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343 results for “reproductive system”
Supplementary datasets for manuscript titled: Seasonal tissue-specific gene expression in wild crown-of-thorns starfish reveals reproductive and stress-related transcriptional systems
<p>Supplementary datasets for manuscript titled: Seasonal tissue-specific gene expression in wild crown-of-thorns starfish reveals reproductive and stress-related transcriptional systems</p>
Reproduction package for the paper "Exploring the directly imaged HD 1160 system through spectroscopic characterization and high-cadence variability monitoring"
<p>This is a basic reproduction package for the paper <a href="https://doi.org/10.1093/mnras/stae1315">"Exploring the directly imaged HD 1160 system through spectroscopic characterization and high-cadence variability monitoring" by Sutlieff et al. (2024)</a>. It aims to provide the most important data products to check and reproduce the main results of the paper.</p>
Listening preferences for the different reproduction systems Stereo, Surround, and Wave Field Synthesis in the context of popular music
<p>We did a paired comparison preference test where listeners rated their listening preference for four different pop musical pieces presented by WFS, stereo or surround. The musical pieces were all mixed by the same person in order to try to minimize the influence of the mix on the ratings, but still trying to get the best out of every system, see [1] for details. The mixes are available at https://doi.org/10.14279/depositonce-5173.</p> <p>Here, we provide the results of the 22 listeners that participated in the experiment together with an analysis which calculates a Bradley-Terry-Luce model after Wickelmayer et al. [2].</p> <p>[1] Hold, C., Wierstorf, H., Raake, A. (2016), “The Difference Between Stereophony and Wave Field Synthesis in the Context of Popular Music,” 140th AES Convention, Paper 9533</p> <p>[2] https://cran.r-project.org/web/packages/eba/index.html</p>
Operating diagram of hatching module in Zoug jars, this system consists of a 300-litre temperature-controlled isothermal enclosure containing 10 one-litre Zoug jars, each able to accommodate several hundred eggs. An ascending current holds the eggs in suspension and carries the larvae to the surface. Another bottle connected to this device collects the larvae. The water circulating in the jars is independent of that used in the filtration circuit. A cooling unit and UV sterilizer complete the installation. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Operating diagram of hatching module in Zoug jars, this system consists of a 300-litre temperature-controlled isothermal enclosure containing 10 one-litre Zoug jars, each able to accommodate several hundred eggs. An ascending current holds the eggs in suspension and carries the larvae to the surface. Another bottle connected to this device collects the larvae. The water circulating in the jars is independent of that used in the filtration circuit. A cooling unit and UV sterilizer complete the installation.
Operating diagram of DR1/DR2 double riffle; it consists of two independent sections (DR1 and DR2), each containing 630 litres of water and measuring 2.5 x 0.6 m. Each section contains a filtration system separate from the fish, a cooling unit and an ultraviolet sterilizer. An 80 W UQL lamp completes the lighting of the module lit during the day. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum
Operating diagram of DR1/DR2 double riffle; it consists of two independent sections (DR1 and DR2), each containing 630 litres of water and measuring 2.5 x 0.6 m. Each section contains a filtration system separate from the fish, a cooling unit and an ultraviolet sterilizer. An 80 W UQL lamp completes the lighting of the module lit during the day.
F I G U R E 4 in Toward optimising reproductive output of Eristalis tenax (Diptera: Syrphidae) for commercial mass rearing systems
F I G U R E 4 Time to first hatch (hours) and number of hatched larvae per egg cluster (mean ± SE) for Eristalis tenax egg clusters reared at 12 (n = 6), 16.5 (n = 5), 21.5 (n = 6), 25.5 (n = 5), 30 C (n = 6). Letters indicate significant differences in time to first hatch (bold) and hatched larval output at each temperature (p <0.05).
T A B L E 1 in Toward optimising reproductive output of Eristalis tenax (Diptera: Syrphidae) for commercial mass rearing systems
T A B L E 1 Summary of percentage of females mated, observed total egg cluster count and expected total egg cluster count proportionate to the number of females per cage, and differences between observed and expected egg cluster counts (% of expected) for Eristalis tenax at three different sex ratio treatments: 20:40, 30:30 and 40:20 female to male.
F I G U R E 3 in Toward optimising reproductive output of Eristalis tenax (Diptera: Syrphidae) for commercial mass rearing systems
F I G U R E 3 Percentage of total Eristalis tenax egg cluster output per week from eclosion, from four cages in the 30:30 sex ratio treatment (n = 196) and three cages in the 60 fly per cage stocking density treatment with a 1:1 sex ratio (n = 62).
