原著論文 |
(7) |
Takahashi, N, P. P. Ling, J. M. Frantz. Considerations for Accurate Whole Plant Photosynthesis Measurement, Environment Control in Biology, 46(2), 91-101, 2008. |
(6) |
Takahashi, N., A. Isogai, P. P. Ling, Y. Kato, K. Kurata. Effects of Elevated Atmospheric Carbon Dioxide Concentration on Silica Deposition in Rice (Oryza sativa L.) Panicle, Plant Production Science, 11(3),307-315, 2008. |
(5) |
Takahashi, N., K. Kurata. Relationship between Transpiration and Silica Content of the Rice Panicle under Elevated Atmospheric Carbon Dioxide Concentration, Journal of Agricultural Meteorology, 63(2), 89-94, 2007. |
(4) |
Takahashi, N., Y. Kato, A. Isogai, K. Kurata. Silica Distribution on the Husk Epidermis at Different Parts of the Panicle in Rice (Oryza sativa L.) Determined by X-ray Microanalysis, Plant Production Science, 9(2), 168-171, 2006. |
(3) |
Takahashi, N., K. Kurata. Effects of Silica Application on Transpiration from Rice Panicle under Elevated CO2 Concentration, Journal of Agricultural Meteorology, 60(6), 1133-1135, 2005. |
(2) |
Yoshimoto, M., H. Oue, N. Takahashi, K. Kobayashi. The effect of FACE (Free-Air CO2 Enrichment) on temperature and transpiration of rice panicles at flowering stage, Journal of Agricultural Meteorology, 60(5), 597-600, 2005. |
(1) |
Takahashi, N., H. Murase, K. Murakami. Local Temperature Control within a Confined Space by Using a Neural Network Model, 植物工場学会誌, 14(3), 131-135, 2002. |
プロシーディングス |
(6) |
Takahashi, N, P. P. Ling, J. M. Frantz, M. H. Klingman. Time response improvement of a whole canopy photosynthesis measurement system. Annual International Meeting of American Society of Agricultural and Biological Engineers, Paper No. 085141, 2008. |
(5) |
Takahashi, N, P. P. Ling, M. Klingman, J. M. Frantz. System approach for improved whole canopy photosynthesis measurement, Proceedings of Japanese Society of Agricultural, Biological, and Environmental Engineers and Scientists, p 184-185, 2007. |
(4) |
Takahashi, N., P. P. Ling, H. Murase. Prediction of panicle silica content under elevated atmospheric carbon dioxide concentration using neural network models, Proceedings of Bio-robotics III 3rd IFAC International Workshop on Bio-Robotics, Information Technology and Intelligent Control for Bioproduction Systems, p 112-116, 2006. |
(3) |
Takahashi, N., H. Murase. Local temperature control by manipulating the wind directions and temperatures of the airflow, Proceedings of International Symposium on Automation and Mechatronics of Agricultural and Bioproduction System, p 363-368, 2002. |
(2) |
Murase, H., N. Takahashi, K. Murakami, T. Fujiura, Y. Nishiura. Neural network model for distributed temperature control, Proceedings of 3rd IFAC/CIGR workshop on control applications in post-harvest processing technology, p 177-180, 2001. |
(1) |
Murase, H., N. Takahashi, K. Murakami. Local temperature control within a confined space, Proceedings of 2nd IFAC-CIGR workshop on intelligent control for agricultural applications, p 53-56, 2001. |