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Designing effective restoration strategies is a priority in recovering salt marsh plants. Hydrological connectivity is a main driver underpinning the ...
Read moreFire drives animal population dynamics across many ecosystems. Yet, we still lack an understanding of how most species recover from fire and the effec...
Read moreDirect effects of climate change (i.e. temperature rise, changes in seasonal precipitation, wind patterns and atmospheric stability) affect fire regim...
Read moreMore frequent and more severe forest fires mean more severely burned wood in streams. Instream wood provides habitat complexity, alters geomorphology,...
Read moreThe MIT Flood Vulnerability Study is one key part of a broader initiative led by the MIT Climate Resiliency Committee and the MIT Office of Sustainabi...
Read moreUnderstanding how management activities impact plant population dynamics is necessary to conserve at-risk species, control invasive species and sustai...
Read moreDemographic tactics within animal populations are shaped by selective pressures. Exploitation exerts additional pressures so that differing demographi...
Read moreNon-timber forest products (NTFP) are harvested by millions of people for their livelihood. To define sustainable harvest limits it is critical to und...
Read moreSpatially defined restrictions on fishing activity are considered to be important for biodiversity conservation in marine ecosystems. However, it is u...
Read moreThe need to increase our understanding of factors that regulate animal population dynamics has been catalysed by recent, observed declines in wildlife...
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