Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add more filters










Database
Language
Publication year range
1.
Environ Monit Assess ; 186(2): 949-59, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24081815

ABSTRACT

Benthic macroinvertebrates are sampled in streams and rivers as one of the assessment elements of the US Environmental Protection Agency's National Rivers and Streams Assessment. In a 2006 report, the recommendation was made that different yet comparable methods be evaluated for different types of streams (e.g., low gradient vs. high gradient). Consequently, a research element was added to the 2008-2009 National Rivers and Streams Assessment to conduct a side-by-side comparison of the standard macroinvertebrate sampling method with an alternate method specifically designed for low-gradient wadeable streams and rivers that focused more on stream edge habitat. Samples were collected using each method at 525 sites in five of nine aggregate ecoregions located in the conterminous USA. Methods were compared using the benthic macroinvertebrate multimetric index developed for the 2006 Wadeable Streams Assessment. Statistical analysis did not reveal any trends that would suggest the overall assessment of low-gradient streams on a regional or national scale would change if the alternate method was used rather than the standard sampling method, regardless of the gradient cutoff used to define low-gradient streams. Based on these results, the National Rivers and Streams Survey should continue to use the standard field method for sampling all streams.


Subject(s)
Aquatic Organisms/classification , Environmental Monitoring/methods , Invertebrates/classification , Rivers/chemistry , Animals , Aquatic Organisms/growth & development , Biodiversity , Ecosystem , Invertebrates/growth & development , United States , United States Environmental Protection Agency
2.
Environ Monit Assess ; 185(11): 9299-320, 2013 Nov.
Article in English | MEDLINE | ID: mdl-24081743

ABSTRACT

Stream bioassessments rely on taxonomic composition at sites compared with natural, reference conditions. We developed and tested an observed/expected (O/E) predictive model of taxonomic completeness and an index of compositional dissimilarity (BC index) for Central Appalachian streams using combined macroinvertebrate datasets from riffle habitats in West Virginia (WV) and Kentucky (KY). A total of 102 reference sites were used to calibrate the O/E model, which was then applied to assess over 1,200 sites sampled over a 10-year period. Using an all subsets discriminant function analysis (DFA) procedure, we tested combinations of 14 predictor variables that produced DF and O/E models of varying performance. We selected the most precise model using a probability of capture at >0.5 (O/E0.5, SD = 0.159); this model was constructed with only three simple predictor variables--Julian day, latitude, and whether a site was in ecoregion 69a. We evaluated O/E and BC indices between reference and test sites and compared their response to regional stressors, including coal mining, residential development, and acid deposition. The Central Appalachian O/E and BC indices both showed excellent discriminatory power and were significantly correlated to a variety of regional stressors; in some instances, the BC index was slightly more sensitive and responsive than the O/E0.5 model. These indices can be used to supplement existing bioassessment tools crucial to detecting and diagnosing stream impacts in the Central Appalachian region of WV and KY.


Subject(s)
Aquatic Organisms/classification , Biodiversity , Environmental Monitoring/methods , Invertebrates/classification , Rivers/chemistry , Animals , Aquatic Organisms/growth & development , Coal Mining , Ecosystem , Invertebrates/growth & development , Kentucky , Models, Chemical , Water Pollution, Chemical/analysis , Water Pollution, Chemical/statistics & numerical data , West Virginia
SELECTION OF CITATIONS
SEARCH DETAIL
...