『徳島大学 教育・研究者情報データベース (EDB)』---[学外] /
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閲覧 H. Nagamune, C. Ohnishi, A. Katsuura, Y. Taoka, K. Fushitani, R.A. Whiley, Kikuji Yamashita, A. Tsuji, Y. Matsuda, T. Maeda, H. Korai and S. Kitamura : Intermedilysin;A cytolytic toxin specific for human cells of a Streptococcus intermedius isolated from human liver abscess, Streptococci and the Host, Vol.182, (号), 773-775, (都市), (month)1997.
閲覧 山下 菊治 : 生体融和材料から組織再生工学 細胞にやさしい生体融和材料, 材料開発ジャーナルバウンダリー, Vol.16, No.3, 7-12, 2000年3月.
閲覧 Yasuo Shinohara, Mohamad Radwan Almofti, Takenori Yamamoto, Taro Ishida, Fumio Kita, Hideki Kanzaki, Masakatsu Ohnishi, Kikuji Yamashita, Shigeomi Shimizu and Hiroshi Terada : Permeability transition-independent release of mitochondrial cytochromec induced by valinomycin, European Journal of Biochemistry, Vol.269, (号), 5224-5230, 2002.
閲覧 Naoko Masuda, Kazuhito Satomura, Eiji Hayashi, Kikuji Yamashita, Keiko Kume, Sachiko Nishisho, Eiichiro Kitaoka and Masaru Nagayama : (題名), (誌名), (巻), (号), (頁), San Diego, CA, USA, March 2002.
閲覧 森本 景之, 岡村 裕彦, 清水 克英, 山下 菊治, 北村 清一郎, 羽地 達次 : RNAiを用いた蛋白質脱リン酸化酵素1型アイソフォームの機能分析, 第44回歯科基礎医学会総会2002, (巻), (号), 188, 2002年10月.
閲覧 Kikuji Yamashita, Tomokazu Ichikawa, Takenori Yamamoto, Masatoshi Kataoka, Yoshinori Nakagawa, Hiroshi Terada and Yasuo Shinohara : Three-way effect of cyanine dye on the structure and function of mitochondria, J.Health Sci., Vol.49, No.6, 448-453, 2003.
閲覧 森本 景之, 岡村 裕彦, 山下 菊治, 北村 清一郎, 羽地 達次 : 細胞周期およびアポトーシスにおける蛋白質脱リン酸化酵素1型アイソフォームの役割分担, 第108回日本解剖学会総会, (巻), (号), 299, 2003年4月.
閲覧 森本 景之, 岡村 裕彦, 吉田 賀弥, 山下 菊治, 北村 清一郎, 羽地 達次 : 蛋白質脱リン酸化酵素阻害剤によるアポトーシスの誘導機序, 第45回歯科基礎医学会総会2003, (巻), (号), 78, 2003年9月.
閲覧 石橋 淳, 山下 菊治, 石川 達夫, 北村 清一郎 : HepG2細胞における遠赤外線の作用, 第48回歯科基礎医学会学術大会, (巻), (号), (頁), 2006年9月.
閲覧 篠原 千尋, 山下 菊治, 松尾 敬志, 北村 清一郎, 河野 文昭 : 炭酸脱水酵素阻害剤アセタゾラミド(Az)が破骨細胞および骨組織に与える影響, 第16回硬組織再生生物学会学術大会, 2007年9月.
閲覧 T Ishikawa, J Ishibashi, K Yamashita, Dalkhsuren Shine-od, K Sumida, T Masui and S. Kitamura : Non-thermal effects of far-infrared ray (FIR) on human hepatocellular carcinoma cells HepG2 and their tumors., Journal of Cancer Science & Therapy, Vol.1, No.2, 78-82, 2009.
閲覧 K Yamashita, Dalkhsuren Shine-od, T Ishikawa, S Sumida, J Ishibashi, H Hosokawa, A Ueno, F Nasu and S Kitamura : Far infrared ray radiation inhibits the proliferation of A549, HSC3 and Sa3 cancer cells through enhancing the expression of ATF3 gene., Journal of Electromagnetic Analysis and Applications, Vol.2, (号), 382-394, 2010.
閲覧 K Yamashita, Dalkhsuren Shine-od, T Ishikawa, K Sumida, J Ishibashi, H Hosokawa, A Ueno, F Nasu and S Kitamura : Far infrared ray radiation inhibits the proliferation of A549, HSC3 and Sa3 cancer cells through enhancing the expression of ATF3 gene., Journal of Electromagnetic Analysis and Applications, Vol.2, No.6, 382-394, 2010.
閲覧 K Yamashita, Dalkhsuren Shine-od, T Ishikawa, K Sumida, J Ishibashi, H Hosokawa, A Ueno, F Nasu and S Kitamura : Far infrared ray radiation inhibits the proliferation of A549, HSC3 and Sa3 cancer cells through enhancing the expression of ATF3 gene., Journal of Electromagnetic Analysis and Applications, Vol.2, (号), 382-394, 2010.
