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Dive into the research topics where Christopher Cvitanovic is active.

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Featured researches published by Christopher Cvitanovic.


Coral Reefs | 2009

Local variation in herbivore feeding activity on an inshore reef of the Great Barrier Reef

Christopher Cvitanovic; David R. Bellwood

Threats to coral reefs may be manifested through an increase in macroalgae. Across the globe, phase-shifts from coral to macroalgal dominance have been reported from the Caribbean, Indian and Pacific Oceans. While the Great Barrier Reef (GBR) is in relatively good condition, inshore reefs may exhibit over 50% macroalgal cover. However, our understanding of the processes preventing the macroalgal expansion remains uncertain. Using a remote video bioassay approach, this study quantified herbivory in three bays along the leeward margin of Orpheus Island. Despite significant with-in bay variation in herbivory there was no detectable statistical difference in the rates of herbivory among bays. Furthermore, of the 45 herbivore species recorded from the island, only three played a significant role in bioassay removal, Siganus canaliculatus, Siganus javus and Kyphosus vaigiensis, with only one species predominating in each bay. Reefs of the GBR may therefore be more vulnerable than previously thought, with the removal of macroalgae depending on just a few species, which exhibit considerable spatial variability in their feeding behaviour.


Ecology and Society | 2014

Perceptions of Australian marine protected area managers regarding the role, importance, and achievability of adaptation for managing the risks of climate change

Christopher Cvitanovic; Nadine Marshall; Shaun K. Wilson; Kirstin Dobbs; Alistair J. Hobday

The rapid development of adaptation as a mainstream strategy for managing the risks of climate change has led to the emergence of a broad range of adaptation policies and management strategies globally. However, the success of such policies or management interventions depends on the effective integration of new scientific research into the decision-making process. Ineffective communication between scientists and environmental decision makers represents one of the key barriers limiting the integration of science into the decision-making process in many areas of natural resource management. This can be overcome by understanding the perceptions of end users, so as to identify knowledge gaps and develop improved and targeted strategies for communication and engagement. We assessed what one group of environmental decision makers, Australian marine protected area (MPA) managers, viewed as the major risks associated with climate change, and their perceptions regarding the role, importance, and achievability of adaptation for managing these risks. We also assessed what these managers perceived as the role of science in managing the risks from climate change, and identified the factors that increased their trust in scientific information. We do so by quantitatively surveying 30 MPA managers across 3 Australian management agencies. We found that although MPA managers have a very strong awareness of the range and severity of risks posed by climate change, their understanding of adaptation as an option for managing these risks is less comprehensive. We also found that although MPA managers view science as a critical source of information for informing the decision-making process, it should be considered in context with other knowledge types such as community and cultural knowledge, and be impartial, evidence based, and pragmatic in outlining policy and management recommendations that are realistically achievable.


Journal of Environmental Management | 2013

Critical research needs for managing coral reef marine protected areas: Perspectives of academics and managers

Christopher Cvitanovic; Shaun K. Wilson; Christopher J. Fulton; Glenn R. Almany; P Anderson; Russell C. Babcock; Natalie C. Ban; Roger Beeden; Maria Beger; Joshua E. Cinner; Kirstin Dobbs; Louisa Evans; A Farnham; Kim Friedman; K Gale; William Gladstone; Q Grafton; Nicholas A. J. Graham; S Gudge; Peter Lynton Harrison; Thomas H. Holmes; N. Johnstone; Geoffrey P. Jones; Ar Jordan; Alan Kendrick; L.R. Little; Hamish A. Malcolm; David L. Morris; Hugh P. Possingham; J Prescott

Marine protected areas (MPAs) are a primary policy instrument for managing and protecting coral reefs. Successful MPAs ultimately depend on knowledge-based decision making, where scientific research is integrated into management actions. Fourteen coral reef MPA managers and sixteen academics from eleven research, state and federal government institutions each outlined at least five pertinent research needs for improving the management of MPAs situated in Australian coral reefs. From this list of 173 key questions, we asked members of each group to rank questions in order of urgency, redundancy and importance, which allowed us to explore the extent of perceptional mismatch and overlap among the two groups. Our results suggest the mismatch among MPA managers and academics is small, with no significant difference among the groups in terms of their respective research interests, or the type of questions they pose. However, managers prioritised spatial management and monitoring as research themes, whilst academics identified climate change, resilience, spatial management, fishing and connectivity as the most important topics. Ranking of the posed questions by the two groups was also similar, although managers were less confident about the achievability of the posed research questions and whether questions represented a knowledge gap. We conclude that improved collaboration and knowledge transfer among management and academic groups can be used to achieve similar objectives and enhance the knowledge-based management of MPAs.


