APA
Matsumoto T., Tanaka M., Nakanish R., Takuwa M., Hirabayashi T., Ono K., Ikeji T., Maeshige N., Sakai Y., Akisue T., Kondo H., Ishihara A. & Fujino H. (20190911). Transcutaneous carbon dioxide attenuates impaired oxidative capacity in skeletal muscle in hyperglycemia model. : General physiology and biophysics.
Chicago
Matsumoto Tomohiro, Tanaka Masayuki, Nakanish Ryosuke, Takuwa Mihi, Hirabayashi Takumi, Ono Kohei, Ikeji Takuya, Maeshige Noriaki, Sakai Yoshitada, Akisue Toshihiro, Kondo Hiroyo, Ishihara Akihiko and Fujino Hidem. 20190911. Transcutaneous carbon dioxide attenuates impaired oxidative capacity in skeletal muscle in hyperglycemia model. : General physiology and biophysics.
Harvard
Matsumoto T., Tanaka M., Nakanish R., Takuwa M., Hirabayashi T., Ono K., Ikeji T., Maeshige N., Sakai Y., Akisue T., Kondo H., Ishihara A. and Fujino H. (20190911). Transcutaneous carbon dioxide attenuates impaired oxidative capacity in skeletal muscle in hyperglycemia model. : General physiology and biophysics.
MLA
Matsumoto Tomohiro, Tanaka Masayuki, Nakanish Ryosuke, Takuwa Mihi, Hirabayashi Takumi, Ono Kohei, Ikeji Takuya, Maeshige Noriaki, Sakai Yoshitada, Akisue Toshihiro, Kondo Hiroyo, Ishihara Akihiko and Fujino Hidem. Transcutaneous carbon dioxide attenuates impaired oxidative capacity in skeletal muscle in hyperglycemia model. : General physiology and biophysics. 20190911.