Area of research
Global and Planetary Change · Ecology
Research interest
Research interests include Physiological and biochemical adaptations, Ocean Acidification Effects and Responses, Marine Bivalve and Aquaculture Studies, and Marine and fisheries research.
Implications of dietary carbon incorporation in fish carbonates for the global carbon cycle
Organic Coatings Reduce Dissolution Rate by an Order of Magnitude for Carbonate Minerals Produced by Marine Fish
Therapeutic Efficacy of Selenium Pre-treatment in Mitigating Cadmium-Induced Cardiotoxicity in Zebrafish (Danio rerio)
Therapeutic Efficacy of Selenium Pre-treatment in Mitigating Cadmium-Induced Cardiotoxicity in Zebrafish (Danio rerio)
Brief Oil Exposure Reduces Fitness in Wild Gulf of Mexico Mahi-Mahi (<i>Coryphaena hippurus</i>)
The Effects of Temperature Acclimation on Swimming Performance in the Pelagic Mahi-Mahi (Coryphaena hippurus)
Remote Predictions of Mahi-Mahi (Coryphaena hippurus) Spawning in the Open Ocean Using Summarized Accelerometry Data
Methods matter in repeating ocean acidification studies
Impacts of a local music festival on fish stress hormone levels and the adjacent underwater soundscape
Exposure to Hydraulic Fracturing Flowback Water Impairs <i>Mahi-Mahi</i> (<i>Coryphaena hippurus</i>) Cardiomyocyte Contractile Function and Swimming Performance
Impacts of <i>Deepwater Horizon</i> Crude Oil on Mahi-Mahi (<i>Coryphaena hippurus</i>) Heart Cell Function
The physiology of behavioral impacts of high CO2
Ocean acidification affects acid–base physiology and behaviour in a model invertebrate, the California sea hare (<i>Aplysia californica</i>)
Acute crude oil exposure alters mitochondrial function and ADP affinity in cardiac muscle fibers of young adult Mahi-mahi (Coryphaena hippurus)
Cardio-respiratory function during exercise in the cobia, Rachycentron canadum: The impact of crude oil exposure
Oil Exposure Impairs In Situ Cardiac Function in Response to β-Adrenergic Stimulation in Cobia (<i>Rachycentron canadum</i>)
Effects of crude oil on in situ cardiac function in young adult mahi–mahi ( Coryphaena hippurus )
Altered brain ion gradients following compensation for elevated CO2 are linked to behavioural alterations in a coral reef fish
Elevated CO2 increases energetic cost and ion movement in the marine fish intestine
Changes to Intestinal Transport Physiology and Carbonate Production at Various CO<sub>2</sub>Levels in a Marine Teleost, the Gulf Toadfish (<i>Opsanus beta</i>)
Physiological impacts of elevated carbon dioxide and ocean acidification on fish
Impacts of ocean acidification on respiratory gas exchange and acid–base balance in a marine teleost, Opsanus beta
Ocean Acidification Leads to Counterproductive Intestinal Base Loss in the Gulf Toadfish (<i>Opsanus beta</i>)