Morphologic and Aerodynamic Considerations Regarding the Plumed Seeds of Tragopogon pratensis and Their Implications for Seed Dispersal
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Vincent Casseau | Camilla Pandolfi | Dario Izzo | V. Casseau | G. de Croon | C. Pandolfi | Guido De Croon | Dario Izzo | Guido De Croon
[1] A. Winn. Effects of seed size and microsite on seedling emergence of Prunella vulgaris in four habitats , 1985 .
[2] H. Epps. Prediction of single-layer fabric air permeability by statistical modeling , 1996 .
[3] Pierre-Henri Gouyon,et al. Metapopulation Genetics and the Evolution of Dispersal , 1995, The American Naturalist.
[4] Dr. Leendert van der Pijl. Principles of Dispersal in Higher Plants , 1983, Springer Berlin Heidelberg.
[5] Adrian E. Scheidegger,et al. The physics of flow through porous media , 1957 .
[6] Suresh G. Advani,et al. Flow of generalized Newtonian fluids across a periodic array of cylinders , 1993 .
[7] H. de Kroon,et al. Only seed size matters for germination in different populations of the dimorphic Tragopogon pratensis subsp. pratensis (Asteraceae). , 2005, American journal of botany.
[8] E. Clavijo. The role of dimorphic achenes in the biology of the annual weed Leontodon longirrostris. , 2001 .
[9] P. Carman. Fluid flow through granular beds , 1997 .
[10] K. Sreenivasan,et al. On the formation and suppression of vortex ‘shedding’ at low Reynolds numbers , 1990, Journal of Fluid Mechanics.
[11] C. D. Maxwell,et al. Somatic polymorphism in the achenes of Tragopogon dubius , 1994 .
[12] Mark C Andersen,et al. DIASPORE MORPHOLOGY AND SEED DISPERSAL IN SEVERAL WIND-DISPERSED ASTERACEAE. , 1993, American journal of botany.
[13] H. McAllister,et al. Principles of Dispersal in Higher Plants , 1970, Springer Berlin Heidelberg.
[14] O. Eriksson,et al. Trade-offs between dispersal and competitive ability: a comparative study of wind-dispersed Asteraceae forbs , 2003, Evolutionary Ecology.
[15] G. Matlack. DIASPORE SIZE, SHAPE, AND FALL BEHAVIOR IN WIND-DISPERSED PLANT SPECIES1 , 1987 .
[16] S. D. Hendrix,et al. Population demography of Pastinaca sativa (Apiaceae) : effects of seed mass on emergence, survival, and recruitment , 1992 .
[17] A. Fahn,et al. 4 – ANATOMICAL MECHANISMS OF SEED DISPERSAL , 1972 .
[18] L. A. Richards. Physics of Flow Through Porous Media , 1958 .
[19] Martin Rhodes,et al. Introduction to Particle Technology , 1998 .
[20] M. Ramsey,et al. Sources and consequences of seed mass variation in Banksia marginata (Proteaceae) , 1998 .
[21] D. Greene,et al. The differential effect of updrafts, downdrafts and horizontal winds on the seed abscission of Tragopogon dubius , 2011 .
[22] J. Lepart,et al. Seed heteromorphism in Crepis sancta (Asteraceae): performance of two morphs in different environments. , 1997 .
[23] Akira Azuma,et al. Various flying modes of wind-dispersal seeds. , 2003, Journal of theoretical biology.
[24] Wendy Parciak. ENVIRONMENTAL VARIATION IN SEED NUMBER, SIZE, AND DISPERSAL OF A FLESHY-FRUITED PLANT , 2002 .
[25] Alan Mcginley Mark,et al. Fruit morphology and terminal velocity in Tragopogon dubius , 1989 .
[26] C. Augspurger,et al. Wind Dispersal of Artifical Fruits Varying in Mass, Area, and Morphology , 1987 .
[27] D. Greene,et al. The aerodynamics of plumed seeds , 1990 .