Åsa Bång

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Publications

Articles in journals

Bång, Å. , Nilsson, C. & Holm, S. (2007). The potential role of tributaries as seed sources to an impoundment in northern Sweden : a field experiment with seed mimics. River research and applications, vol. 23: 10, pp. 1049-1057.

Kondolf, G. M. , Boulton, A. J. , O'Daniel, S. , Poole, G. C. , Rahel, F. J. , Stanley, E. H. , Wohl, E. , Bång, Å. & et al. (2006). Process-based ecological river restoration: : Visualizing three-dimensional connectivity and dynamic vectors to recover lost linkages. Ecology and Society, vol. 11: 2:5, pp. 1-16.

Winka, K. , Eriksson, O. E. & Bång, Å. (1998). Molecular evidence for recognizing the Chaetothyriales . Mycologia, vol. 90: 5, pp. 822-830.

Conference papers

Bång, Å. , Nilsson, C. & Holm, S. (2004). What is the role of tributaries as seed sources for a run-of-river impoundment: a field experiment : Konferens SISORL 2004. .

Nilsson, C. , Bång, Å. & Holm, S. (2003). Control of plant species diversity in riparian corridors : Konferens ESEB 2003. .

Bång, Å. , Holm, S. & Nilsson, C. (2002). Control of plant species diversity in riparian corridors : Konferens OIKOS 2002. .

Doctoral theses, comprehensive summaries

Bång, Å. (2007). Genetic variation and gene flow in riparian populations of Filipendula ulmaria. Dis. (Comprehensive summary) Sundsvall : Mittuniversitetet, 2007 (Mid Sweden University doctoral thesis : 30)

Licentiate theses, comprehensive summaries

Bång, Å. (2006). Go with the flow? : Filipendula ulmaria, a common riparian plant species. Lic. (Comprehensive summary) Sundsvall : Mittuniversitetet, 2006 (Mid Sweden University licentiate thesis : 17)

Manuscripts

Bång, Å. , Jägbrant, V. & Holm, S. Spatial genetic structure of a common riparian plant species, Meadowsweet (Filipendula ulmaria) in northern Sweden

Bång, Å. , Jonsson, B. G. & Holm, S. Equal seed set and germination rate over distance and indication of self incompatibility in artificial crosses of Filipendula ulmaria

Holm, S. , Bång, Å. & Jonsson, B. G. Paternity analysis in Filipendula ulmaria indicates high level of gene flow between populations, using AFLP