Oxygen distribution in wetland plant roots and permeability barriers to gas-exchange with the rhizosphere: a microelectrode and modelling study with Phragmites australis W Armstrong, D Cousins, J Armstrong, DW Turner, PM Beckett Annals of Botany 86 (3), 687-703, 2000 | 462 | 2000 |
Phragmites australis– A preliminary study of soil‐oxidizing sites and internal gas transport pathways J Armstrong, W Armstrong New phytologist 108 (4), 373-382, 1988 | 431 | 1988 |
Phragmites australis: Venturi‐ and humidity‐induced pressure flows enhance rhizome aeration and rhizosphere oxidation J Armstrong, W Armstrong, PM Beckett New phytologist 120 (2), 197-207, 1992 | 409 | 1992 |
Rice: Sulfide-induced Barriers to Root Radial Oxygen Loss, Fe2+ and Water Uptake, and Lateral Root Emergence J Armstrong, W Armstrong Annals of Botany 96 (4), 625-638, 2005 | 293 | 2005 |
A convective through-flow of gases in Phragmites australis (Cav.) Trin. ex Steud. J Armstrong, W Armstrong Aquatic Botany 39 (1-2), 75-88, 1991 | 291 | 1991 |
Light‐enhanced convective throughflow increases oxygenation in rhizomes and rhizosphere of Phragmites australis (Cav.) Trin. ex Steud. J Armstrong, W Armstrong New Phytologist 114 (1), 121-128, 1990 | 287 | 1990 |
Measurement and modelling of oxygen release from roots of Phragmites australis W Armstrong, J Armstrong, PM Beckett Constructed wetlands in water pollution control, 41-51, 1990 | 278 | 1990 |
Rice and Phragmites: effects of organic acids on growth, root permeability, and radial oxygen loss to the rhizosphere J Armstrong, W Armstrong American Journal of Botany 88 (8), 1359-1370, 2001 | 242 | 2001 |
Pathways of aeration and the mechanisms and beneficial effects of humidity-and Venturi-induced convections in Phragmites australis (Cav.) Trin. ex Steud. J Armstrong, W Armstrong, PM Beckett, JE Halder, S Lythe, R Holt, ... Aquatic Botany 54 (2-3), 177-197, 1996 | 210 | 1996 |
Phragmites die‐back: sulphide‐ and acetic acid‐induced bud and root death, lignifications, and blockages within aeration and vascular systems J Armstrong, F Afreen‐Zobayed, W Armstrong New Phytologist 134 (4), 601-614, 1996 | 198 | 1996 |
Phragmites die–back: bud and root death, blockages within the aeration and vascular systems and the possible role of phytotoxins J Armstrong, W Armstrong, WH Van der Putten New Phytologist 133 (3), 399-414, 1996 | 157 | 1996 |
An overview of the effects of phytotoxins on Phragmites australis in relation to die-back J Armstrong, W Armstrong Aquatic Botany 69 (2-4), 251-268, 2001 | 130 | 2001 |
On the relative importance of convective and diffusive gas flows in plant aeration PM Beckett, W Armstrong, S Justin, J Armstrong New Phytologist 110 (4), 463-468, 1988 | 117 | 1988 |
Phragmites die-back: toxic effects of propionic, butyric and caproic acids in relation to pH J Armstrong, W Armstrong The New Phytologist 142 (2), 201-217, 1999 | 113 | 1999 |
Phragmites australis: effects of shoot submergence on seedling growth and survival and radial oxygen loss from roots J Armstrong, F Afreen-Zobayed, S Blyth, W Armstrong Aquatic Botany 64 (3-4), 275-289, 1999 | 103 | 1999 |
A history of pressurised gas-flow studies in plants W Grosse, J Armstrong, W Armstrong Aquatic Botany 54 (2-3), 87-100, 1996 | 103 | 1996 |
Micropropagation of potato: evaluation of closed, diffusive and forced ventilation on growth and tuberization SMA Zobayed, J Armstrong, W Armstrong Annals of Botany 87 (1), 53-59, 2001 | 100 | 2001 |
Convective gas-flows in wetland plant aeration W Armstrong, J Armstrong, PM Beckett, S Justin Plant life under oxygen deprivation 283, 283-302, 1991 | 100 | 1991 |
Pressurised ventilation in emergent macrophytes: the mechanism and mathematical modelling of humidity-induced convection W Armstrong, J Armstrong, PM Beckett Aquatic Botany 54 (2-3), 121-135, 1996 | 94 | 1996 |
Rhizome phyllosphere oxygenation in Phragmites and other species in relation to redox potential, convective gas flow, submergence and aeration pathways J Armstrong, RE Jones, W Armstrong New Phytologist 172 (4), 719-731, 2006 | 89 | 2006 |