F I G U R E 2 Survival curves for female Eristalis tenax flies observed for 11 in Toward optimising reproductive output of Eristalis tenax (Diptera: Syrphidae) for commercial mass rearing systems
F I G U R E 2 Survival curves for female Eristalis tenax flies observed for 11 weeks in four adult density treatments; 15:15 (n = 45), 30:30 (n = 90), 60:60 (n = 180), 120:120 (n = 360). Letters indicate significant differences (p <0.05) between survival curves of treatments.
F I G U R E 1 in Toward optimising reproductive output of Eristalis tenax (Diptera: Syrphidae) for commercial mass rearing systems
F I G U R E 1 Percentage of mated Eristalis tenax females in a captive population over time following eclosion (mean ± SE); 2 weeks (n = 15), 4 weeks (n = 29), 5 weeks (n = 15), 7 weeks (n = 4), 9 weeks (n = 16).
РИС. 4. Дистальные отделы половой системы Arion vulgaris иЗ г. Минска: А – атриум; E – Эпифаллус; PN – пневмостон; SP – семЯприемник; OV – Яйцевод; SPD – проток семЯприемника; VD – семЯпровод. FIG. 4. Distal parts of the reproductive system of Arion vulgaris from the Minsk city: А – atrium; E – epiphallus; PN – pneumostone; SP – spermatheca (bursa copulatrix); OV – free oviduct; SPD – spermatheca duct (duct of bursa copulatrix); VD – vas deferens. in Новые находки синантропных слиЗней Limacus maculatus и Arion vulgaris (Mollusca, Gastropoda, Stylommatophora) в Беларуси
РИС. 4. Дистальные отделы половой системы Arion vulgaris иЗ г. Минска: А – атриум; E – Эпифаллус; PN – пневмостон; SP – семЯприемник; OV – Яйцевод; SPD – проток семЯприемника; VD – семЯпровод. FIG. 4. Distal parts of the reproductive system of Arion vulgaris from the Minsk city: А – atrium; E – epiphallus; PN – pneumostone; SP – spermatheca (bursa copulatrix); OV – free oviduct; SPD – spermatheca duct (duct of bursa copulatrix); VD – vas deferens.
РИС. 2. Дистальные отделы половой системы Limacus maculatus иЗ окрестностей г. ГомелЯ: А – атриум; P – пенис; PR – простата; SP – семЯприемник; OV – Яйцевод; SPOV – спермовидукт; SPD – проток семЯприемника; VD – семЯпровод. FIG. 2. Distal parts of the reproductive system of Limacus maculatus from the vicinity of Gomel city: А – atrium; P – penis; PR – prostata; SP – spermatheca (bursa copulatrix); OV – free oviduct; SPOV – spermoviduct; SPD – spermatheca duct (duct of bursa copulatrix); VD – vas deferens. in Новые находки синантропных слиЗней Limacus maculatus и Arion vulgaris (Mollusca, Gastropoda, Stylommatophora) в Беларуси
РИС. 2. Дистальные отделы половой системы Limacus maculatus иЗ окрестностей г. ГомелЯ: А – атриум; P – пенис; PR – простата; SP – семЯприемник; OV – Яйцевод; SPOV – спермовидукт; SPD – проток семЯприемника; VD – семЯпровод. FIG. 2. Distal parts of the reproductive system of Limacus maculatus from the vicinity of Gomel city: А – atrium; P – penis; PR – prostata; SP – spermatheca (bursa copulatrix); OV – free oviduct; SPOV – spermoviduct; SPD – spermatheca duct (duct of bursa copulatrix); VD – vas deferens.
