1. 1) 森猛,金子想,林暢彦,内田大介,小笠原照夫:鋼床版デッキ進展き裂の起点を対象とした応力影響面とその利用,土木学会論文集 A1, Vol. 73, No. 1, pp. 21-31, 2017. [Mori, T., Kaneko, S., Hayashi, N., Uchida, D. and Ogasawara, T.: Stress influence plane at originating point of fatigue crack propagating into deck plate of steel plate deck and its application, Journal of JSCE Ser. A1, Vol. 73, No. 1, pp. 21-31, 2017.]
2. 2) 横関耕一,横山薫,冨永知徳,三木千壽:鋼床版縦横リブ交差部構造の高疲労強度化,土木学会論文集 A1, Vol. 73, No. 1, pp. 206-217, 2017. [Yokozeki, K., Yokoyama, K., Tominaga, T. and Miki, C.: Fatigue enhancement of longitudinal-to-transverse rib connection in orthotropic steel deck, Journal of JSCE Ser. A1, Vol. 73, No. 1, pp. 206-217, 2017.]
3. 3) 横山薫,鈴木俊光,橋本幹司,三木千壽:主桁に隣接する縦リブに着目した鋼床版縦横リブ交差部の疲労寿命に関する一検討,土木学会第71回年次学術講演会概要集,I-56, 2020. [Yokoyama, K., Suzuki, T., Hashimoto, T. and Miki, C.: A study on fatigue life of longitudinal-to-transverse rib connection in orthotropic steel deck, Proc. 71st Annual Conf. JSCE, I-56, 2020.]
4. 4) 石川一美,岡村宏一,益田敬:選点法を応用した平板構造の影響面の解析について,土木学会第39回年次学術講演会概要集,I部門,pp. 19-20, 1984. [Ishikawa, K., Okamura, H. and Masuda, T.: Analysis of influence surface of plate structures by point collocation method, Proc. 39th Annual Conf. JSCE, pp. 19-20, 1984.]
5. 5) 佐光浩継,岡村宏一,石川一美:選点法を応用した曲線平板構造の影響面の解析,土木学会第42回年次学術講演会概要集,I部門,pp. 22-23, 1987. [Sako, H., Okamura, H. and Ishikawa, K.: Analysis of influence surface of curved plate structure applying collocation method, Proc. 42nd Annual Conf. JSCE, pp. 22-23, 1987.]