Flying tracks, flight altitude and directions of movement of nocturnal migrant birds, as shown by marine radar

Author:

TAGO Kazumi1,TAKAHASHI Hiroaki1,HAGIWARA Yojiro1,MASUKO Osamu1,YOKOYAMA Yoko1,KONDO Hiroaki1,ARIYAMA Yoshiaki2,HIGUCHI Hiroyoshi3

Affiliation:

1. Institute of Environmental Informatics IDEA Consultants, Inc.

2. Wildlife Division, Nature Conservation Bureau, Ministry of the Environment Japan

3. Research and Education Center for Natural Sciences, Keio University

Publisher

JStage (Ornithological Society of Japan)

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference33 articles.

1. Bartoń K (2018) MuMIn: Multi-Model Inference.R package version 1.42.1. (online) https://CRAN.R-project.org/package=MuMIn, accessed 2019–4–1.

2. Blew J, Diederichs A, Grünkorn T, Hoffmann M & Nehls G (2005) Investigations of the bird collision risk and the responses of Harbour Porpoises in the offshore wind farms Horns Rev, North Sea, and Nysted, Baltic Sea. Denmark. Universität Hamburg and Bio Consult SH Report, Hamburg.

3. Bridge ES, Kelly JF, Contina A, Gabrielson RM, MacCurdy RB & Winkler DW (2013) Advances in tracking small migratory birds: a technical review of light-level geolocation. J Field Ornithol 84: 121–137.

4. Bruderer B (1994) Nocturnal bird migration in the Negev (Israel) –A tracking radar study. Ostrich 65: 204–212.

5. Buler JJ & Dawson DK (2014) Radar analysis of fall bird migration stopover sites in the northeastern U.S. Condor 116: 357–370.

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