Keyword search (3,448 papers available)


Current global efforts are insufficient to limit warming to 1.5°C

Author(s): Matthews HD; Wynes S;

Human activities have caused global temperatures to increase by 1.25°C, and the current emissions trajectory suggests that we will exceed 1.5°C in less than 10 years. Though the growth rate of global carbon dioxide emissions has slowed and many countries ha...

Article GUID: 35737785

A carbon footprint study of the Canadian medical residency interview tour

Author(s): Liang KE; Dawson JQ; Stoian MD; Clark DG; Wynes S; Donner SD;

Background: Each spring, thousands of Canadian medical students travel across the country to interview for residency positions, a process known as the CaRMS tour. Despite the large scale of travel, the CaRMS tour has received little environmental scrutiny. ...

Article GUID: 34227912

What attributes are relevant for drainage culverts to serve as efficient road crossing structures for mammals?

Author(s): Brunen B, Daguet C, Jaeger JAG

J Environ Manage. 2020 Aug 15;268:110423 Authors: Brunen B, Daguet C, Jaeger JAG

Article GUID: 32510423

Increased drought severity tracks warming in the United States' largest river basin.

Author(s): Martin JT, Pederson GT, Woodhouse CA, Cook ER, McCabe GJ, Anchukaitis KJ, Wise EK, Erger PJ, Dolan L, McGuire M, Gangopadhyay S, Chase KJ, L...

Proc Natl Acad Sci U S A. 2020 May 11;: Authors: Martin JT, Pederson GT, Woodhouse CA, Cook ER, McCabe GJ, Anchukaitis KJ, Wise EK, Erger PJ, Dolan L, McGuire M, Gangopadhyay S, Chase KJ, Littell ...

Article GUID: 32393620

An adaptive plan for prioritizing road sections for fencing to reduce animal mortality.

Author(s): Spanowicz AG, Teixeira FZ, Jaeger JAG

Conserv Biol. 2020 Mar 30;: Authors: Spanowicz AG, Teixeira FZ, Jaeger JAG

Article GUID: 32227646

Social grooming efficiency and techniques are influenced by manual impairment in free-ranging Japanese macaques (Macaca fuscata).

Author(s): Espitia-Contreras JP, Fedigan LM, Turner SE

PLoS One. 2020;15(2):e0228978 Authors: Espitia-Contreras JP, Fedigan LM, Turner SE

Article GUID: 32084169

How do landscape context and fences influence roadkill locations of small and medium-sized mammals?

Author(s): Plante J, Jaeger JAG, Desrochers A

J Environ Manage. 2019 Apr 01;235:511-520 Authors: Plante J, Jaeger JAG, Desrochers A

Article GUID: 30711836

Exposure to excessive heat and impacts on labour productivity linked to cumulative CO2 emissions.

Author(s): Chavaillaz Y, Roy P, Partanen AI, Da Silva L, Bresson É, Mengis N, Chaumont D, Matthews HD

Sci Rep. 2019 Sep 23;9(1):13711 Authors: Chavaillaz Y, Roy P, Partanen AI, Da Silva L, Bresson É, Mengis N, Chaumont D, Matthews HD

Article GUID: 31548555

Aquatic macroinvertebrates stabilize gravel bed sediment: A test using silk net-spinning caddisflies in semi-natural river channels.

Author(s): Albertson LK, Sklar LS, Cooper SD, Cardinale BJ

PLoS One. 2019;14(1):e0209087 Authors: Albertson LK, Sklar LS, Cooper SD, Cardinale BJ

Article GUID: 30601831


Title:An adaptive plan for prioritizing road sections for fencing to reduce animal mortality.
Authors:Spanowicz AGTeixeira FZJaeger JAG
Link:https://www.ncbi.nlm.nih.gov/pubmed/32227646?dopt=Abstract
DOI:10.1111/cobi.13502
Category:Conserv Biol
PMID:32227646
Dept Affiliation: GEOGRAPHY
1 Department of Geography, Planning and Environment, Concordia University Montreal, 1455 de Maisonneuve Blvd. West, Suite H1255, Montréal, Québec, H3G 1M8, Canada.
2 Road and Railroad Ecology Research Group (NERF-UFRGS), Federal University of Rio Grande do Sul, Av. Bento Gonçalves, 9500, Porto Alegre, RS, CEP 91501-970, Brazil.
3 Ecology Graduate Program, Federal University of Rio Grande do Sul, Av. Bento Gonçalves, 9500, Porto Alegre, RS, CEP 91501-970, Brazil.
4 Loyola Sustainability Research Centre, Concordia University Montreal, 7141 Sherbrooke St. West, Montréal, Québec, H4B 1R6, Canada.

Description:

An adaptive plan for prioritizing road sections for fencing to reduce animal mortality.

Conserv Biol. 2020 Mar 30;:

Authors: Spanowicz AG, Teixeira FZ, Jaeger JAG

Abstract

Mortality of animals on roads is a critical threat to many wildlife populations, and is poised to increase strongly because of ongoing and planned road construction. If these new roads cannot be avoided, effective mitigation measures will be necessary to stop biodiversity decline. Fencing along roads effectively reduces roadkill and is often used in combination with wildlife passages. Because fencing the entire road is not always possible due to financial constraints, high-frequency roadkill areas are often identified to inform the placement of fencing. We devised an adaptive fence-implementation plan to prioritize road sections for fencing. In this framework, areas along roads of high, moderate, and low levels of animal mortality (respectively roadkill hotspots, warmspots, and coldspots) are identified at multiple scales (i.e., in circles of different diameters [200-2000 m] in which mortality frequency is measured). Fence deployment is based on the relationship between the amount of fencing being added to the road, starting with roadkill hotspots, and potential reduction in road mortality (displayed in mortality-reduction graphs). We applied our approach to empirical and simulated spatial patterns of wildlife-vehicle collisions. The scale used for analysis affected the number and spatial extent of roadkill hot-, warm-, and coldspots. At fine scales (e.g., 200 m), more hotspots were identified than at coarse scales (e.g., 2000 m), but combined the fine-scale hotspots covered less road and less fencing was needed to reduce road mortality. However, many short fences may be less effective in practice due to a fence-end effect (i.e., animals moving around the fence more easily), resulting in a trade-off between few long and many short fences, which we call the FLOMS (few-long-or-many-short) fences trade-off. Thresholds in the mortality-reduction graphs occurred for some roadkill patterns, but not for others. Thresholds may be useful to consider when determining road-mitigation targets. The existence of thresholds at multiple scales and the FLOMS trade-off have important implications for biodiversity conservation. Article impact statement: Mortality-reduction graphs show by how much fencing can reduce roadkill at multiple scales and serve to identify trade-offs and thresholds. This article is protected by copyright. All rights reserved.

PMID: 32227646 [PubMed - as supplied by publisher]