A global analysis of complexity–biodiversity relationships on marine artificial structures

EMA Strain, PD Steinberg, M Vozzo… - Global Ecology and …, 2021 - Wiley Online Library
Aim Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch‐scale, complexity–biodiversity relationships may vary spatially and temporally …

A global analysis of complexity-biodiversity relationships on marine artificial structures

E Strain, PD Steinberg, M Vozzo, EL Johnston… - 2020 - figshare.utas.edu.au
Aim Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch‐scale, complexity–biodiversity relationships may vary spatially and temporally …

A global analysis of complexity–biodiversity relationships on marine artificial structures

EMA Strain, PD Steinberg, M Vozzo… - Global Ecology and …, 2021 - scholars.cityu.edu.hk
Aim: Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch-scale, complexity–biodiversity relationships may vary spatially and temporally …

A global analysis of complexity–biodiversity relationships on marine artificial structures

EMA Strain, PD Steinberg, M Vozzo, EL Johnston… - 2021 - pearl.plymouth.ac.uk
Aim: Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch-scale, complexity–biodiversity relationships may vary spatially and temporally …

A global analysis of complexity–biodiversity relationships on marine artificial structures

E Strain, PD Steinberg, M Vozzo… - Global Ecology and …, 2021 - ui.adsabs.harvard.edu
AimTopographic complexity is widely accepted as a key driver of biodiversity, but at the
patch‑scale, complexity–biodiversity relationships may vary spatially and temporally …

A global analysis of complexity–biodiversity relationships on marine artificial structures

EMA Strain, PD Steinberg, M Vozzo… - GLOBAL ECOLOGY …, 2021 - research.unipd.it
Aim: Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch-scale, complexity–biodiversity relationships may vary spatially and temporally …

[引用][C] A global analysis of complexity–biodiversity relationships on marine artificial structures

EMA Strain, PD Steinberg, M Vozzo… - Global Ecology and …, 2020 - ir.sinica.edu.tw
Issue Date: 2020-10 Relation: Global Ecology and Biogeography 30 (1), 140-153 URI:
http://ir. sinica. edu. tw/handle/201000000A/81816 ISSN: http://gateway. isiknowledge …

A global analysis of complexity–biodiversity relationships on marine artificial structures

EMA Strain, PD Steinberg, M Vozzo… - Global Ecology …, 2021 - researchers.mq.edu.au
Aim: Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch-scale, complexity–biodiversity relationships may vary spatially and temporally …

A global analysis of complexity–biodiversity relationships on marine artificial structures

EMA Strain, PD Steinberg, M Vozzo… - Global Ecology and …, 2020 - infona.pl
Aim Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch‐scale, complexity–biodiversity relationships may vary spatially and temporally …

A global analysis of complexity–biodiversity relationships on marine artificial structures

E Strain, PD Steinberg, M Vozzo… - Global Ecology and …, 2021 - eprints.soton.ac.uk
Aim: Topographic complexity is widely accepted as a key driver of biodiversity, but at the
patch-scale, complexity–biodiversity relationships may vary spatially and temporally …