閲覧 K Yamashita, Dalkhsuren Shine-od, T Ishikawa, K Sumida, J Ishibashi, H Hosokawa, A Ueno, F Nasu and S Kitamura : (1)Far infrared ray radiation inhibits the proliferation of A549, HSC3 and Sa3 cancer cells through enhancing the expression of ATF3 gene., Journal of Electromagnetic Analysis and Applications, Vol.2, 382-394, 2010.
閲覧 山下 菊治 : ∼ポアレスな肌へ∼, (発行所), (都市), 2010年10月.
閲覧 Dalkhsuren Shine-Od, 山下 菊治, 塚田 ゆかり, 石川 達夫, 角田 佳折, 北村 清一郎 : 毛穴の構造と皮脂腺分泌に与える遠赤外線照射効果, 第116回日本解剖学会総会・全国学術集会, 2011年3月.
閲覧 Kikuji Yamashita : The Radiaion Effects of Far Infrared Ray (FIR) on Cancer were Controlled by Heat Shock Protein 70 (HSP), BIT'4th Annual Protein and Peptide Conference, (都市), March 2011.
閲覧 Kikuji Yamashita : The Medical Treatment Effect of Far Infrared Ray (FIR) Radiation on Cancer were Controlled by Heat Shock Protein70 (HSP70), BIT's4th Annual World Cancer Congress, (都市), May 2011.
閲覧 (著者) : (題名), Tongue, (巻), (号), (頁), 2012.
閲覧 Kaori Sumida, Kikuji Yamashita and Seiichiro Kitamura : Gross anatomical study of the human palatopharyngeus muscle throught its entile course from origin to insertion., Clinical Anatomy, Vol.125, No.3, 314, 2012.
閲覧 Mohamado Radwan Almofti, Tomokazu Ichikawa, Kikuji Yamashita and Yasuo Shinohara : Silver ion induces a cyclosporine A-insensitive permeability transition in rate liver mitochondria and release of apoptogenic cytochromec, Jounal of Biochemistry, (巻), (号), (頁), (年月日).
閲覧 Kikuji Yamashita and Dalkhsuren Shine-Od : The papillae of the human tongue, Tongue Anatomy, Kinematics and Diseases, (巻), (号), (頁), (年月日).
閲覧 Kikuji Yamashita and Dalksuren Shine-Od : The papillae of the human tongue, --- The tongue is a muscular organ which is fully covered by mucosa. The mucosa of tongue is specific, comparing to other organs of the oral cavity and differs even in the dorsal and ventral surface of it. Four different types of tongue papillae can be found on the dorsal surface: filiform, fungiform, circumvallate and foliate papillae [1]. These papillae are distributed in a specific pattern [2-5]. The fungiform, foliate and circumvallate papillae are known as the gustatory papillae, which contain taste buds and work as sensory organs [6]. The gustatory papillae are comprised of an epithelial covering over a broad core of connective tissue. Taste buds, which are discrete collections of approximately 40 to 60 cells within the papilla epithelium, are an oval sensory end organ that is involved in the perception of chemical stimuli and in taste transduction [3, 4, 7]. The fungiform papillae are located on the oral part of the tongue with a specific patterned array. In humans, circumvallate papillae about of 7 to 9 are located along the terminal sulcus. Foliate papillae are found on the lateral sides of the posterior one-third of the human tongue and are well-developed at birth, but revert to a rudimentary structure in adults [8]. It might be related of the need of mixing by the groove of foliate papillae as the mammary age of a baby. In addition, the fungiform-like structures which have a function for taste has been observed among the grooves of foliate papillae. It is not clear whether these are the real fungiform papillae or not (Figure 1).The ventral surface of the tongue appears smooth without papillae. Interestingly, in our study, the highest and numerous microridges were seen comparing to the area of the lingual body and interpapillar epithelium of the dorsal surface [9]. It can be speculated that the intercellular connection is more tightly resulting in non-keratinization and displaying the smooth surface. On the other hand, we speculated that the ventral surface of the tongue might be the area of micro-secretion of a vital substance which is the one mixture of saliva because of the small micro-pores that were greatly observed (data not shown). ---, (誌名), (巻), (号), (頁), (年月日).
閲覧 (著者) : Tongue, (誌名), (巻), (号), (頁), (年月日).
閲覧 (著者) : Tongue, (誌名), (巻), (号), (頁), (年月日).
閲覧 Kikuji Yamashita : Effects of dietary cure containing AFIR(Antioxidant far-infrared energy radiating) ceramics on living body of hatchery sea bream (pagrus major), International Journal of Innovative Studies in Sciences and Engineering Technology, Vol.2, No.10, 7-16, (年月日).
閲覧 Kikuji Yamashita : Scanning electron microscopic study of the tongue papillae formation, Central Asian Journal of Medical Sciences, Vol.3, No.1, 17-30, (年月日).
閲覧 山下 菊治, 角田 佳折 : 茎突咽頭筋の起始・走行・停止., 122, (巻), (号), 179, (年月日).

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