User Tools

Site Tools


publications:publications

Differences

This shows you the differences between two versions of the page.

Link to this comparison view

Both sides previous revisionPrevious revision
Next revision
Previous revision
publications:publications [2025/01/10 18:13] – [2014] wkurthpublications:publications [2025/01/11 18:25] (current) – [2022] wkurth
Line 5: Line 5:
 ===== Articles ===== ===== Articles =====
  
 +==== 2022 ====
 +
 +**Chi F., Streit K., Tavkhelidze A., and W. Kurth (2022).** Reconstruction of phyllotaxis at the example of digitized red mangrove (Rhizophora mangle) and application to light interception simulation. in silico Plants 4 (1): diac002.  https://academic.oup.com/insilicoplants/article/4/1/diac002/6535671
 +
 +==== 2020 ====
 +
 +**Kurth W. (2020).** Multiscale graph grammars can generate Cayley graphs of groups and monoids. In: F. Gadducci, T. Kehrer (eds.): Graph Transformation. 13th International Conference, ICGT 2020, June 25-26, Lecture Notes in Computer Science 12150, Springer Nature Switzerland, pp. 307-315.  https://link.springer.com/chapter/10.1007/978-3-030-51372-6_18
 +
 +==== 2019 ====
 +
 +**Fabrika M., Scheer L., Sedmák R., Kurth W., and M. Schön (2019).** Crown architecture and structural development of young Norway spruce trees (Picea abies Karst.): A basis for more realistic growth modelling. BioResources 14 (1): 908-921.
 +
 +==== 2018 ====
 +
 +**Henke M., and G.H. Buck-Sorlin (2018).** Using a full spectral raytracer for calculating light microclimate in functional-structural plant modelling. Computing and Informatics 36 (6): 1492-1522.
 +
 +**Long Q., Kurth W., Pradal C., Migault V., and B. Pallas (2018).** An architecture for the integration of different functional and structural plant models. In: Proceedings of the 7th Internat. Conf. on Informatics, Environment, Energy and Applications IEEA 2018, 28-31 March 2018, Beijing, China, ACM Press, Beijing 2018, ISBN 978-1-4503-6362-4, pp. 107-113.
 +
 +**Merklein J., Poirier-Pocovi M., Buck-Sorlin G., Kurth W., and Q. Long (2018).** A dynamic model of xylem and phloem flux in an apple branch. In: 6th Internat. Symposium on Plant Growth Modeling, Simulation, Visualization and Applications PMA 2018, 4-8 Nov. 2018, Hefei, China. IEEE, pp. 50-55.
  
 ==== 2017 ==== ==== 2017 ====
Line 11: Line 30:
  
 **Kurth W., and Y. Ong (2017).** A design pattern in XL for implementing multiscale models, demonstrated at a fruit tree simulator. Proceedings X Int. Symp. on Modelling in Fruit Research and Orchard Management, Acta Horticulturae 1160: 35-41. **Kurth W., and Y. Ong (2017).** A design pattern in XL for implementing multiscale models, demonstrated at a fruit tree simulator. Proceedings X Int. Symp. on Modelling in Fruit Research and Orchard Management, Acta Horticulturae 1160: 35-41.
 +
 +**Long Q., and W. Kurth (2017).** A logical data exchange model for adapting different methods abstracting plant architecture. In: 2017 2nd International Conference on Knowledge Engineering and Applications ICKEA 2017, Oct. 21-23, 2017, Imperial College London, UK (IEEE 2017), ISBN 978-1-5386-2149-3, pp. 39-43.
 +
  
 ==== 2016 ==== ==== 2016 ====
Line 33: Line 55:
  
 ==== 2014 ==== ==== 2014 ====
- 
  
 **Bongers F.J., Evers J.B., Anten N.P.R., and R. Pierik (2014).** From shade avoidance responses to plant performance at vegetation level: using virtual plant modelling as a tool. New Phytologist 204: 268–272. **Bongers F.J., Evers J.B., Anten N.P.R., and R. Pierik (2014).** From shade avoidance responses to plant performance at vegetation level: using virtual plant modelling as a tool. New Phytologist 204: 268–272.
Line 53: Line 74:
  
 ==== 2013 ==== ==== 2013 ====
- 
  
 **Hemmerling R., Evers J.B., Smolenova K., Buck-Sorlin G., and W. Kurth (2013).** Extension of the GroIMP modelling platform to allow easy specification of differential equations describing biological processes within plant models. Computers and Electronics in Agriculture 92: 1-8. **Hemmerling R., Evers J.B., Smolenova K., Buck-Sorlin G., and W. Kurth (2013).** Extension of the GroIMP modelling platform to allow easy specification of differential equations describing biological processes within plant models. Computers and Electronics in Agriculture 92: 1-8.
Line 68: Line 88:
  
 **Henke M., Smolenová K., Ong Y., and W. Kurth. (2013).** An extension of the graph-grammar based simulator GroIMP for visual specification of plant models using components. In: R. Sievänen, E. Nikinmaa, C. Godin, A. Lintunen and P. Nygren (eds.), Proceedings of the 7th International Conference on Functional-Structural Plant Models, Saariselkä, Finland, 9-14 June 2013. ISBN 978-951-651-408-9: 217-219. http://www.metla.fi/fspm2013/proceedings.htm **Henke M., Smolenová K., Ong Y., and W. Kurth. (2013).** An extension of the graph-grammar based simulator GroIMP for visual specification of plant models using components. In: R. Sievänen, E. Nikinmaa, C. Godin, A. Lintunen and P. Nygren (eds.), Proceedings of the 7th International Conference on Functional-Structural Plant Models, Saariselkä, Finland, 9-14 June 2013. ISBN 978-951-651-408-9: 217-219. http://www.metla.fi/fspm2013/proceedings.htm
- 
- 
  
