Field metabolic rates of teleost fishes are recorded in otolith carbonateMing‐Tsung Chung, Peter Grønkjær, Clive N. Trueman et al.|Communications Biology|2019Cited by 111
Reading the biomineralized book of life: expanding otolith biogeochemical research and applications for fisheries and ecosystem-based managementPatrick Reis‐Santos, Benjamin D. Walther, Jason D. Thiem et al.|Reviews in Fish Biology and Fisheries|2022Cited by 111
Otolith d13C values as a metabolic proxy: approaches and mechanical underpinningsMing‐Tsung Chung, Peter Grønkjær, Clive N. Trueman et al.|Marine and Freshwater Research|2019Cited by 63
Ecogeochemistry potential in deep time biodiversity illustrated using a modern deep-water case studyClive N. Trueman, Diana Shores, Ming‐Tsung Chung|Philosophical Transactions of the Royal Society B Biological Sciences|2016Cited by 41
First measurements of field metabolic rate in wild juvenile fishes show strong thermal sensitivity but variations between sympatric ecotypesMing‐Tsung Chung, Peter Grønkjær, Kris‐Emil Mose Jørgensen et al.|Oikos|2020Cited by 34