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428 results for “Marshalli”

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zenodo36/100

Marshall et al, 2012

<p>Dustin J. Marshall, Patrick J. Krug, Elena K. Kupriyanova, Maria Byrne, and Richard B. Emlet. 2012. The Biogeography of Marine Invertebrate Life Histories. Annual Review of Ecology, Evolution, and Systematics, Vol. 43: 97 -114. DOI: 10.1146/annurev-ecolsys-102710-145004</p>

opennotspecifiedAug 2024View details →
zenodo36/100

Marshall et al, 2012

Dustin J. Marshall, Patrick J. Krug, Elena K. Kupriyanova, Maria Byrne, and Richard B. Emlet. 2012. The Biogeography of Marine Invertebrate Life Histories. Annual Review of Ecology, Evolution, and Systematics, Vol. 43: 97 -114. DOI: 10.1146/annurev-ecolsys-102710-145004<p></p>

opennotspecifiedAug 2024View details →
zenodo36/100

Marshall and Valentine, 2010

Marshall, C.R. and Valentine, J.W., 2010. The importance of preadapted genomes in the origin of the animal bodyplans and the Cambrian explosion. Evolution: International Journal of Organic Evolution, 64(5), pp.1189-1201. <p></p>https://doi.org/10.1111/j.1558-5646.2009.00908.x<p></p>

opennotspecifiedAug 2024View details →
zenodo36/100

Data for Marshall et al, "Microbial metabolism disrupts cytokine activity to impact host immune response"

<p>Raw data for publication "Microbial metabolism disrupts cytokine activity to impact host immune response", Marshall EKP et al. The archive is organized into folders containing raw data pertaining to each figure.</p>

opencc-by-4.0Oct 2024View details →
zenodo36/100

data on Marshall properties for asphalt mixtures containing recycled concrete aggregate

<p>these data set about Marshall stability and flow and density void analysis for asphalt mixture surface layer incorporating recycled as coarse aggregate. the data are collected during the work at the transportation lab at Baghdad University and the asphalt lab in Iben-Rushud&nbsp; government company.</p>

opencc-by-4.0Jan 2023View details →
dryad36/100

Development and mortality of Marshallagia marshalli

<p><span>Across a species' range, populations are exposed to their local thermal environments, which on an evolutionary scale, may cause adaptative differences among populations.</span><span> Helminths often have broad geographic ranges and temperature-sensitive life stages, but little is known about whether and how local thermal adaptation can influence their response to climate change. We studied the thermal responses of the free-living stages of <em>Marshallagia marshalli</em>, a parasitic nematode of wild ungulates, along a latitudinal gradient. We first determine its distribution in wild sheep species in North America. Then we cultured <em>M. marshalli </em>eggs from different locations at temperatures from 5 to 38°C. We fit performance curves based on the Metabolic Theory of Ecology to determine whether development and mortality showed evidence of local thermal adaptation. We used parameter estimates in life-cycle-based host-parasite models to understand how local thermal responses may influence parasite performance under general and location-specific climate-change projections. We found that <em>M. marshalli</em> has a wide latitudinal and host range, infecting wild sheep species from New Mexico to Yukon. Increases in mortality and development time at higher temperatures were most evident for isolates from northern locations. Accounting for location-specific parasite parameters primarily influenced the magnitude of climate change parasite performance, while accounting for location-specific climates primarily influenced the phenology of parasite performance. Despite differences in development and mortality among <em>M. marshalli</em> populations, when using site-specific climate change projections, there was a similar magnitude of impact on the relative performance of <em>M. marshalli </em>among populations. Climate change is predicted to decrease the expected lifetime reproductive output of <em>M. marshalli </em>in all populations while delaying its seasonal peak by approximately one month. Our research suggests that accurate projections of the impacts of climate change on broadly distributed species need to consider local adaptations of organisms together with local temperature profiles and climate projections.</span></p>

opencc-zeroAug 2023View details →
zenodo36/100

Pesäpallo Ball Signed by Marshal Mannerheim

This leather ball was used in the 15th annual all-star game between East and West Finland, played in Jyväskylä on 11 September 1949. The Finnish Pesäpallo Association decided to use a ball that had been autographed by Marshal Carl Gustaf Mannerheim, Finland's wartime leader and retired former President. The same ball was used in all East-West games until 1974. The game in 1949 was played in pouring rain in front of 4,000 spectators and ended in a 9-9 tie. Source: Objaverse 1.0 / Sketchfab

