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Global Change Biology · 2022 · Vol. 28 · Issue 17 · Wiley
Tommaso Jucker; Fabian Jörg Fischer; Jérôme Chave; David A. Coomes; John Caspersen; Arshad Ali; Grace Jopaul Loubota Panzou; Ted R. Feldpausch; Daniel Falster; Vladimir A. Usoltsev; Stephen Adu‐Bredu; Luciana F. Alves; Mohammad Aminpour; Ilondea B. Angoboy; Niels P. R. Anten; Cécile Antin; Yousef Askari; Rodrigo Muñoz; Narayanan Ayyappan; Patricia Balvanera; Lindsay Banin; Nicolas Barbier; John J. Battles; Hans Beeckman; Yannick E. Bocko; Ben Bond‐Lamberty; Frans Bongers; Samuel Bowers; Thomas Brade; Michiel van Breugel; Arthur Chantrain; Rajeev Chaudhary; Jingyu Dai; Michele Dalponte; Kangbéni Dimobe; Jean‐Christophe Domec; Jean‐Louis Doucet; Remko A. Duursma; Moisés Enríquez; Karin Y. van Ewijk; William Farfán‐Rios; Adeline Fayolle; Eric Forni; David I. Forrester; Hammad Gilani; John L. Godlee; Sylvie Gourlet‐Fleury; Matthias Haeni; Jefferson S. Hall; Jie‐Kun He; Andreas Hemp; José L. Hernández‐Stefanoni; Steven I. Higgins; Robert J. Holdaway; Kiramat Hussain; Lindsay B. Hutley; Tomoaki Ichie; Yoshiko Iida; Hai‐sheng Jiang; Puspa Raj Joshi; Hasan Kaboli; Maryam Kazempour Larsary; Tanaka Kenzo; Brian D. Kloeppel; Takashi Kohyama; Suwash Kunwar; Shem Kuyah; Jakub Kvasnica; Siliang Lin; Emily R. Lines; Hongyan Liu; Craig Lorimer; Jean‐Joël Loumeto; Yadvinder Malhi; Peter L. Marshall; Eskil Mattsson; Radim Matula; Jorge A. Meave; Sylvanus Mensah; Xiangcheng Mi; Stéphane Momo; Glenn R. Moncrieff; Francisco Mora; Sarath P. Nissanka; Kevin L. O'Hara; Steven Pearce; Raphaël Pelissier; Pablo L. Peri; Pierre Ploton; Lourens Poorter; Mohsen Javanmiri Pour; Hassan Pourbabaei; Juan Manuel Dupuy‐Rada; Sabina C. Ribeiro; Casey Ryan; Anvar Sanaei; Jennifer Sanger; Michael Schlund; Giacomo Sellan; Alexander Shenkin; Bonaventure Sonké; Frank J. Sterck; Martin Svátek; Kentaro Takagi; Anna T. Trugman; Farman Ullah; Matthew A. Vadeboncoeur; Ahmad Valipour; Mark C. Vanderwel; Alejandra G. Vovides; Weiwei Wang; Li‐Qiu Wang; Christian Wirth; Murray Woods; Wenhua Xiang; Fabiano de Aquino Ximenes; Yaozhan Xu; Toshihiro Yamada; Miguel A. Zavala
Data capturing multiple axes of tree size and shape, such as a tree's stem diameter, height and crown size, underpin a wide range of ecological research—from developing and testing theory on forest structure and dynamics, to estimating forest carbon stocks and their uncertainties, and integrating remote sensing imagery into forest monitoring programmes. However, these data can be surprisingly hard to come by, particularly for...
Global Change Biology · 2022 · Vol. 28 · Issue 17 · Wiley
Climate change influences the ocean's physical and biogeochemical conditions, causing additional pressures on marine environments and ecosystems, now and in the future. Such changes occur in environments that already today suffer under pressures from, for example, eutrophication, pollution, shipping, and more. We demonstrate how to implement climate change into regional marine spatial planning by introducing data of future tem...
Frontiers in Marine Science · 2021 · Vol. 7 · Frontiers
Fragmentation of macroplastics into microplastics in the marine environment is probably one of the processes that have generated most drive for developing the microplastics research field. Thus, it is surprising that the level of scientific knowledge on the combinative effect of oxidative degradation and mechanical stressors on fragmentation is relatively limited. Furthermore, it has been hypothesized that plastic fragmentatio...
Global Change Biology · 2020 · Vol. 26 · Issue 9 · Wiley
Understanding the likely future impacts of biological invasions is crucial yet highly challenging given the multiple relevant environmental, socio‐economic and societal contexts and drivers. In the absence of quantitative models, methods based on expert knowledge are the best option for assessing future invasion trajectories. Here, we present an expert assessment of the drivers of potential alien species impacts under contrast...
Conservation Biology · 2008 · Vol. 22 · Issue 5 · Wiley
Including both economic costs and biological benefits of sites in systematic reserve selection greatly increases cost‐efficiency. Nevertheless, limited funding generally forces conservation planners to choose which data to focus the most resources on; therefore, the relative importance of different types of data must be carefully assessed. We investigated the relative importance of including information about costs and benefit...