, (B) ventral view of cloacal showing precloacal femoral pores and hemipenis, (C) ventral view of tail showing enlarged sub-caudal scales.

opencc-by-4.0Mar 2017View details →
zenodo40/100

FIGURE 7 in Centropyxis aculeata (testate lobose amoebae) and associated diatoms from the intertrappean lacustrine sediments (Maastrichtian) of central India: Implications in understanding paleolake ecology

FIGURE 7. (Scale bar is 10 µm; EF is England Finder Reading). 1. Azolla cretacea Stanley, 1965; Slide no. BG2 S1; EF L55. 2. Cyathidites australis Couper, 1953 Slide no. BGVN L2; EF Q56. 3. Gabonisporis vigourouxii Boltenhagen, 1967; Slide no. BGVN E4; EF Q52. 4. Aquilapollenites bengalensis Baksi and Deb ex. Samant et al., 2013; Slide no. BGVN 1C6; EF N-34/1. 5. Jiangsupollis sp.; Slide no. BGVN L4, EF 45/1. 6. Proxapertites sulcatus Jaramillo et al., 2011; Slide no. BGVN E4, EF R31/1.

opencc-by-4.0Dec 2020View details →
zenodo40/100

FIGURE 6. 1 in Centropyxis aculeata (testate lobose amoebae) and associated diatoms from the intertrappean lacustrine sediments (Maastrichtian) of central India: Implications in understanding paleolake ecology

FIGURE 6. 1. SEM photograph of Centropyxis aculeata (Ehrenberg, 1832). 2. SEM photographs of the centric diatom Pantocsekiella sp. (internal valve view) on the test of Centropyxis aculeata (Ehrenberg, 1832). 3 and 5. SEM photographs of the pennate diatom Achnanthes sp. on the test of Centropyxis aculeata (Ehrenberg, 1832). 4. SEM photograph of the pennate diatom Oricymba sp. on the wall of Centropyxis aculeata (Ehrenberg, 1832). 6. SEM photograph of the pennate diatom Diadesmis sp. on the wall of Centropyxis aculeata (Ehrenberg, 1832).

opencc-by-4.0Dec 2020View details →
zenodo40/100

FIGURE 4 in Centropyxis aculeata (testate lobose amoebae) and associated diatoms from the intertrappean lacustrine sediments (Maastrichtian) of central India: Implications in understanding paleolake ecology

FIGURE 4. Location of the Bagwanya Intertrappean outcrop, showing lithostratigraphy of the section and correspond- ing lithology of the arcellinidan-bearing horizons.

opencc-by-4.0Dec 2020View details →
zenodo40/100

FIGURE 5 in Centropyxis aculeata (testate lobose amoebae) and associated diatoms from the intertrappean lacustrine sediments (Maastrichtian) of central India: Implications in understanding paleolake ecology

FIGURE 5. (Scale bar for figures 1-6 is 10 µm; EF is England Finder Reading). 1-3. LM photograph of Centropyxis aculeata (Ehrenberg, 1832); 1. Slide no. 1A6, EF H48; 2. 1A3, EF K 40/2; 3. 1A4, EF K40/3. 4. LM photograph of Centropyxis aculeata (Ehrenberg, 1832) with big xenosomes of silica; Slide no 1A4, EF O61/2. 5-6. LM photograph of Centropyxis aculeata (Ehrenberg, 1832) showing presence of xenosomes of variety of diatoms as well as silica grains on the test; 5. Slide no 1A3, EF U38; 6. 1A1, EF E56/1. 7. SEM photograph of Centropyxis aculeata (Ehrenberg, 1832) showing presence of xenosomes of silica. 8. SEM showing magnified view of the same as 7. 9. SEM photograph of Centropyxis aculeata (Ehrenberg, 1832) showing presence of xenosomes of diatoms on the test. 10. SEM photograph of Centropyxis aculeata (Ehrenberg, 1832) showing presence of xenosomes of centric diatoms and silica grains on the test. 11-12 and 15 Centric diatom Cyclotella sp. on the test of Centropyxis aculeata (Ehrenberg, 1832). 13,14. SEM photographs of Centropyxis aculeata (Ehrenberg, 1832).

