Tasman Crowe

Affiliations: 
University College Dublin, Dublin, County Dublin, Ireland 
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"Tasman Crowe"
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Mayer-Pinto M, Caley A, Knights AM, et al. (2024) Complexity-functioning relationships differ across different environmental conditions. Journal of Environmental Management. 354: 120370
Farrugia Drakard V, Evans AJ, Crowe TP, et al. (2023) The influence of environmental context on community composition in artificial rockpools associated with seawalls. Marine Environmental Research. 193: 106308
Jackson-Bué T, Evans AJ, Lawrence PJ, et al. (2023) Habitat structure shapes temperate reef assemblages across regional environmental gradients. The Science of the Total Environment. 906: 167494
Kelleghan DB, O'Callaghan L, Huggard F, et al. (2023) Using valve gape analysis to compare sensitivity of native Mytilus edulis to invasive Magallana gigas when exposed to heavy metal contamination. Marine Environmental Research. 189: 106043
Thompson B, Brooks PR, Farrugia Drakard V, et al. (2023) Population structure and reproductive states of the dogwhelk Nucella lapillus differ between artificial structures and natural rocky shores. Marine Environmental Research. 189: 106059
Farrugia Drakard V, Evans AJ, Crowe TP, et al. (2023) Artificial rockpools: Seaweed colonisation and productivity vary between sites but are consistent across environmental contexts. Marine Environmental Research. 188: 106022
Farrugia Drakard V, Brooks PR, Crowe TP. (2023) Colonisation after disturbance on artificial structures: The influence of timing and grazing. Marine Environmental Research. 187: 105956
Earp HS, George R, Brooks PR, et al. (2022) The population structure, sex ratio and reproductive potential of limpets (Patella spp.) on natural shores and artificial structures in the Irish Sea. Marine Environmental Research. 184: 105853
Lawrence PJ, Evans AJ, Jackson-Bué T, et al. (2021) Artificial shorelines lack natural structural complexity across scales. Proceedings. Biological Sciences. 288: 20210329
Drakard VF, Brooks P, Crowe TP, et al. (2021) Fucus vesiculosus populations on artificial structures have potentially reduced fecundity and are dislodged at greater rates than on natural shores. Marine Environmental Research. 168: 105324
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