РИС. 2. Дистальные отделы половой системы особей иЗ смеШанной колонии Monacha claustralis (A–D) и M. cartusiana (E–F). D, F. Вскрытый атриум у двух видов. Условные сокраЩениЯ: at – атриум; atpl – складка внутри атриума; ep – Эпифаллус; fl – бич; mg – слиЗистые желеЗы; pe – пенис; pp – папилла пениса; va – вагина; vap1 – баЗальнаЯ часть вагинального придатка; vap2 – апикальнаЯ часть вагинального придатка; vlb – латеральное выпЯчивание вагины. МасШтаб 1 мм. FIG. 2. Distal parts of the reproductive system of specimens from a mixed colony of Monacha claustralis (A–D) and M. cartusiana (E–F). D, F. Dissected atrium in two species. Abbreviations: at – atrium; atpl – pleat inside the atrium; ep – epiphallus; fl – flagellum; mg – mucus glands; pe – penis; pp – penial papilla; va – vagina; vap1 – basal part of vaginal appendage; vap2 – apical part of vaginal appendage; vlb – lateral bulge of the vagina. Scale bars 1 mm. in Monacha claustralis и M. cartusiana (Gastropoda, Hygromiidae) - два криптических вида антропохорных наЗемных моллюсков на Западе Украины
РИС. 2. Дистальные отделы половой системы особей иЗ смеШанной колонии Monacha claustralis (A–D) и M. cartusiana (E–F). D, F. Вскрытый атриум у двух видов. Условные сокраЩениЯ: at – атриум; atpl – складка внутри атриума; ep – Эпифаллус; fl – бич; mg – слиЗистые желеЗы; pe – пенис; pp – папилла пениса; va – вагина; vap1 – баЗальнаЯ часть вагинального придатка; vap2 – апикальнаЯ часть вагинального придатка; vlb – латеральное выпЯчивание вагины. МасШтаб 1 мм. FIG. 2. Distal parts of the reproductive system of specimens from a mixed colony of Monacha claustralis (A–D) and M. cartusiana (E–F). D, F. Dissected atrium in two species. Abbreviations: at – atrium; atpl – pleat inside the atrium; ep – epiphallus; fl – flagellum; mg – mucus glands; pe – penis; pp – penial papilla; va – vagina; vap1 – basal part of vaginal appendage; vap2 – apical part of vaginal appendage; vlb – lateral bulge of the vagina. Scale bars 1 mm.
Figs 20–31. Reproductive System. 20–22 in A morphological study on reproductive system of Tipula (Yamatotipula) nova Walker (Diptera: Tipulidae)
Figs 20–31. Reproductive System. 20–22, Semen pump, lateral view. 23–27. Vaginal apodeme and sternite IX. 28–31. Vaginal apodeme. 20. T. stackelbergi (after Salmela, 2012). 21. T. pruinosa (after Salmela, 2012). 22. T. pierrei (after Stary and Martinovsky, 1969). 23. T. stackelbergi (after Salmela, 2012). 24. T. chonsaniana (after Salmela, 2012). 25. T. freyana (after Salmela, 2012). 26. T. pruinosa (after Salmela, 2012). 27. T. moesta (after Salmela, 2012). 28. T. tephrocephala (after Frommer, 1963). 29. T. spernax (after Frommer, 1963). 30. T. furca (after Frommer, 1963). 31. T. tricolor (after Frommer, 1963).
Figs 12–19. Reproductive System. 12–16 in A morphological study on reproductive system of Tipula (Yamatotipula) nova Walker (Diptera: Tipulidae)
Figs 12–19. Reproductive System. 12–16. Tipula (Yamatotipula) nova. 17–19. Semen pump, dorsal view. 12. Cercus, caudal view. 13. Hypovalva, dorsal view. 14. Vaginal apodeme and sternite IX, dorsal view. 15. Female internal reproductive system. 16. Egg. 17. T. stackelbergi (after Salmela, 2012). 18. T. pruinosa (after Salmela, 2012). 19. T. pierrei (after Stary and Martinovsky, 1969). Scale bars: 12–13 = 1.0 mm, 14–15 = 0.5 mm, 16 = 0.25 mm.
Figs 1–7 in A morphological study on reproductive system of Tipula (Yamatotipula) nova Walker (Diptera: Tipulidae)
Figs 1–7. Tipula (Yamatotipula) nova. 1. Male hypopygium, lateral view. 2. Male hypopygium, caudal view. 3. Male tergite IX, dorsal view. 4. Inner gonostylus, lateral view. 5. Outer gonostylus, lateral view. 6. Semen pump, lateral view. 7. Semen pump, dorsal view. Scale bars: 1–2 = 1.0 mm; 3, 6–7 = 0.5 mm; 4–5 = 0.25 mm.
Figs 8–11 in A morphological study on reproductive system of Tipula (Yamatotipula) nova Walker (Diptera: Tipulidae)
Figs 8–11. Tipula (Yamatotipula) nova. 8. Male internal reproductive system. 9. Female internal reproductive system, lateral view. 10. Ovipositor, lateral view. 11. Ovipositor, dorsal view. Scale bars: 8, 10 = 0.5 mm; 9, 11 = 1.0 mm.
