First Forty-Eight Hours of Developing Otitis Media: An Experimental Study
暂无分享,去创建一个
[1] P. Goldie,et al. Neuropeptides in intact and denervated tympanic membranes , 1989, Archives of oto-rhino-laryngology.
[2] M. Stack,et al. Human mast cell tryptase activates single-chain urinary-type plasminogen activator (pro-urokinase). , 1994, The Journal of biological chemistry.
[3] S. Hellström,et al. A rat model for pneumococcal otitis media. , 1988, American journal of otolaryngology.
[4] M. Leinonen,et al. The bacteriology of acute otitis media in children with special reference to Streptococcus pneumoniae as studied by bacteriological and antigen detection methods. , 1981, Scandinavian journal of infectious diseases.
[5] S. Hellström,et al. Healing of Tympanic Membrane after Myringotomy during Streptococcus Pneumoniae Otitis Media an Otomicroscopic and Histologic Study in the Rat , 1996, The Annals of otology, rhinology, and laryngology.
[6] P. Goldie,et al. Identification and Characterization of Middle Ear Vascular Leakage Sites in Experimental Otitis Media , 1990, The Annals of otology, rhinology, and laryngology.
[7] J. Weisel,et al. The electron microscope band pattern of human fibrin: various stains, lateral order, and carbohydrate localization. , 1986, Journal of ultrastructure and molecular structure research.
[8] S. Hellström,et al. Myringosclerosis Develops within 9 h of Myringotomy , 1999, ORL.
[9] M. Cubellis,et al. The receptor for urokinase‐plasminogen activator , 1986, Journal of cellular biochemistry.
[10] B. Winblad,et al. Structure of the pars flaccida after occlusion of the Eustachian tube or blockade of the tympanic isthmus. , 1982, International journal of pediatric otorhinolaryngology.
[11] G. Bloom,et al. The release of histamine from the pars flaccida mast cells one cause of otitis media with effusion? , 1982, Acta oto-laryngologica.
[12] C. Francis,et al. Structural studies of fibrinolysis by electron microscopy. , 1998, Blood.
[13] S. Hellström,et al. Early structural changes in the rat tympanic membrane during pneumococcal otitis media , 2004, European Archives of Oto-Rhino-Laryngology.
[14] F. Hayden,et al. Polymerase chain reaction–based detection of rhinovirus, respiratory syncytial virus, and coronavirus in otitis media with effusion☆☆☆★★★ , 1998, The Journal of Pediatrics.
[15] A. Nash,et al. Events Occurring Immediately After the Entry of the Microorganism , 2001, Mims' Pathogenesis of Infectious Disease.
[16] G. Bloom,et al. Mast cells in the pars flaccida of the tympanic membrane. A quantitative morphological and biochemical study in the rat , 1983, Experientia.
[17] B. Binder,et al. The mast cell as site of tissue-type plasminogen activator expression and fibrinolysis. , 1999, Journal of immunology.
[18] M. Arock,et al. Mast cells and basophils in innate immunity. , 1998, Seminars in immunology.
[19] P. Mårdh,et al. The aetiology of acute otitis media in children. Occurrence of bacteria, L forms of bacteria and mycoplasma in the middle ear exudate. Relationship between bacterial findings in the middle ear exudate, nasopharynx and throat. , 1971, Scandinavian journal of infectious diseases.
[20] S. Hellström,et al. Bacteriological characterization of the effusion material in an animal model for serous and purulent otitis media. , 1990, Acta oto-laryngologica.
[21] G. Bloom,et al. Middle ear effusion caused by mechanical stimulation of the external auditory canal. An experimental study in the rat. , 1983, Acta oto-laryngologica.
[22] P. Goldie,et al. Middle ear effusion induced by various inflammatory mediators and neuropeptides. An experimental study in the rat. , 1989, Acta oto-laryngologica.
[23] V. V. van Hinsbergh. Regulation of the synthesis and secretion of plasminogen activators by endothelial cells. , 1988, Haemostasis.
[24] T. Stigbrand,et al. Sequential analysis of serum proteins in middle ear effusions , 1990, European Archives of Oto-Rhino-Laryngology.
[25] J. Wahlfors,et al. Use of multiplex PCR for simultaneous detection of four bacterial species in middle ear effusions , 1997, Journal of clinical microbiology.
[26] H. Dvorak,et al. Regulation of extravascular coagulation by microvascular permeability. , 1985, Science.
[27] G. S. Simonsen,et al. Bacterial behaviour in middle ear effusion material: an in vitro study. , 1996, Acta oto-laryngologica.
[28] G. Bloom,et al. An overlooked site of tissue mast cells--the human tympanic membrane. Implications for middle ear affections. , 1986, Acta oto-laryngologica.
[29] S. Hellström,et al. Degranulation of Mast Cells Provokes a Massive Inflammatory Reaction in the Tympanic Membrane , 2001, The Laryngoscope.