Structural changes of collagen components and diminution of nerves in congenital ureteropelvic junction obstruction.
暂无分享,去创建一个
T. Ushiki | T. Koyanagi | K. Nonomura | K. Abe | T. Yamashita | M. Murakumo | Tomohiko Koyanagi | Masashi Murakumo | Tatsuo Ushiki | Kazuhiro Abe
[1] B. Churchill,et al. Evaluation of Pediatric Hydronephrosis Using Individualized Pressure Flow Criteria , 1995 .
[2] D. Reen,et al. Abnormal innervation and altered nerve growth factor messenger ribonucleic acid expression in ureteropelvic junction obstruction. , 1995, The Journal of urology.
[3] T. Ushiki,et al. Three-dimensional arrangement of collagen and elastin fibers in the human urinary bladder: a scanning electron microscopic study. , 1995, The Journal of urology.
[4] T. Ushiki,et al. Scanning electron microscopic studies of smooth muscle cells and their collagen fibrillar sheaths in empty, distended and contracted urinary bladders of the guinea pig. , 1993, Archives of histology and cytology.
[5] P. Howard,et al. Effect of physical forces on bladder smooth muscle and urothelium. , 1993, The Journal of urology.
[6] V. Marshall,et al. Presence and regional variation in peptide-containing nerves in the human ureter. , 1992, Journal of the autonomic nervous system.
[7] T. Ushiki,et al. Scanning electron microscopic studies of tissue elastin components exposed by a KOH-collagenase or simple KOH digestion method. , 1991, Archives of histology and cytology.
[8] H. Tahara. The three-dimensional structure of the musculature and the nerve elements in the rabbit ureter. , 1990, Journal of anatomy.
[9] O. Ohtani,et al. Three-dimensional organization of the connective tissue fibers of the human pancreas: a scanning electron microscopic study of NaOH treated-tissues. , 1987, Archivum histologicum Japonicum = Nihon soshikigaku kiroku.
[10] A. Kumagai. [Morphological study of congenital hydronephrosis in reference to its pathogenesis]. , 1987, Nihon Hinyokika Gakkai zasshi. The japanese journal of urology.
[11] Y. Uehara,et al. The architecture of the musculature of the guinea-pig ureter as examined by scanning electron microscopy. , 1985, The Journal of urology.
[12] A. Dhillon,et al. PGP 9.5—a new marker for vertebrate neurons and neuroendocrine cells , 1983, Brain Research.
[13] J. Gosling,et al. Functional obstruction of the ureter and renal pelvis. A histological and electron microscopic study. , 1978, British journal of urology.
[14] T. Allen. Congenital ureteral strictures. , 1970, Birth defects original article series.
[15] M. Hanna,et al. Ureteral structure and ultrastructure. Part II. Congenital ureteropelvic junction obstruction and primary obstructive megaureter. , 1976, The Journal of urology.
[16] Gerrity Rg,et al. The aortic tunica media of the developing rat. II. Incorporation by medial cells 3-H-proline into collagen and elastin: autoradiographic and chemical studies. , 1975 .
[17] R. Ross,et al. THE SMOOTH MUSCLE CELL I. In Vivo Synthesis of Connective Tissue Proteins , 1971 .
[18] F. W. Wiglesworth,et al. Observations on the ureteropelvic junction. , 1970, The Journal of urology.
[19] R. Notley. Electron microscopy of the upper ureter and the pelvi-ureteric junction. , 2008, British journal of urology.
[20] Murnaghan Gf. The dynamics of the renal pelvis and ureter with reference to congenital hydronephrosis. , 1958 .