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Text-fig. 6. Cornaceae. Alangium (a–e), Mastixia (f–r). a–e: Alangium, DMNH EPI.47806. Scale bar = 1 cm. b, e: Reflected light, palladium coated. a, c, d: Micro-CT scan surface rendering. a: Locule cast, face view of slightly larger locule. b: Face view of slightly smaller locule. c: Lateral view of the endocarp, the slightly enlarged left carpel separated from the smaller carpel by a longitudinal septal groove; the faint pitting in the groove suggestive of the septal vasculature. d, e: Views of either end of the endocarp, illustrating the size difference between the two carpels and the pitting in the septal groove suggestive of the septal vasculature. f–k: Mastixia USNM PAL 772362. Scale bar = 1 cm. f, g, j, k: reflected light, palladium coated; h, i: micro-CT scan surface rendering. f: Lateral view of endocarp, inferred dorsal germination valve groove facing the viewer. Note irregular, rugose, longitudinal ridges. g: Lateral view of endocarp, inferred germination valve with median longitudinal groove to left. h: Lateral view of endocarp reoriented with the same longitudinal groove to the right. i: Lateral view, rotated to ventral surface. j: View of one end of the endocarp, germination valve groove up. k: Opposite end view, with prominent radial ridges and intervening grooves, germination valve groove up. l–r: Mastixia USNM PAL 772363. Scale bar = 1 cm. l: View of one face of endocarp, displaying a groove that may represent the surficial expression of the dorsal infold of a Mastixia-like germination valve. Surface badly eroded, reflected light, palladium coated. m: Opposite face of endocarp displaying extensive erosion and a central hole interpreted as feeding damage. n: Lateral view; m, n micro-CT scan surface renderings. o: A view of one end, displaying the prominent groove, reflected light, palladium coated. p: Opposite end to (o). q: View as in (o); p, q micro-CT scan surface renderings. r: Virtual transverse section showing curved locule (arrows). in The Early Middle Eocene Wagon Bed Carpoflora Of Central Wyoming, U.S.A.

Text-fig. 6. Cornaceae. Alangium (a–e), Mastixia (f–r). a–e: Alangium, DMNH EPI.47806. Scale bar = 1 cm. b, e: Reflected light, palladium coated. a, c, d: Micro-CT scan surface rendering. a: Locule cast, face view of slightly larger locule. b: Face view of slightly smaller locule. c: Lateral view of the endocarp, the slightly enlarged left carpel separated from the smaller carpel by a longitudinal septal groove; the faint pitting in the groove suggestive of the septal vasculature. d, e: Views of either end of the endocarp, illustrating the size difference between the two carpels and the pitting in the septal groove suggestive of the septal vasculature. f–k: Mastixia USNM PAL 772362. Scale bar = 1 cm. f, g, j, k: reflected light, palladium coated; h, i: micro-CT scan surface rendering. f: Lateral view of endocarp, inferred dorsal germination valve groove facing the viewer. Note irregular, rugose, longitudinal ridges. g: Lateral view of endocarp, inferred germination valve with median longitudinal groove to left. h: Lateral view of endocarp reoriented with the same longitudinal groove to the right. i: Lateral view, rotated to ventral surface. j: View of one end of the endocarp, germination valve groove up. k: Opposite end view, with prominent radial ridges and intervening grooves, germination valve groove up. l–r: Mastixia USNM PAL 772363. Scale bar = 1 cm. l: View of one face of endocarp, displaying a groove that may represent the surficial expression of the dorsal infold of a Mastixia-like germination valve. Surface badly eroded, reflected light, palladium coated. m: Opposite face of endocarp displaying extensive erosion and a central hole interpreted as feeding damage. n: Lateral view; m, n micro-CT scan surface renderings. o: A view of one end, displaying the prominent groove, reflected light, palladium coated. p: Opposite end to (o). q: View as in (o); p, q micro-CT scan surface renderings. r: Virtual transverse section showing curved locule (arrows).