Code to reproduce the figures in the paper 'Listener Preference for Different Reproduction Systems and Mixes in Popular Music'
<p>In this upload you find all the scripts and data you need in order to reproduce<br> the figure from the paper Wierstorf et al., "Listener Preference for Different<br> Reproduction Systems and Mixes in Popular Music" [1].</p> <p>Software Requirements<br> ---------------------</p> <p>For the statistic analysis you will need [python](https://www.python.org) and<br> [R](https://www.r-project.org). I have used python 3.5.2 and R 3.2.3 for<br> published analysis.</p> <p>Under R you need to install the [eba](https://cran.r-project.org/package=eba)<br> package, which implements the Bradley-Terry-Luce model. You can install it in R<br> by running `install.packages("eba")`.</p> <p>Under python you have to install pandas and numpy.</p> <p>Reproduce figures<br> -----------------</p> <p>All figures were plotted using gnuplot 5.0. Every figure folder has an<br> ``figXX.plt`` (replace ``XX`` by the figure number) file that you can execute<br> and you will get the resulting pdf file. For Fig. 5 up to Fig. 9, also a<br> ``figXX.sh`` file is provided, that will rerun the statistical analysis of the<br> data presented in the figures.</p> <p>References<br> ----------</p> <p>[1] H. Wierstorf, C. Hold, A. Raake, "Listener Preference for Different<br> Reproduction Systems and Mixes in Popular Music," J. Audio. Eng. Soc, submitted. <br> </p>
Рис. 2. Mukhina elegans (Mukhina, 1981) (самка): А — трофико-сенсорный отΔеΛ теΛа; Б — поΛовая система; В — переΔний конец теΛа; Г — хвост; À — фрагмент кутикуΛы с боковым поΛем бп — боковое поΛе, да — ΔробиΛьный аппарат, в — вуΛьва, зм — заΔняя матка, кб — карΔиаΛьный буΛьбус, кск — кΛетки среΔней кишки, нк — нервное коΛьцо, пм — переΔняя матка, р — ректум, рт — ренетта, с — сперма, ск — среΔняя кишка, сп — семяприемник, ф — фазмиΔы, хс — хейΛостома, эп — экскреторная пора, я — яичник Fig. 2. Mukhina elegans (Mukhina, 1981) (female): A — trophic-sensory part of the body; B — the reproductive system; C — the front end of the body; G — the tail; D — fragment of the cuticle with a side field бп — side field, да — crushing apparatus, в — vulva, зм — posterior uterus, кб — cardial bulb, кск — cells of the mid-intestine, нк — nerve ring, пм — anterior uterus, р — rectum, рт — renetta с — sperm, ск — mid-intestin, сп — seminal receptacle, ф — phasmids, хс — cheilostoma, эп — excretory pore, я — ovary in A New Species Sp. Nov. (Nematoda, Cephalobidae) From Primorsky Region (Russia)
Рис. 2. Mukhina elegans (Mukhina, 1981) (самка): А — трофико-сенсорный отΔеΛ теΛа; Б — поΛовая система; В — переΔний конец теΛа; Г — хвост; À — фрагмент кутикуΛы с боковым поΛем бп — боковое поΛе, да — ΔробиΛьный аппарат, в — вуΛьва, зм — заΔняя матка, кб — карΔиаΛьный буΛьбус, кск — кΛетки среΔней кишки, нк — нервное коΛьцо, пм — переΔняя матка, р — ректум, рт — ренетта, с — сперма, ск — среΔняя кишка, сп — семяприемник, ф — фазмиΔы, хс — хейΛостома, эп — экскреторная пора, я — яичник Fig. 2. Mukhina elegans (Mukhina, 1981) (female): A — trophic-sensory part of the body; B — the reproductive system; C — the front end of the body; G — the tail; D — fragment of the cuticle with a side field бп — side field, да — crushing apparatus, в — vulva, зм — posterior uterus, кб — cardial bulb, кск — cells of the mid-intestine, нк — nerve ring, пм — anterior uterus, р — rectum, рт — renetta с — sperm, ск — mid-intestin, сп — seminal receptacle, ф — phasmids, хс — cheilostoma, эп — excretory pore, я — ovary
Organisation of the digestive, excretory and reproductive systems in cysts of Thulinius ruffoi
<p>The data show the organisation of the digestive, excretory and reproductive systems in cysts of T. ruffoi at specific and unspecified stages of encystment. Text files contain additional technical information.</p>
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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.
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.