98
Hans Winkler
Acknowledgments. I thank F.G. Barth for his invitation to write this chapter. E.
Nemeth provided the data for the analyses on antbirds. For this, his productive
discussion, and great enthusiasm during our field work, I am most grateful. The
work at the Surumoni crane site was supported by the Fonds zur Forderung der
Wissenschaftlichen Forschung, project Pll563. J. Szarzynski provided valuable
results and comments related to his extensive micrometeorological studies at the
Surumoni study site. Special thanks go to T. Dabelsteen and his coworkers, who
introduced us into their elaborate techniques of sound analysis. W. Deutsch helped
in many ways in procuring the technical literature. Work on woodpeckers had
been supported by the F.M. Chapman Fund, AMNH, New York.
References
Attenborough K (1985) Acoustical impedance models for outdoor ground
surfaces. J Sound Vibr 99:521-544
Aylor D (1971) Noise reduction by vegetation and ground. J Acoust Soc Am
51:197-205
Ball GF, Gentner TQ (1998) They're playing our song: gene expression and
birdsong perception. Neuron 21:271-274
Birkhead T, Meller AP (1992) Sperm Competition in Birds. Academic Press,
London, 282 p
Bowman RI (1979) Adaptive morphology of song dialects. J Omithol 120:353380
Bradbury JW, Vehrencarnp SL (1998) Principles of Animal Communication.
Sinauer, Sunderland MS
Brenowitz EA (1982) The active space of red-winged blackbird song. J Comp
Physiol A 147:511-522
Brenowitz EA (1986) Environmental influences on acoustic and electric animal
communication. Brain Behav Evol 28:32-42
Brown CH (1982) Ventriloquial and locatable vocalizations in birds. Z
Tierpsychol59:338-350
Catchpole CK, Slater PJB (1995) Bird Song: Biological Themes and Variations.
Cambridge University Press, Cambridge, 248 p
Chappuis C (1971) Un exemple de l'influence du milieu sur les emissions vocales
des oiseaux: L' evolution des chants en foret equatoriale. Terre et Vie 2: 183-202
Cheng MF, Peng JP, Johnson P (1998) Hypothalamic neurons preferentially
respond to female nest coo stimulation: demonstration of direct acoustic
stimulation ofluteinizing hormone release. J Neurosci 18:5477-5489
Chessell CI (1977) Propagation of noise along a finite impedance boundary. J
Acoust Soc Am 62:825-834
Coles RB, Lewis DB, Hill KG, Hutchings ME, Gower OM (1980) Directional
hearing in the Japanese quail (Coturnix coturnix japonica). II. Cochlear
physiology. J Exp Biol86:153-170
Hans Winkler
Acknowledgments. I thank F.G. Barth for his invitation to write this chapter. E.
Nemeth provided the data for the analyses on antbirds. For this, his productive
discussion, and great enthusiasm during our field work, I am most grateful. The
work at the Surumoni crane site was supported by the Fonds zur Forderung der
Wissenschaftlichen Forschung, project Pll563. J. Szarzynski provided valuable
results and comments related to his extensive micrometeorological studies at the
Surumoni study site. Special thanks go to T. Dabelsteen and his coworkers, who
introduced us into their elaborate techniques of sound analysis. W. Deutsch helped
in many ways in procuring the technical literature. Work on woodpeckers had
been supported by the F.M. Chapman Fund, AMNH, New York.
References
Attenborough K (1985) Acoustical impedance models for outdoor ground
surfaces. J Sound Vibr 99:521-544
Aylor D (1971) Noise reduction by vegetation and ground. J Acoust Soc Am
51:197-205
Ball GF, Gentner TQ (1998) They're playing our song: gene expression and
birdsong perception. Neuron 21:271-274
Birkhead T, Meller AP (1992) Sperm Competition in Birds. Academic Press,
London, 282 p
Bowman RI (1979) Adaptive morphology of song dialects. J Omithol 120:353380
Bradbury JW, Vehrencarnp SL (1998) Principles of Animal Communication.
Sinauer, Sunderland MS
Brenowitz EA (1982) The active space of red-winged blackbird song. J Comp
Physiol A 147:511-522
Brenowitz EA (1986) Environmental influences on acoustic and electric animal
communication. Brain Behav Evol 28:32-42
Brown CH (1982) Ventriloquial and locatable vocalizations in birds. Z
Tierpsychol59:338-350
Catchpole CK, Slater PJB (1995) Bird Song: Biological Themes and Variations.
Cambridge University Press, Cambridge, 248 p
Chappuis C (1971) Un exemple de l'influence du milieu sur les emissions vocales
des oiseaux: L' evolution des chants en foret equatoriale. Terre et Vie 2: 183-202
Cheng MF, Peng JP, Johnson P (1998) Hypothalamic neurons preferentially
respond to female nest coo stimulation: demonstration of direct acoustic
stimulation ofluteinizing hormone release. J Neurosci 18:5477-5489
Chessell CI (1977) Propagation of noise along a finite impedance boundary. J
Acoust Soc Am 62:825-834
Coles RB, Lewis DB, Hill KG, Hutchings ME, Gower OM (1980) Directional
hearing in the Japanese quail (Coturnix coturnix japonica). II. Cochlear
physiology. J Exp Biol86:153-170