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Text-fig. 8. Carpolithes (a–t). a–e: Carpolithes sp. 1. USNM PAL 772366. Scale bar = 1 cm. a: Lateral view of endocarp, note two longitudinal ridges. b: Lateral view of endocarp rotated 90° from (a), note single lateral ridge in center, a, b reflected light, palladium coated. c: Lateral view, Micro-CT scan surface rendering. d: View of rounded end of the endocarp, reflected light, palladium coated. e: View of the opposite (pointed) end of the endocarp, note split; reflected light, palladium coated. f–j: Carpolithes sp. 2. USNM PAL 772367. Scale bar = 5 mm. f: Lateral view, base down; note raphe-like structure (arrow), reflected light, palladium coated. g: Lateral view, the raphe-like structure extending vertically from the base. h: Lateral view, rotated 90° from (g). i: Lateral view, the opposite face to that in (h). j: Basal view, raphe-like structure running from the center to the right of the image. g–j: CT scan surface renderings. k–o: Carpolithes sp. 3 USNM PAL 772368. Scale bar = 5 mm. k: Ventral view of the specimen, note flared apical extension, reflected light, uncoated. l: Dorsal view illustrating the flared apical extension, rotated 180o from (k). m: Lateral view rotated 90° from that in (l). n: Apical view, the apical extension with central pore (arrow) and a clear lineation running down the side to the top of the image. o: Basal view. l–o: Micro-CT scan surface renderings. p–t: Carpolithes sp. 4. USNM PAL 772369. Scale bar = 3 mm. p: Basal view illustrating the concentric rings of radiating possible cells surrounding a central depression. q: Lateral view, base down, note possible cellular pattern. r: Lateral view, rotated 180° from (q), base down; p–r: reflected light, palladium coated. s, t: Basal and lateral views, micro-CT scan surface renderings. in The Early Middle Eocene Wagon Bed Carpoflora Of Central Wyoming, U.S.A.

Text-fig. 8. Carpolithes (a–t). a–e: Carpolithes sp. 1. USNM PAL 772366. Scale bar = 1 cm. a: Lateral view of endocarp, note two longitudinal ridges. b: Lateral view of endocarp rotated 90° from (a), note single lateral ridge in center, a, b reflected light, palladium coated. c: Lateral view, Micro-CT scan surface rendering. d: View of rounded end of the endocarp, reflected light, palladium coated. e: View of the opposite (pointed) end of the endocarp, note split; reflected light, palladium coated. f–j: Carpolithes sp. 2. USNM PAL 772367. Scale bar = 5 mm. f: Lateral view, base down; note raphe-like structure (arrow), reflected light, palladium coated. g: Lateral view, the raphe-like structure extending vertically from the base. h: Lateral view, rotated 90° from (g). i: Lateral view, the opposite face to that in (h). j: Basal view, raphe-like structure running from the center to the right of the image. g–j: CT scan surface renderings. k–o: Carpolithes sp. 3 USNM PAL 772368. Scale bar = 5 mm. k: Ventral view of the specimen, note flared apical extension, reflected light, uncoated. l: Dorsal view illustrating the flared apical extension, rotated 180o from (k). m: Lateral view rotated 90° from that in (l). n: Apical view, the apical extension with central pore (arrow) and a clear lineation running down the side to the top of the image. o: Basal view. l–o: Micro-CT scan surface renderings. p–t: Carpolithes sp. 4. USNM PAL 772369. Scale bar = 3 mm. p: Basal view illustrating the concentric rings of radiating possible cells surrounding a central depression. q: Lateral view, base down, note possible cellular pattern. r: Lateral view, rotated 180° from (q), base down; p–r: reflected light, palladium coated. s, t: Basal and lateral views, micro-CT scan surface renderings.

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Text-fig. 9. Carpolithes (a–r). a–d: Carpolithes sp. 5. USNM PAL 772370. Scale bar = 5 mm, reflected light, palladium coated. a: Lateral view of seed, apex up, possible raphe descending from apex toward viewer. b: Lateral view of seed, apex up, possible raphe on right. c: Lateral view, opposite side, apex up, possible raphe on left. d: Apical view, note central pit with raphe descending towards bottom margin. e–h: Carpolithes sp. 6. USNM PAL 772371. Scale bar = 5 mm. e: Basal view illustrating depression and keel in plane of bisymmetry, reflected light, palladium coated. f–h: Micro-CT scan surface rendering. f: Lateral view showing relatively smooth rounded surface. g: Specimen rotated 180° from (f), surface partially eroded. h: Longitudinal view, showing median keel. i–m: Carpolithes sp. 7 USNM PAL 772372. Scale bar = 5 mm. i: View of intact face of globose fruit, possible apical constriction at top. j: Lateral view, intact surface to right, possible apical constriction at top, both micro-CT scan surface renderings. k: Apical view. l: Face view illustrating the mineral filling and the fine, radiating structure of the fruit wall on the left and right margins, both reflected light, palladium coated. m: Closeup of the cellular layer on the left of (l), micro-CT scan surface rendering. n–p: Carpolithes sp. 8. USNM PAL 772373. Scale bar = 3 mm, reflected light, palladium coated. n: Lateral view of pyrene-like structure, one ridge running vertically in the center of view, the other two forming the left and right margins. o: Lateral view of pyrene-like structure, ridge in (n) on the left. p: End-on view illustrating one convex, one concave, and one relatively flat to very slightly concave face. q, r: Carpolithes sp. 9 USNM PAL 772374. Scale bar = 5 mm, reflected light, palladium coated. q: Exterior of the smooth broken half-sphere. r: Interior of the broken half-sphere. in The Early Middle Eocene Wagon Bed Carpoflora Of Central Wyoming, U.S.A.