  
Line 99: Line 117:
  
 ==== 2010 ==== ==== 2010 ====
- 
  
 **Smolenová K., Buck-Sorlin G., Hemmerling R., and W. Kurth. (2010).** Extension of a functional-structural model of barley for modelling of carbon and nitrogen partitioning. In: T. DeJong, and D. Da Silva (eds.), Proceedings of the 6th International Workshop on Functional-Structural Plant Models (FSPM10), Davis, California, USA. 12-17 September, 2010. University of California, 27-29. **Smolenová K., Buck-Sorlin G., Hemmerling R., and W. Kurth. (2010).** Extension of a functional-structural model of barley for modelling of carbon and nitrogen partitioning. In: T. DeJong, and D. Da Silva (eds.), Proceedings of the 6th International Workshop on Functional-Structural Plant Models (FSPM10), Davis, California, USA. 12-17 September, 2010. University of California, 27-29.
Line 149: Line 166:
  
 ==== 2005 ==== ==== 2005 ====
-** +**Buck-Sorlin G., Kniemeyer O., and W. Kurth (2005).** Barley morphology, genetics and hormonal regulation of internode elongation modelled by a Relational Growth Grammar. New Phytologist, 166: 859-867.
-Buck-Sorlin G., Kniemeyer O., and W. Kurth (2005).** Barley morphology, genetics and hormonal regulation of internode elongation modelled by a Relational Growth Grammar. New Phytologist, 166: 859-867.+
  
 **Kurth W., Kniemeyer O., and G. Buck-Sorlin (2005).** Relational Growth Grammars – A Graph Rewriting Approach to Dynamical Systems with a Dynamical Structure. In: J.-P. Banatre, P. Fradet, J.-L. Giavitto, and O. Michel (eds.), Unconventional Programming Paradigms. International Workshop UPP2004, Le Mont Saint Michel, France, 15-17 September, 2004, Revised Selected and Invited Papers, Lecture Notes in Computer Science, Vol. 3566, Springer Verlag, Berlin, Heidelberg, 56-72. **Kurth W., Kniemeyer O., and G. Buck-Sorlin (2005).** Relational Growth Grammars – A Graph Rewriting Approach to Dynamical Systems with a Dynamical Structure. In: J.-P. Banatre, P. Fradet, J.-L. Giavitto, and O. Michel (eds.), Unconventional Programming Paradigms. International Workshop UPP2004, Le Mont Saint Michel, France, 15-17 September, 2004, Revised Selected and Invited Papers, Lecture Notes in Computer Science, Vol. 3566, Springer Verlag, Berlin, Heidelberg, 56-72.
Line 172: Line 188:
  
 **Kurth W. (1998).** Some new formalisms for modelling the interactions between plant architecture, competition and carbon allocation. Bayreuther Forum Ökologie, 52: 53-98. http://www.uni-forst.gwdg.de/~wkurth/cb/html/form.ps.gz **Kurth W. (1998).** Some new formalisms for modelling the interactions between plant architecture, competition and carbon allocation. Bayreuther Forum Ökologie, 52: 53-98. http://www.uni-forst.gwdg.de/~wkurth/cb/html/form.ps.gz
- 
  
 ==== 1994 ==== ==== 1994 ====
Line 180: Line 195:
  
 ===== Dissertations ===== ===== Dissertations =====
 +
 +==== 2019 ====
 +
 +**Stiehm Ch. (2019).** Interconnection of a Forest Growth Model and a Structural Model for Young Poplar Trees (Populus spp.). Ph.D. thesis, University of Göttingen, Germany.  https://ediss.uni-goettingen.de/bitstream/handle/21.11130/00-1735-0000-0005-1364-5/Diss.pdf?sequence=1
 +
 +**Long Q. (2019).** The Integration of Different Functional and Structural Plant Models. Ph.D. thesis, University of Göttingen, Germany.
  
 ==== 2015 ==== ==== 2015 ====
Line 203: Line 224:
 ===== Posters ===== ===== Posters =====
  
-==== 2010 ====+==== 2013 ====
  
 +**Smolenová K., Henke M., Ong Y., and W. Kurth (2013).** Rule-based integration of LIGNUM into GroIMP. Poster on the 7th International Conference on Functional-Structural Plant Models (FSPM13), Saariselkä (Finland), 9.-14. 6. 2013.  http://www.uni-forst.gwdg.de/~wkurth/poster_fspm13_sm.pdf
 +
 +==== 2010 ====
  
 **Smolenová K., Hemmerling R., and W. Kurth. (2010).** Towards the reconstruction of historical gardens and parks using the techniques of FSPM. Poster on the “6th International Workshop on Functional-Structural Plant Modelling” (FSPM10), 12-17 September 2010, Davis, California, USA.   http://wwwuser.gwdg.de/%7Egroimp/grogra.de/publications/poster_fspm10_sm.pdf **Smolenová K., Hemmerling R., and W. Kurth. (2010).** Towards the reconstruction of historical gardens and parks using the techniques of FSPM. Poster on the “6th International Workshop on Functional-Structural Plant Modelling” (FSPM10), 12-17 September 2010, Davis, California, USA.   http://wwwuser.gwdg.de/%7Egroimp/grogra.de/publications/poster_fspm10_sm.pdf
publications/publications.1736529210.txt.gz · Last modified: 2025/01/10 18:13 by wkurth