opencc-by-4.0Dec 2020View details →
zenodo40/100

FIGURE 2 in Centropyxis aculeata (testate lobose amoebae) and associated diatoms from the intertrappean lacustrine sediments (Maastrichtian) of central India: Implications in understanding paleolake ecology

FIGURE 2. Palaeoposition of India - Seychelles during the Cretaceous - Tertiary transition (65 Ma ago), showing the geographical distribution of the Deccan Continental Flood Basalt (DCFB), commonly known as the Deccan Traps. Location of the Deccan-Reunion Hotspot is shown in relation to the geographic limits of the DCFB. The red asterisk marks the location of the Bagwanya Intertrappean outcrop (modified after Chatterjee et al., 2006).

opencc-by-4.0Dec 2020View details →
zenodo40/100

FIGURE 1 in Centropyxis aculeata (testate lobose amoebae) and associated diatoms from the intertrappean lacustrine sediments (Maastrichtian) of central India: Implications in understanding paleolake ecology

FIGURE 1. Map showing the central regions of India covered by the Malwa Group, and the location of the Bagwanya Intertrappean outcrops. Green areas are the extent of the Deccan Continental Flood Basalt (DCFB).

opencc-by-4.0Dec 2020View details →
zenodo40/100

FIGURE 3 in Centropyxis aculeata (testate lobose amoebae) and associated diatoms from the intertrappean lacustrine sediments (Maastrichtian) of central India: Implications in understanding paleolake ecology

FIGURE 3. Palaeoposition of India during the Maastrichtian (68 Ma), showing its location south of the Equator. The red asterisk shows location of the Bagwanya Intertrappean outcrop (modified after Scotese, 2014).

opencc-by-4.0Dec 2020View details →
zenodo40/100

Figure 1 in Evidence of presence of Marbled Cat Pardofelis marmorata (Martin, 1837) in Neora Valley National Park, Central Himalaya, India

Figure 1. Study area pointing the location points of the camera traps capturing the Marbled Cat Images.

opencc-by-4.0Dec 2019View details →
zenodo40/100

Figure 2 in Surveillance of population dynamics and breeding habitat diversity of Anopheles subpictus in different areas of Odisha, East Central India

Figure 2. House Index of Anopheles subpictus of different localities under study. (Buguda, Ballipadar, Aska, Bhetanai, Bhanjanagar and Baunsalundi).

opencc-by-4.0Dec 2022View details →
zenodo40/100

Figure 3 in Surveillance of population dynamics and breeding habitat diversity of Anopheles subpictus in different areas of Odisha, East Central India

Figure 3. Container Index of Anopheles subpictus of different localities under study. (Buguda, Ballipadar, Aska, Bhetanai, Bhanjanagar and Baunsalundi)

opencc-by-4.0Dec 2022View details →
zenodo40/100

Figure 2 in First photographic evidence of Asian Golden Cat Catopuma temminckii (Vigors and Horsfield, 1827) from Neora valley National Park, Central Himalayas, India

Figure 2. Camera Trap photograph of Asian golden cat (Catopuma temminckii Vigors & Horsfield, 1827) captured in Neora Valley National Park, West Bengal, India.

opencc-by-4.0Jun 2018View details →
zenodo40/100

Figure 1 in First photographic evidence of Asian Golden Cat Catopuma temminckii (Vigors and Horsfield, 1827) from Neora valley National Park, Central Himalayas, India

Figure 1. The distribution of Asian Golden Cat according to the IUCN Redlist database and the photo-capture site of the species from the present study at Neora Valley National Park, West Bengal, India.

opencc-by-4.0Jun 2018View details →
zenodo40/100

A new cryptic species of Nyctibatrachus (Amphibia, Anura, Nyctibatrachidae) with description of its tadpole from the central Western Ghats, India