Journal of Environmental Management | 2016

From science to action: Principles for undertaking environmental research that enables knowledge exchange and evidence-based decision-making

Christopher Cvitanovic; Jan McDonald; Alistair J. Hobday

Effective conservation requires knowledge exchange among scientists and decision-makers to enable learning and support evidence-based decision-making. Efforts to improve knowledge exchange have been hindered by a paucity of empirically-grounded guidance to help scientists and practitioners design and implement research programs that actively facilitate knowledge exchange. To address this, we evaluated the Ningaloo Research Program (NRP), which was designed to generate new scientific knowledge to support evidence-based decisions about the management of the Ningaloo Marine Park in north-western Australia. Specifically, we evaluated (1) outcomes of the NRP, including the extent to which new knowledge informed management decisions; (2) the barriers that prevented knowledge exchange among scientists and managers; (3) the key requirements for improving knowledge exchange processes in the future; and (4) the core capacities that are required to support knowledge exchange processes. While the NRP generated expansive and multidisciplinary science outputs directly relevant to the management of the Ningaloo Marine Park, decision-makers are largely unaware of this knowledge and little has been integrated into decision-making processes. A range of barriers prevented efficient and effective knowledge exchange among scientists and decision-makers including cultural differences among the groups, institutional barriers within decision-making agencies, scientific outputs that were not translated for decision-makers and poor alignment between research design and actual knowledge needs. We identify a set of principles to be implemented routinely as part of any applied research program, including; (i) stakeholder mapping prior to the commencement of research programs to identify all stakeholders, (ii) research questions to be co-developed with stakeholders, (iii) implementation of participatory research approaches, (iv) use of a knowledge broker, and (v) tailored knowledge management systems. Finally, we articulate the individual, institutional and financial capacities that must be developed to underpin successful knowledge exchange strategies.


PLOS ONE | 2017

Empirically derived guidance for social scientists to influence environmental policy

Nadine Marshall; N Adger; S Attwood; Katrina Brown; C Crissman; Christopher Cvitanovic; C De Young; Margaret Gooch; Cassandra James; S Jessen; Dg Johnson; Paul Marshall; Sarah Park; David Wachenfeld; D Wrigley

Failure to stem trends of ecological disruption and associated loss of ecosystem services worldwide is partly due to the inadequate integration of the human dimension into environmental decision-making. Decision-makers need knowledge of the human dimension of resource systems and of the social consequences of decision-making if environmental management is to be effective and adaptive. Social scientists have a central role to play, but little guidance exists to help them influence decision-making processes. We distil 348 years of cumulative experience shared by 31 environmental experts across three continents into advice for social scientists seeking to increase their influence in the environmental policy arena. Results focus on the importance of process, engagement, empathy and acumen and reveal the importance of understanding and actively participating in policy processes through co-producing knowledge and building trust. The insights gained during this research might empower a science-driven cultural change in science-policy relations for the routine integration of the human dimension in environmental decision making; ultimately for an improved outlook for earth’s ecosystems and the billions of people that depend on them.


Marine and Freshwater Research | 2011

Rapid increase in coral cover on an isolated coral reef, the Ashmore Reef National Nature Reserve, north-western Australia

Daniela M. Ceccarelli; Zoe Richards; Pratchett; Christopher Cvitanovic

Against a background of coral reef ecosystem decline, understanding the propensity for coral communities to recover afteracute disturbances is fundamental toforecastingand maintaining resilience.It maybe expected that offshore reef ecosystems are less affected by anthropogenic disturbances compared with reefs closer to population centres, but that recoverymaybesloweronisolatedreefsfollowingdisturbances.Totestthehypothesisthatcommunityrecoveryisslowin isolated locations, we measured changes in coral cover and relative abundance of coral genera over a 4 year period (2005-09)atAshmore Reef, north Western Australia, following severe bleaching.The percent coverof hard coral tripled, from 10.2% (� 1.46 s.e.) in 2005 to 29.4% (� 1.83 s.e.) in 2009 in all habitats (exposed and lagoonal) and depth zones (2-5and8-10m),andthepercentcoverofsoftcoralsdoubled,from4.5%(þ0.63s.e.)in2005to8.3%(þ1.4s.e.)in2009. Significant shifts in the taxonomic composition of hard corals were detected. Our results imply that coral recovery in isolatedlocations canoccurrapidlyafteran initialdelay inrecruitment,presumablythroughthe interactingeffects of self- recruitment and reduced exposure to additive impacts such as coastal pollution. Additional keywords: Alcyoniina, coral bleaching, coral recovery, resilience, Scleractinia, temporal dynamics.


Sustainability Science | 2016

A call for empirically based guidelines for building trust among stakeholders in environmental sustainability projects

Fabio Boschetti; Christopher Cvitanovic; Aysha Fleming; Elisabeth Fulton

‘‘The scientific community must rapidly reorganize to focus on global sustainability solutions. We must develop a new strategy for creating and rapidly translating knowledge into action, which will form part of a new contract between science and society’’ (UN State of the Planet Declaration).