Text-fig. 9. Carpolithes (a–r). a–d: Carpolithes sp. 5. USNM PAL 772370. Scale bar = 5 mm, reflected light, palladium coated. a: Lateral view of seed, apex up, possible raphe descending from apex toward viewer. b: Lateral view of seed, apex up, possible raphe on right. c: Lateral view, opposite side, apex up, possible raphe on left. d: Apical view, note central pit with raphe descending towards bottom margin. e–h: Carpolithes sp. 6. USNM PAL 772371. Scale bar = 5 mm. e: Basal view illustrating depression and keel in plane of bisymmetry, reflected light, palladium coated. f–h: Micro-CT scan surface rendering. f: Lateral view showing relatively smooth rounded surface. g: Specimen rotated 180° from (f), surface partially eroded. h: Longitudinal view, showing median keel. i–m: Carpolithes sp. 7 USNM PAL 772372. Scale bar = 5 mm. i: View of intact face of globose fruit, possible apical constriction at top. j: Lateral view, intact surface to right, possible apical constriction at top, both micro-CT scan surface renderings. k: Apical view. l: Face view illustrating the mineral filling and the fine, radiating structure of the fruit wall on the left and right margins, both reflected light, palladium coated. m: Closeup of the cellular layer on the left of (l), micro-CT scan surface rendering. n–p: Carpolithes sp. 8. USNM PAL 772373. Scale bar = 3 mm, reflected light, palladium coated. n: Lateral view of pyrene-like structure, one ridge running vertically in the center of view, the other two forming the left and right margins. o: Lateral view of pyrene-like structure, ridge in (n) on the left. p: End-on view illustrating one convex, one concave, and one relatively flat to very slightly concave face. q, r: Carpolithes sp. 9 USNM PAL 772374. Scale bar = 5 mm, reflected light, palladium coated. q: Exterior of the smooth broken half-sphere. r: Interior of the broken half-sphere.

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Supplementary material 1 from: Yemshanov D, Koch F, Ducey M, Haack R, Siltanen M, Wilson K (2013) Quantifying uncertainty in pest risk maps and assessments: adopting a risk-averse decision maker's perspective. NeoBiota 18: 193-218. https://doi.org/10.3897/neobiota.18.4002

Risk of out-of-state (out-of-province) locations to be the source of forest pests transported in firewood carried by campers. The risk rank values are based on the delineation of nested non-dominant sets via the first-degree stochastic dominance rule (FSD). The ranks close to 1.0 denote the highest risk of pest arrival and the ranks close to 0 denote the lowest risk. (doi: 10.3897/neobiota.18.4002.app1) File format: Adobe PDF File (pdf).:

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Supplementary material 4 from: Yemshanov D, Koch F, Ducey M, Haack R, Siltanen M, Wilson K (2013) Quantifying uncertainty in pest risk maps and assessments: adopting a risk-averse decision maker's perspective. NeoBiota 18: 193-218. https://doi.org/10.3897/neobiota.18.4002

