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We simulated four different landscapes, three with different species but the same rotation length and one using the same species with two different rotation lengths, to evaluate interactions between modelled scenarios and assumptions about parameter variability.
ACR1, ACR2, and ACR3 showed almost comparable median values indicating that the median ACR did not differ significantly between evaluations using the same species and different species (Mann–Whitney U test: p > 0.05).
The species grouping used in this model differs slightly from Vanclay (1989a) in using the same species groups for growth, harvesting and volume estimation, whereas Vanclay's (1989a) model used a 3-digit species code, with each digit denoting the volume, harvesting or growth equation to be applied.
However, even in this work, to our knowledge no single study (i.e., one using the same species and experimental design) applied treatments that selected divergently on multiple versus single traits [50], [58].
In a similar experiment using the same species, Plesnar-Bielak et al.
Additional data should be provided by performing both in vivo and in vitro studies using the same species.
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They also suggest the potential for using the same species-specific components in a potential vector saliva-based vaccine.
We attempted to account for experimental platform problems by comparing the dendritic results to whole tissue RNA results using the same species-specific platforms; therefore, both comparisons would include any platform-dependent biases.
A pilot expression study was performed using the same species-specific microarrays in which expression profiles were measured for each of the eight time points (described above) for one biological replicate for each species.
Moreover, multiple studies may use the same species or different species that are phylogenetically related, and such taxonomic overrepresentation may limit the scale of inference of the meta-analysis.
Ramsayer et al. (2011) used the same species of bacterium to investigate the impacts of competition from another bacterial species and of nutrient concentrations on the adherence to Taylor's law of each competitor, and measured impacts on an ecological time scale (24 h) of, at most, a few generations.
More suggestions(15)
using the optimal species
using the genetic species
using the wild species
using the other species
using the molecular species
using the morphological species
using the cichlid species
using the phylogenetic species
using the separated species
using the active species
using the dilute species
using the quarantine species
using the detailed species
using the modern species
using the related species
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