Scientific Literature Supporting the SFI Approach

Peer-Reviewed Journal Articles

1. Ames, R.N., E.R. Ingham and C.P.P. Reid. (1982). Ultraviolet-induced auto fluorescence of arbuscular mycorrhizal root infections: An alternative to clearing and staining methods for assessing infections. Can. Jr. Microbiol. 28:351-355.

  1. Ingham, E.R. and D.A. Klein. (1982). Relationship between fluoresces in diacetate-stained hyphae and oxygen utilization, glucose utilization and biomass of submerged fungal batch cultures. Appl. Environ.Microbiol. 28:351-355.
  2. McClellan, J.F., D.C. Coleman, K.A. Horton and E.R. Ingham. (1982). The effect of chloroform on protozoa and other soil inhabitants. J. Protozool. 29:491.
  3. Ingham, E.R. and D.A. Klein. (1984). Soil fungi: Relationships between hyphal activity and staining with fluoresce in diacetate. Soil Biol. Biochem. 16:273-278.
  4. Ingham, E.R. and D.A. Klein. (1984). Soil fungi: Measurement of hyphal length. Soil Biol. Biochem. 16:279-280.
  5. Ames, R.N., C.P.P. Reid and E.R. Ingham. (1984). Rhizosphere bacterial...
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Soil Foodweb Articles

Scientific Literature supporting the SFI Approach


October 21 2018

Title: Overview of Engineering Problems of Soil Compaction and Their Effects on Growth and Yields of Crops

Soil compaction constitutes serious engineering problems in agriculture that researchers have been contending with to proffer sustainable solution. This review work was carried out to contribute to the fixing of the problems. Effects of soilcompaction have eaten deep and are adversely affecting the production of food and fibre throughout the world. Soilcompaction occurs when soil particles are pressed together, leading to increased density and reduction in soil porespace. Thus, physical structure of the soil finds it difficult to support and applied mechanical stress leading to loss of soilstructural units, decrease...
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