Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
den Brok, Bas
Passchier, Cees
and
Sieber, Michel
1998.
Fibre growth in wet salt aggregates in a temperature gradient field.
Mineralogical Magazine,
Vol. 62,
Issue. 4,
p.
527.
Stowell, Julia F. W.
Watson, Adrian P.
and
Hudson, Neil F. C.
1999.
Geometry and population systematics of a quartz vein set, Holy Island, Anglesey, North Wales.
Geological Society, London, Special Publications,
Vol. 155,
Issue. 1,
p.
17.
Koehn, Daniel
Hilgers, Chris
Bons, Paul D.
and
Passchier, Cees W.
2000.
Numerical simulation of fibre growth in antitaxial strain fringes.
Journal of Structural Geology,
Vol. 22,
Issue. 9,
p.
1311.
Koehn, Daniel
and
Passchier, Cees W
2000.
Shear sense indicators in striped bedding-veins.
Journal of Structural Geology,
Vol. 22,
Issue. 8,
p.
1141.
Bons, Paul D.
2001.
The formation of large quartz veins by rapid ascent of fluids in mobile hydrofractures.
Tectonophysics,
Vol. 336,
Issue. 1-4,
p.
1.
Oliver, Nicholas H. S.
and
Bons, Paul D.
2001.
Mechanisms of fluid flow and fluid–rock interaction in fossil metamorphic hydrothermal systems inferred from vein–wallrock patterns, geometry and microstructure.
Geofluids,
Vol. 1,
Issue. 2,
p.
137.
Hilgers, C
Koehn, D
Bons, P.D
and
Urai, J.L
2001.
Development of crystal morphology during unitaxial growth in a progressively widening vein: II. Numerical simulations of the evolution of antitaxial fibrous veins.
Journal of Structural Geology,
Vol. 23,
Issue. 6-7,
p.
873.
Means, W.D.
and
Li, T.
2001.
A laboratory simulation of fibrous veins: some first observations.
Journal of Structural Geology,
Vol. 23,
Issue. 6-7,
p.
857.
Bons, P.D
2001.
Development of crystal morphology during unitaxial growth in a progressively widening vein: I. The numerical model.
Journal of Structural Geology,
Vol. 23,
Issue. 6-7,
p.
865.
Hilgers, Christoph
and
Urai, Janos L
2002.
Microstructural observations on natural syntectonic fibrous veins: implications for the growth process.
Tectonophysics,
Vol. 352,
Issue. 3-4,
p.
257.
Elburg, Marlina A.
Bons, Paul D.
Foden, John
and
Passchier, Cees W.
2002.
The origin of fibrous veins: constraints from geochemistry.
Geological Society, London, Special Publications,
Vol. 200,
Issue. 1,
p.
103.
De Meer, S.
Drury, M. R.
De Bresser, J. H. P.
and
Pennock, G. M.
2002.
Current issues and new developments in deformation mechanisms, rheology and tectonics.
Geological Society, London, Special Publications,
Vol. 200,
Issue. 1,
p.
1.
Evans, Bernard W.
2004.
The Serpentinite Multisystem Revisited: Chrysotile Is Metastable.
International Geology Review,
Vol. 46,
Issue. 6,
p.
479.
Nollet, Sofie
Urai, Janos L.
Bons, Paul D.
and
Hilgers, Christoph
2005.
Numerical simulations of polycrystal growth in veins.
Journal of Structural Geology,
Vol. 27,
Issue. 2,
p.
217.
Renard, François
Andréani, Muriel
Boullier, Anne-Marie
and
Labaume, Pierre
2005.
Crack-seal patterns: records of uncorrelated stress release variations in crustal rocks.
Geological Society, London, Special Publications,
Vol. 243,
Issue. 1,
p.
67.
STALLARD, A.
and
SHELLEY, D.
2005.
The initiation and development of metamorphic foliation in the Otago Schist, Part 1: competitive oriented growth of white mica.
Journal of Metamorphic Geology,
Vol. 23,
Issue. 6,
p.
425.
Hilgers, Christoph
and
Urai, Janos L.
2005.
On the arrangement of solid inclusions in fibrous veins and the role of the crack-seal mechanism.
Journal of Structural Geology,
Vol. 27,
Issue. 3,
p.
481.
Andreani, M.
Boullier, A.-M.
and
Gratier, J.-P.
2005.
Development of schistosity by dissolution–crystallization in a Californian serpentinite gouge.
Journal of Structural Geology,
Vol. 27,
Issue. 12,
p.
2256.
HILGERS, C.
and
SINDERN, S.
2005.
Textural and isotopic evidence on the fluid source and transport mechanism of antitaxial fibrous microstructures from the Alps and the Appalachians.
Geofluids,
Vol. 5,
Issue. 4,
p.
239.
Bons, Paul D.
and
Montenari, Michael
2005.
The formation of antitaxial calcite veins with well-developed fibres, Oppaminda Creek, South Australia.
Journal of Structural Geology,
Vol. 27,
Issue. 2,
p.
231.