opencc-byJun 2021View details →
zenodo36/100

Thurgood Marshall statue

![](https://jewishmuseummd.org/wp-content/uploads/2020/06/1994089002-2-500x362.jpg) [Thurgood Marshall](https://en.wikipedia.org/wiki/Thurgood_Marshall) was a Baltimore native and the first African American to serve on the U.S. Supreme Court. After winning a national competition for the commission, this sculpture was made by [Reuben Kramer](https://jewishmuseummd.org/justice-marshalls-legacy-in-bronze/) between 1977-1979. Today, it can be seen behind the Garmatz Courthouse overlooking the Inner Harbor in Baltimore. Created using 311 images taken with a Nikon D750 and DJI Mavic Mini and processed in RealityCapture. Source: Objaverse 1.0 / Sketchfab

opencc-byFeb 2022View details →
ClinicalTrials.gov36/100

Vein of Marshall Ethanol Infusion for Persistent Atrial Fibrillation

ClinicalTrials.gov study NCT01898221. IPD Sharing: NO. Countries: 1. Publications: 2.

closedIPD-NOFeb 2026View details →
dryad36/100

Development and mortality of Marshallagia marshalli

Open the record for dataset details and reuse information.

publicAug 2023View details →
zenodo32/100

Fig. 22 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 22. Distilled version of the DIVA analysis (see Fig. 21; taxa replaced with their respective areas), with unambiguously optimized ancestral areas and inferred events of vicariance (//) and colonization (=&gt;). Area labels as in Fig. 21. See text for further detail.

opennotspecifiedDec 2010View details →
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Fig. 20 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 20. Phylogeny of the species of Apodrosus and select outgroup taxa according to the single most parsimonious cladogram (L=61; CI=42; CI=74). Character 15 is mapped under DELTRAN optimization, whereas character 25 is mapped under ACCTRAN optimization (cf., Agnarsson &amp; Miller 2008); all other characters have unambiguous optimizations. Black rectangles represent single, non-homoplasious character state transformations and white rectangles represent multiple, homoplasious character state transformations. The small numbers above and below each rectangle correspond to character numbers and states, respectively. The larger numbers displayed at the left end of each branch represent Bremer support values.

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 19 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 19. Occurrences of Puerto Rican Apodrosus species: (A) A. epipolevatus and A. wolcotti; (B) A. argentatus which is also present on the islands of Hispaniola, Vieques and St. Croix (see Fig. 18).

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 17 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 17. Apodrosus empherefasciatus. (A) habitus, dorsal view; (B) head, frontal view; (C) habitus, lateral view; (D) habitus, ventral view; (E) and (F) aedeagus in dorsal and lateral view, respectively; (G) spermatheca. This figure is published in colour in the online version of this journal, which can be accessed via http://www.brill/ise

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 14 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 14. Apodrosus stenoculus. (A) habitus, dorsal view; (B) head, frontal view; (C) habitus, lateral view; (D) habitus, ventral view; (E) and (F) aedeagus in dorsal and lateral view, respectively; (G) spermatheca. This figure is published in colour in the online version of this journal, which can be accessed via http:// www.brill/ise

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 15 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 15. Apodrosus quisqueyanus. (A) habitus, dorsal view; (B) head, frontal view; (C) habitus, lateral view; (D) habitus, ventral view; (E) and (F) aedeagus in dorsal and lateral view, respectively; (G) spermatheca. This figure is published in colour in the online version of this journal, which can be accessed via http:// www.brill/ise

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 13 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 13. Apodrosus viridium. (A) habitus, dorsal view; (B) head, frontal view; (C) habitus, lateral view; (D) habitus, ventral view; (E) and (F) aedeagus in dorsal and lateral view, respectively; (G) spermatheca. This figure is published in colour in the online version of this journal, which can be accessed via http:// www.brill/ise

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 21 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 21. DIVA reconstruction of ancestral areas for the species of Apodrosus and the most closely related Anypotactus (under the command "maxareas=2"; 17 splitting events). The optimized areas are displayed at the right end of each branch; joint ancestral areas are linked with a comma and alternative optimizations are separated with a forward slash.

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 18 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 18. Occurrences of Apodrosus species in (A) the Bahamas (Grand Bahama and Andros Island) and (B) Hispaniola, Mona Island, and the Turks and Caicos Islands.

opennotspecifiedDec 2010View details →
zenodo32/100

Fig. 7 in Revision, phylogeny and historical biogeography of the genus Apodrosus Marshall, 1922 (Coleoptera: Curculionidae: Entiminae)

Fig. 7. Apodrosus andersoni. (A) habitus, dorsal view; (B) head, frontal view; (C) habitus, lateral view; (D) habitus, ventral view; (E) and (F) aedeagus in dorsal and lateral view, respectively; (G) spermatheca. This figure is published in colour in the online version of this journal, which can be accessed via http:// www.brill/ise

opennotspecifiedDec 2010View details →

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