<p>We describe a new species of night frog belonging to the genus <em>Nyctibatrachus</em> from the central Western Ghats, India.</p>

opencc-by-4.0Dec 2021View details →
dryad36/100

Sacred groves of Central India: Diversity status, carbon storage and conservation strategies

<p>Sacred groves (SGs) play an important role in the conservation of local biodiversity and provide numerous ecosystem services worldwide. We studied how the ecological status of Central Indian SGs contributes to regional tree diversity and carbon (C) storage. We inventoried the trees in fifty-nine SGs of Madhya Pradesh and recorded a total of 109 tree species (90 genera, 40 families). The most species-rich families were Fabaceae, Combretaceae, Malvaceae and Moraceae. The tree density ranged from 75 to 925 individuals ha<sup>-1</sup> (mean: 398 ± 32 individuals ha<sup>-1</sup>), while the basal area varied from 2.5 to 69.2 m<sup>2</sup> ha<sup>-1</sup> (mean: 24.2 ± 1.9 m<sup>2</sup> ha<sup>-1</sup>). The total C stock {tree C + soil organic C (SOC; 0-30 cm)} ranged from 44.7 to 455.4 Mg C ha<sup>-1</sup> (mean: 153.8 ± 9.6 Mg C ha<sup>-1</sup>) across the SGs. The studied SGs represented 74.7% of the total tree diversity and contained 33.1% higher total C stock than the forests of the state. Tree C stock was significantly positively correlated with tree basal area (<em>r<sub>57</sub></em> = 0.965,<em> P</em> &lt; 0.0001), distance from the nearest village (<em>r<sub>57</sub></em> = 0.432, <em>P</em> &lt; 0.001) and number of years of existence (<em>r<sub>57</sub></em> = 0.615, <em>P</em> &lt; 0.0001). The present study highlighted the crucial role of the studied SGs in sustaining regional biodiversity and storing significant amounts of C in biomass and soil. Continued conservation efforts and contained anthropogenic interferences are necessary in order to maintain the current role of these SGs as biodiversity and carbon reservoirs of Central India.</p>

opencc-zeroMay 2022View details →
zenodo36/100

Figure 3 in Records of Günther's gracile skink, Riopa guentheri (Peters, 1879) (Reptilia: Scincidae: Lygosominae) from Central India

Figure 3. Right side hemipenis of Riopa guentheri (ZSI-CZRC-V-6307i).

opencc-by-4.0Mar 2021View details →
zenodo36/100

Fig. 9 in A new rupicolous species of gecko of the genus Hemidactylus Oken, 1817 from the Satpura Hills, Central India

Fig. 9. Rocks along the road leading to Pachmarhi town where the tspe specimens were collected.

opencc-by-4.0Mar 2017View details →
zenodo36/100

Fig. 1 in A new rupicolous species of gecko of the genus Hemidactylus Oken, 1817 from the Satpura Hills, Central India

Fig. 1. Hemidactylus chipkali sp. nov. male holotspe NCBS AT107, (A) dorsal view, (b) ventral view.

opencc-by-4.0Mar 2017View details →
zenodo36/100

Fig. 4 in A new rupicolous species of gecko of the genus Hemidactylus Oken, 1817 from the Satpura Hills, Central India

Fig. 4. Hemidactylus chipkali sp. nov. male holotspe NCBS AT107 (A) right manus, (B) right pes.

opencc-by-4.0Mar 2017View details →
zenodo36/100

Figure 3. Camera trap 2 in Evidence of presence of Marbled Cat Pardofelis marmorata (Martin, 1837) in Neora Valley National Park, Central Himalaya, India

Figure 3. Camera trap 2 recording the second individual.

opencc-by-4.0Dec 2019View details →

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Allen Brain Atlas

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DANDI Archive for NWB datasets

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dandi-nwb
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Last verified 2026-04-30Open record

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.

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Last verified 2026-04-29Open record

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.

openneuro
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Last verified 2026-04-29Open record