Summary of differences between risk rank classes, 0–0.05, 0.05–0.25, 0.25–0.5, 0.5–0.75, 0.75–0.95 and 0.95–1 in the delineations based on the FSD and SSD rules. (doi: 10.3897/neobiota.18.4002.app4) File format: Adobe PDF File (pdf).:

opencc-by-4.0Sep 2013View details →
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Рис. 1. Рисуночный кΛюч ΑΛя опреΑеΛения виΑов роΑа Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — гоΛова самца; B, D, F, H, J, L, N, P, R, T, V, X — заΑний конец теΛа самца; Y — гоΛова самки; Z — заΑний конец теΛа самки Fig. 1. Pictorial key to the species of the genus Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — head of male; B, D, F, H, J, L, N, P, R, T, V, X — posterior body end of male; Y — head of female; Z — posterior body end of female in Morphological review of the genus Ethmolaimus de Man 1880 (Nematoda, Chromadorida)

Рис. 1. Рисуночный кΛюч ΑΛя опреΑеΛения виΑов роΑа Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — гоΛова самца; B, D, F, H, J, L, N, P, R, T, V, X — заΑний конец теΛа самца; Y — гоΛова самки; Z — заΑний конец теΛа самки Fig. 1. Pictorial key to the species of the genus Ethmolaimus de Man, 1880: A, C, E, G, I, K, M, O, Q, S, U, W — head of male; B, D, F, H, J, L, N, P, R, T, V, X — posterior body end of male; Y — head of female; Z — posterior body end of female

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Фототаблица 3 Plate 3 A–D – Anisocorbula venustа (Gould, 1861): СевернаЯ КореЯ, провинциЯ Северный Хамгён, Чипсам, длина 7.5 мм, ЗМ ДВФУ № 38636/Bv-5916; E, F – Diplodonta semiasperoides Nomura, 1932: СевернаЯ КореЯ, провинциЯ Северный Хамгён, Чипсам, длина 20.0 мм, ЗМ ДВФУ № 38634/Bv-5914; G, H – Protothaca (Novathaca) jedoensis (Lischke, 1874): СевернаЯ КореЯ, провинциЯ Северный Хамгён, длина 40.1 мм, ЗМ ДВФУ № 38358/Bv-5774; I, J – Felaniella usta (Gould, 1861): СевернаЯ КореЯ, провинциЯ Северный Хамгён, длина 33.7 мм, ЗМ ДВФУ № 38354/Bv-5770; K–N – Ruditapes philippinarium (A. Adams et Reeve, 1850): СевернаЯ КореЯ, провинциЯ Северный Хамгён, Чипсам, длина 18.6 мм, ЗМ ДВФУ № 38618/Bv-5899; O–R – Gomphina (Macridiscus) melanaegis Römer, 1860: СевернаЯ КореЯ, провинциЯ Северный Хамгён, ЁмбудЖин, длина 44.1 мм, ЗМ ДВФУ № 38350/Bv-5766; S–V – Callista (Ezocallista) brevisiphonata (Carpenter, 1864): СевернаЯ КореЯ, провинциЯ Северный Хамгён, г. ЧхондЖин, рынок, длина 76.3 мм, ЗМ ДВФУ № 38356/Bv-5772; W –Z – Protothaca (Protothaca) euglypta (Sowerby III, 1914): СевернаЯ КореЯ, провинциЯ Северный Хамгён, длина 42.1 мм, ЗМ ДВФУ № 38359/Bv-5775. A–D – Anisocorbula venustа (Gould, 1861): North Korea, North Hamgyong Province, Jipsam, shell length 7.5 mm, ZMFU no. 38636/Bv-5916; E, F – Diplodonta semiasperoides Nomura, 1932: North Korea, North Hamgyong Province, Jipsam, shell length 20.0 mm, ZMFU no. 38634/Bv-5914; G, H – Protothaca (Novathaca) jedoensis (Lischke, 1874): North Korea, North Hamgyong Province, shell length 40.1 mm, ZMFU no. 38358/Bv-5774; I, J – Felaniella usta (Gould, 1861): North Korea, North Hamgyong Province, shell length 33.7 mm, ZMFU no. 38354/Bv-5770; K–N – Ruditapes philippinarium (A. Adams et Reeve, 1850): North Korea, North Hamgyong Province, Jipsam, shell length 18.6 mm, ZMFU no. 38618/Bv-5899; O–R – Gomphina (Macridiscus) melanaegis Römer, 1860: North Korea, North Hamgyong Province, Yombunjin, shell length 44.1 mm, ZMFU no. 38350/Bv-5766; S–V – Callista (Ezocallista) brevisiphonata (Carpenter, 1864): North Korea, North Hamgyong Province, Chongjin City, market, shell length 76.3 mm, ZMFU no. 38356/Bv-5772; W –Z – Protothaca (Protothaca) euglypta (Sowerby III, 1914): North Korea, North Hamgyong Province, shell length 42.1 mm, ZMFU no. 38359/Bv-5775. in On the bivalve molluscan fauna of North Hamgyong Province (North Korea)

