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As tree canopy cover increased, stem densities, flowering, and seed production declined.
Application of imazapic reduced E. esula stem densities and cover and increased native forb cover.
The development of these key habitat resources was delayed in revegetated sites with high stem densities.
Total understory stem densities of poles, saplings and seedlings were largely comparable across plot types.
We predicted that browsing impacts would be linear or accelerating (Type I or Type III response) in year 3 when regenerating stem densities were relatively low and decelerating (Type II response) in year 7 when stem densities increased.
In 2012, stem densities were greatest in girdled plots, but proportional browse consumption was highest at intermediate stem densities in logged plots, exhibiting a Type III (rather than a Type II) functional response.
Similar(8)
Empirical data show approximately a 20%% difference in STEM density across each of the three selected high-density STEM organizations, NASA, the EPA, and the FCC.
In particular, stem density increased with increasing M. sinensis cover.
A stem density of 55 per square foot has good yield potential.
Aspen stem density was negatively correlated with elk (r2 = 0.35) and cattle fecal densities (r2 = 0.71).
The simulation results also revealed an interesting threshold behavior with regard to stem density.
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