Studies
An individual study is a summary of a specific scientific study, providing background context, the conservation action(s) taken and their consequences.
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Study | Published | Actions | |
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Two Mile Bottom bat hibernaculum from folly to fantasy Based on: Gibbons N. (2013). Study Link |
2013 | 1 | |
Artificial tree hollow creation for cavity-using wildlife – trialling an alternative method to that of nest boxes Based on: Rueegger N. (2017). Study Link |
2017 | 1 | |
Mitigating the impact of bats in historic churches: the response of Natterer’s bats Myotis nattereri to artificial roosts and deterrence Based on: Zeale M.R.K, Bennitt E., Newson S.E, Packman C., Browne W.J, Harris S., Jones G. & Stone E. (2016). Study Link |
2016 | 4 | |
Protecting and managing underground sites for bats Based on: Mitchell-Jones A.J., Bihari Z., Masing M. & Rodrigues L. (2007) EUROBATS report, 2. Study Link |
2007 | 1 | |
Poor effectiveness of Natura 2000 beech forests in protecting forest-dwelling bats Based on: Zehetmair T., Müller J., Runkel V., Stahlschmidt P., Winter S., Zharov A. & Gruppe A. (2015). Study Link |
2015 | 1 | |
Are species listed in the Annex II of the Habitats Directive better represented in Natura 2000 network than the remaining species? A test using Spanish bats Based on: Lisón F., Sánchez-Fernández D. & Calvo J.F. (2015). Study Link |
2015 | 1 | |
Response of bats to light with different spectra: light-shy and agile bat presence is affected by white and green, but not red light Based on: Spoelstra K., van Grunsven R.H.A., Ramakers J.J.C., Ferguson K.B., Raap T., Donners M. & Veenendaal E.M. (2017). Study Link |
2017 | 1 | |
The biodiversity impacts of street lighting. Appendix G: An experimental test of a mitigation strategy to reduce the impacts of lighting on bats Based on: Mathews F., Gaston K., Bennie J., Day J., Schofield H. & Baker J. (2015) DEFRA report, WC1011. Study Link |
2015 | 1 | |
Is part-night lighting an effective measure to limit the impacts of artificial lighting on bats Based on: Azam C., Kerbiriou C., Vernet A., Julien J.-F., Bas Y., Plichard L., Maratrat J. & Le Viol I. (2015). Study Link |
2015 | 1 | |
Adverse effects of artificial illumination on bat drinking activity Based on: Russo D., Cistrone L., Libralato N., Korine C., Jones G. & Ancillotto L. (2017). Study Link |
2017 | 1 | |
Experimental evidence of light disturbance along commuting routes of pond bats Myotis dasycneme Based on: Kuijper D.P.J., Schut J., van Dulleman D., Limpens H., Toorman H., Goossens N. & Ouwehand J. (2008). Study Link |
2008 | 1 | |
Street lighting disturbs commuting bats Based on: Stone E.L., Jones G. & Harris S. (2009). Study Link |
2009 | 1 | |
Age of enlightenment: long-term effects of outdoor aesthetic lights on bats in churches Based on: Rydell J., Eklöf J. & Sánchez-Navarro S. (2017). Study Link |
2017 | 1 | |
Community composition and activity of insectivorous bats in Mediterranean olive farms Based on: Herrera J.M., Costa P., Medinas D., Marques J.T. & Mira A. (2015). Study Link |
2015 | 1 | |
Efficacy of a probiotic bacterium to treat bats affected by the disease white-nose syndrome Based on: Cheng T.L., Mayberry H., McGuire L.P., Hoyt J.R., Langwig K.E., Nguyen |H., Parise K.L., Foster J.T., Willis C.K.R., Kilpatrick A.M. & Frick W.F. (2017). Study Link |
2017 | 1 | |
Host, pathogen, and environmental characteristics predict white-nose syndrome mortality in captive little brown myotis (Myotis lucifugus) Based on: Johnson J.S., Reeder D.M., McMichael J.W. III, Meierhofer M.B., Stern D.W.F., Lumadue S.S., Sigler L.E., Winters H.D., Vodzak M.E., Kurta A., Kath J.A. & Field K.A. (2014). Study Link |
2014 | 1 | |
Controlling invasive predators enhances the long-term survival of endangered New Zealand long-tailed bats (Chalinolobus tuberculatus): Implications for conservation of bats on oceanic islands Based on: O'Donnell C.F.J., Pryde M.A., van Dam-Bates P. & Elliott G.P. (2017). Study Link |
2017 | 1 | |
Confinement of a colony of Tadarida brasiliensis, a management alternative compatible with conservation Confinamento de una colonia de Tadarida brasiliensis, una alternativa de manejo compatible con la conservación Based on: Regidor H., Mosa S. & Núñez A. (2003). Study Link |
2003 | 1 | |
Influence of reservoirs created by small dams on the activity of bats Based on: Hintze F., Duro V., Carvalho J.C., Eira C., Rodrigues P.C. & Vingada J. (2016). Study Link |
2016 | 1 | |
Relationships between bat occupancy and habitat and landscape structure along a savanna, woodland, forest gradient in the Missouri Ozarks Based on: Starbuck C.A., Amelon S.K. & Thompson F.R. III (2015). Study Link |
2015 | 1 | |
Prescribed fire in eucalypt woodlands: immediate effects on a microbat community of northern Australia Based on: Inkster-Draper T.E., Sheaves M., Johnson C.N. & Robson S.K.A. (2013). Study Link |
2013 | 1 | |
Effects of cave tours on breeding Myotis velifer Based on: Mann S.L., Steidl R.J. & Dalton V.M. (2002). Study Link |
2002 | 3 | |
Population trends of cave-dwelling bats in the eastern Iberian Peninsula and the effect of protecting their roosts Based on: Machado M.C., Monsalve M.A., Castello A., Almenar D., Alcocer A. & Monros J.S. (2017). Study Link |
2017 | 2 | |
Effects of cave gating on population trends at individual hibernacula of the Indiana bat (Myotis sodalis) Based on: Crimmins S.M., McKann P.C., Szymanski J.A. & Thogmartin W.E. (2014). Study Link |
2014 | 1 | |
Recovery of a colony of Miniopterus schreibersii from a cave, Cueva de Ágreda, in Soria Recuperación de la colonia de Miniopterus schreibersii de la cueva de Cueva de Ágreda (Soria) Based on: Alcalde J.T, Artácoz A. & Meijide F. (2012). Study Link |
2012 | 1 |
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