Фототаблица 3 Plate 3 A–D – Anisocorbula venustа (Gould, 1861): СевернаЯ КореЯ, провинциЯ Северный Хамгён, Чипсам, длина 7.5 мм, ЗМ ДВФУ № 38636/Bv-5916; E, F – Diplodonta semiasperoides Nomura, 1932: СевернаЯ КореЯ, провинциЯ Северный Хамгён, Чипсам, длина 20.0 мм, ЗМ ДВФУ № 38634/Bv-5914; G, H – Protothaca (Novathaca) jedoensis (Lischke, 1874): СевернаЯ КореЯ, провинциЯ Северный Хамгён, длина 40.1 мм, ЗМ ДВФУ № 38358/Bv-5774; I, J – Felaniella usta (Gould, 1861): СевернаЯ КореЯ, провинциЯ Северный Хамгён, длина 33.7 мм, ЗМ ДВФУ № 38354/Bv-5770; K–N – Ruditapes philippinarium (A. Adams et Reeve, 1850): СевернаЯ КореЯ, провинциЯ Северный Хамгён, Чипсам, длина 18.6 мм, ЗМ ДВФУ № 38618/Bv-5899; O–R – Gomphina (Macridiscus) melanaegis Römer, 1860: СевернаЯ КореЯ, провинциЯ Северный Хамгён, ЁмбудЖин, длина 44.1 мм, ЗМ ДВФУ № 38350/Bv-5766; S–V – Callista (Ezocallista) brevisiphonata (Carpenter, 1864): СевернаЯ КореЯ, провинциЯ Северный Хамгён, г. ЧхондЖин, рынок, длина 76.3 мм, ЗМ ДВФУ № 38356/Bv-5772; W –Z – Protothaca (Protothaca) euglypta (Sowerby III, 1914): СевернаЯ КореЯ, провинциЯ Северный Хамгён, длина 42.1 мм, ЗМ ДВФУ № 38359/Bv-5775. A–D – Anisocorbula venustа (Gould, 1861): North Korea, North Hamgyong Province, Jipsam, shell length 7.5 mm, ZMFU no. 38636/Bv-5916; E, F – Diplodonta semiasperoides Nomura, 1932: North Korea, North Hamgyong Province, Jipsam, shell length 20.0 mm, ZMFU no. 38634/Bv-5914; G, H – Protothaca (Novathaca) jedoensis (Lischke, 1874): North Korea, North Hamgyong Province, shell length 40.1 mm, ZMFU no. 38358/Bv-5774; I, J – Felaniella usta (Gould, 1861): North Korea, North Hamgyong Province, shell length 33.7 mm, ZMFU no. 38354/Bv-5770; K–N – Ruditapes philippinarium (A. Adams et Reeve, 1850): North Korea, North Hamgyong Province, Jipsam, shell length 18.6 mm, ZMFU no. 38618/Bv-5899; O–R – Gomphina (Macridiscus) melanaegis Römer, 1860: North Korea, North Hamgyong Province, Yombunjin, shell length 44.1 mm, ZMFU no. 38350/Bv-5766; S–V – Callista (Ezocallista) brevisiphonata (Carpenter, 1864): North Korea, North Hamgyong Province, Chongjin City, market, shell length 76.3 mm, ZMFU no. 38356/Bv-5772; W –Z – Protothaca (Protothaca) euglypta (Sowerby III, 1914): North Korea, North Hamgyong Province, shell length 42.1 mm, ZMFU no. 38359/Bv-5775.

