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“Biomarker assessment of spatial and temporal changes in the composition of flocculent material (floc) in the subtropical wetland of the Florida Coastal Everglades”
10 (5): 424-436. doi:10.1071/EN13062.
2013.
“Frugivory and seed dispersal by crocodilians: an overlooked form of saurochory?”
291 (2): 87-99. doi:10.1111/jzo.12052.
2013.
“Fish Community Responses to the Combined Effects of Decreased Hydroperiod and Nonnative Fish Invasions in a Karst Wetland: Are Everglades Solution Holes Sinks for Native Fishes?”
34 (Suppl 1): 159-173. doi:10.1007/s13157-012-0361-1.
2014.
“Turning passive detection systems into field experiments: an application using wetland fishes and enclosures to track fine-scale movement and habitat choice”
17 (1): 53-61. doi:10.1007/s10211-013-0154-4.
2014.
“Ecological novelty and the emergence of evolutionary traps”
DOI: 10.1016/j.tree.2013.04.004: . doi:10.1016/j.tree.2013.04.004.
2013.
“Intra-population variation in activity ranges, diel patterns, movement rates, and habitat use of American alligators in a subtropical estuary”
135: 182-190. doi:10.1016/j.ecss.2013.10.008.
2013.
“Are seeds consumed by crocodilians viable? A test of the crocodilian saurochory hypothesis”
13 (3): N26-N29.
2014.
“New record of Everglades mink in Everglades National Park from the stomach of an American alligator”
13 (3): N22-N25.
2014.
“A suite of prey traits determine predator and nutrient enrichment effects in a tri-trophic food web”
4: 75. doi:10.1890/ES13-00065.1.
2013.
“Comparison of belowground biomass in C3- and C4-dominated mixed communities in a Chesapeake Bay brackish marsh”
280: 305-322. doi:10.1007/s11104-005-3275-3.
2006.
“Early diagenesis of plant-derived dissolved organic matter along a wetland, mangrove, estuary ecotone”
49 (5): 1667-1678.
2004.
“Cumulative Impacts of Hurricanes on Florida Mangrove Ecosystems: Sediment Deposition, Storm Surges and Vegetation”
29 (1): 24-34. doi:10.1672/08-125.1.
2009.
“Determining Spatial and Temporal Inputs of Freshwater, Including Submarine Groundwater Discharge, to a Subtropical Estuary Using Geochemical Tracers, Biscayne Bay, South Florida”
32 (4): 694-708. doi:10.1007/s12237-009-9155-y.
2009.
“The influence of hydrologic restoration on groundwater-surface water interactions in a karst wetland, the Everglades (FL, USA)”
34 (Suppl 1): 23-35. doi:10.1007/s13157-013-0451-8.
2014.
“Wetland Ecosystem Response to Hydrologic Restoration and Management: The Everglades and its Urban-Agricultural Boundary (FL, USA)”
34: 1-8. doi:10.1007/s13157-014-0525-2.
2014.
“Origin of Salinity Variations in Florida Bay”
47 (4): 1234-1241.
2002.
“Drivers of Decadal-Scale Change in Southern Everglades Wetland Macrophyte Communities of the Coastal Ecotone”
34 (Suppl 1): 81-90. doi:10.1007/s13157-013-0446-5.
2014.
2005.
“Impact of late Holocene climate variability and anthropogenic activities on Biscayne Bay (Florida, U.S.A): evidence from diatoms”
371: 80-92. doi:10.1016/j.palaeo.2012.12.020.
2013.
“Linking Ecology and Economics for Ecosystem Management”
56 (2): 117-129.
2006.