Climate Policy | 2016

Engaging communities in climate adaptation: the potential of social networks

R Cunningham; Christopher Cvitanovic; Thomas G. Measham; Brent Jacobs; Anne Maree Dowd; Ben Harman

There has been a growing recognition regarding the use of social networks to engage communities in government actions. However, despite increasing awareness of social networks, there is very limited evidence for their application in relation to climate policy. This study fills this gap by assessing the potential of social networks for engaging local communities in climate adaptation policy, drawing on a case study of the Shoalhaven region in Australia. Participants from key representative groups were recruited using a purposive snowball sampling technique (N = 24). By mapping knowledge acquisition and diffusion networks in relation to climate adaption at the local scale, this study identified key nodes within the networks. Findings demonstrate that although climate adaptation information was acquired from a diverse range of sources, the sharing knowledge networks were far more dispersed. Furthermore, although 165 knowledge sources were identified, three nodes had coverage cross the entire network, and as such acted as boundary spanners within the sharing network. This research demonstrates the utility of social network analysis to reveal the underlying knowledge networks and structures that influence community engagement pathways and in doing so outlines key implications in relation to engaging local communities in climate policy and action. Policy relevance The rapid development of adaptation as a mainstream strategy for managing the risks of climate change has resulted in the emergence of a broad range of adaptation policies and management strategies globally. However, the success of these initiatives is largely dependent on their acceptance and uptake by local communities, which to date remains a significant challenge. Accordingly, policy makers require novel approaches to overcome barriers to community engagement so as to enhance the likely success of community engagement pathways. This article demonstrates the value of using social network analysis to reveal the underlying knowledge network structures. This approach makes it possible to identify key individuals within a community who can disseminate adaptation information quickly across broad geographic ranges. By utilizing this approach, policy makers globally will be able to increase the extent to which adaption initiatives are accepted and adhered to by local communities, thus increasing their success.


Coral Reefs | 2014

Foraging in corallivorous butterflyfish varies with wave exposure

Mae M. Noble; Morgan S. Pratchett; Darren J. Coker; Christopher Cvitanovic; Christopher J. Fulton

Understanding the foraging patterns of reef fishes is crucial for determining patterns of resource use and the sensitivity of species to environmental change. While changes in prey availability and interspecific competition have been linked to patterns of prey selection, body condition, and survival in coral reef fishes, rarely has the influence of abiotic environmental conditions on foraging been considered. We used underwater digital video to explore how prey availability and wave exposure influence the behavioural time budgets and prey selectivity of four species of obligate coral-feeding butterflyfishes. All four species displayed high selectivity towards live hard corals, both in terms of time invested and frequency of searching and feeding events. However, our novel analysis revealed that such selectivity was sensitive to wave exposure in some species, despite there being no significant differences in the availability of each prey category across exposures. In most cases, these obligate corallivores increased their selectivity towards their most favoured prey types at sites of high wave exposure. This suggests there are costs to foraging under different wave environments that can shape the foraging patterns of butterflyfishes in concert with other conditions such as prey availability, interspecific competition, and territoriality. Given that energy acquisition is crucial to the survival and fitness of fishes, we highlight how such environmental forcing of foraging behaviour may influence the ecological response of species to the ubiquitous and highly variable wave climates of shallow coral reefs.


Marine and Freshwater Research | 2010

Benthic community composition influences within-habitat variation in macroalgal browsing on the Great Barrier Reef

Christopher Cvitanovic; Andrew S. Hoey

The removal of macroalgae by herbivores is fundamental to the long-term persistence of coral reefs. Variation in macroalgal browsing has been documented across a range of spatial scales on coral reefs; however, few studies have examined the factors that influence within-habitat rates of herbivory. The aim of the present study was to quantify herbivory on two species of Sargassum across three bays on an inshore island in the central Great Barrier Reef (GBR), and to determine whether these removal rates were related to the benthic composition or herbivorous fish communities. Removal rates of Sargassum differed significantly among bays, with removal rates in the southern bay (66.9–83.0% per 3 h) being approximately double that of the two other bays (29.2–38.5% per 3 h). The removal rates displayed a direct relationship with the benthic community structure, in particular the cover of macroalgae and live plate corals. Although it is difficult to determine whether these relationships are related to the availability of food resources or the structural complexity of the substratum, they highlight the potential influence of benthic composition on ecological processes. Quantifying and understanding the drivers of herbivory across a range of spatial scales is essential to the future management of coral reefs.

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Mark Howden

University of Melbourne

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R Cunningham

University of Manchester

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Justine Lacey

Commonwealth Scientific and Industrial Research Organisation

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Christopher J. Fulton

Australian National University

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Shaun K. Wilson

University of Western Australia

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Ben Harman

Commonwealth Scientific and Industrial Research Organisation

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Kirstin Dobbs

Great Barrier Reef Marine Park Authority

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L. van Kerkhoff

Australian National University

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