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Supplementary material from: Wolz D, Seidel-Greiff R, Behnisch T, Kruppke I, Kuznik I, Bertram P, Jäger H, Gude M, Cherif C (2024) Potentials of Polyacrylonitrile Substitution by Lignin for Continuous Manufactured Lignin/Polyacrylonitrile-Blend-Based Carbon Fibers

<p>This material contains all research data concerning the analyses conducted in the work taht was published as "<strong>Potentials of Polyacrylonitrile Substitution by Lignin for Continuous Manufactured Lignin/Polyacrylonitrile-Blend-Based Carbon Fibers</strong>" in the <strong>MDPI</strong> journal&nbsp;<strong>Fibers.</strong></p> <p>Process data cannot be included for reasons of confidentiality.</p>

opencc-by-4.0Jun 2024View details →
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Dataset: IQ Global Equity R&D Leaders ETF (WRND) Stock Performance

This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.

opencc-zeroJun 2024View details →
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Dataset: Themes US R&D Champions ETF (USRD) Stock Performance

This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.

opencc-zeroJun 2024View details →
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Dataset: IQ U.S. Large Cap R&D Leaders ETF (LRND) Stock Performance

This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.

opencc-zeroJun 2024View details →
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Fig. 3 in Naturalization Of Melanoides Tuberculata And Tarebia Granifera (Thiaridae, Gastropoda) M O L L U S K S U N D E R T H E H Y D R O E C O L O G I C A L Conditions Of Zaporizhzhya Npp Cooling Pond

Fig. 3. Percentage ratio of Thiaridae mollusks on concrete walls of the outflow channels of Zaporizhzhya NPP.

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Fig. 1 in Naturalization Of Melanoides Tuberculata And Tarebia Granifera (Thiaridae, Gastropoda) M O L L U S K S U N D E R T H E H Y D R O E C O L O G I C A L Conditions Of Zaporizhzhya Npp Cooling Pond

Fig. 1. Melanoides tuberculata and Tarebia granifera (Thiaridae, Gastropoda) in and its localities in Ukraine: 1 – the cooling pond of the Zaporizhzhya NPP (47°50'42″N; 35°56'89"E); 2 – cluster of mollusks on concrete walls of the channel of the nuclear power plant; 3 – accumulation of M. tuberculata on a stony substrate in the region of the discharge channel of the nuclear power plant, September 15, 2017; 4 – accumulation of M. tuberculata and T. granifera on reed roots.

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Fig. 4 in M Or P Ho L O Gi Ca L Va R Iati On An D P Op U Lat Io N Structure Of The Natterjack Toad, Epidalea Calamita, In Northern Part Of The Range In Belarus

Fig. 4. Variation of the ratios males and females in the Natterjack toad Epidalea calamita population during the activity season in Belarus.

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Fig. 3 in M Or P Ho L O Gi Ca L Va R Iati On An D P Op U Lat Io N Structure Of The Natterjack Toad, Epidalea Calamita, In Northern Part Of The Range In Belarus

Fig. 3. The color differences of males and females Natterjack toad Epidalea calamita in population of Belarus.

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Fig. 3 in M Or P Ho L O Gi Ca L Va R Iati On An D P Op U Lat Io N Structure Of The Natterjack Toad, Epidalea Calamita, In Northern Part Of The Range In Belarus

Fig. 3. The color differences of males and females Natterjack toad Epidalea calamita in population of Belarus.

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Fig.1 in R Ec O V E Re D S Ui Ta Bi Li T Y O F D E Er H A B Itat In Hem Ibo Rea L W O Odl And 23 Ye Ars Afte R Va St Forest Fire In Slītere National Park, Latvia

Fig.1. Location of pellet group counts and habitat characteristics summarized at a hexagon level (10ha) regarding the borders of fire-affected area.

opencc-by-4.0Dec 2017View details →
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Fig. 3 in T H E I P B S T E C H N I Q U E A P P L I C At I O N F O R D N A Fingerprinting Of Perch

Fig. 3. PCR products of DNA samples extracted from blood (B) and muscle (T) tissues and amplified by the primer 2080.

opencc-by-4.0Dec 2016View details →
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Fig. 2 in T H E I P B S T E C H N I Q U E A P P L I C At I O N F O R D N A Fingerprinting Of Perch

Fig. 2. PCR products of four samples from lakes Babites (B) and Kāla (K) and negative control (-) grouped by two different retrotransposon-based primers.

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Fig.1 in T H E I P B S T E C H N I Q U E A P P L I C At I O N F O R D N A Fingerprinting Of Perch

Fig.1. Quality testing of DNA using 1.7% agarose gel electrophoresis for 2 hours at 80 V. The high concentrations of genomic DNA was found in samples: 1, 2, 3, 4, 6, 7, 8; 5 and 9 - DNA in the sample is not sufficient for further use; 10 – DNA ladder.

opencc-by-4.0Dec 2016View details →

ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
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
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record