Immunohistochemical localization of serotonin in intrapulmonary neuro-epithelial bodies
暂无分享,去创建一个
H. Steinbusch | A. Verhofstad | V. De Bock | J. Lauweryns | V. Bock | H. Steinbusch | A. Verhofstad | J. Lauweryns
[1] N. Track,et al. Bombesin, calcitonin and leu-enkephalin immunoreactivity in endocrine cells of human lung , 1981, Experientia.
[2] R. Dinerstein,et al. Morphology, histochemistry, and distribution of serotonin‐containing cells in tracheal epithelium of adult rabbit , 1981, The Anatomical record.
[3] R. North,et al. Multiple actions of 5‐hydroxytryptamine on myenteric neurones of the guinea‐pig ileum. , 1980, The Journal of physiology.
[4] J. Fahrenkrug,et al. Vasoactive intestinal polypeptide, 5‐hydroxytryptamine and reflex hyperaemia in the small intestine of the cat , 1980, The Journal of physiology.
[5] J. Kleinerman,et al. APUD cells and neuroepithelial bodies in hamster lung: methods, quantitation, and response to injury. , 1980, Thorax.
[6] K. Wasano,et al. APUD-type recepto-secretory cells in the chicken lung , 1979, Cell and Tissue Research.
[7] A. L. Chapman,et al. Scanning electron microscopy of bronchiolar neuroepithelial bodies in neonatal mouse lungs , 1979, The Anatomical record.
[8] D. Rogers,et al. Innervation and cytochemistry of the neuroepithelial bodies in the ciliated epithelium of the toad lung (Bufo marinus) , 1978, Cell and Tissue Research.
[9] E. Cutz,et al. Identification of neuro‐epithelial bodies in rabbit fetal lungs by scanning electron microscopy: A correlative light, transmission and scanning electron microscopic study , 1978, The Anatomical record.
[10] T. Lerut,et al. Cross-circulation studies on the influence of hypoxia and hypoxaemia on neuro-epithelial bodies in young rabbits , 1978, Cell and Tissue Research.
[11] K. Wasano,et al. Monoamine-containing granulated cells in the frog lung , 1978, Cell and Tissue Research.
[12] H. Joosten,et al. Localization of serotonin in the central nervous system by immunohistochemistry: Description of a specific and sensitive technique and some applications , 1978, Neuroscience.
[13] E. Gylfe. Association between 5-hydroxytryptamine release and insulin secretion. , 1978, The Journal of endocrinology.
[14] J. Wharton,et al. Bombesin-like immunoreactivity in the lung , 1978, Nature.
[15] A. Wilson,et al. Interaction between serotonin and efferent vagus nerves in dog lungs. , 1978, Journal of applied physiology: respiratory, environmental and exercise physiology.
[16] M. Liebens,et al. Microspectrography of formaldehyde and fluorescamine-induced fluorescence in rabbit pulmonary neuroepithelial bodies: Demonstration of a new, probably polypeptide intracytoplasmic substance , 1977, Experientia.
[17] J. Lauweryns,et al. Intrapulmonary neuro-epithelial bodies in newborn rabbits , 1977, Cell and Tissue Research.
[18] P. Conen,et al. Ultrastructure and fluorescence histochemistry of endocrine (APUD-type) cells in tracheal mucosa of human and various animal species , 1975, Cell and Tissue Research.
[19] J. Lauweryns,et al. Neuroepithelial bodies in the human child and adult lung. , 1975, The American review of respiratory disease.
[20] M. Cokelaere,et al. Neuroepithelial bodies in mammalian respiratory mucosa: light optical, histochemical an ultrastructural studies. , 1974, Chest.
[21] P. Conen,et al. Endocrine cells in rat fetal lungs. Ultrastructural and histochemical study. , 1974, Laboratory investigation; a journal of technical methods and pathology.
[22] J. Lauweryns,et al. Hypoxia-sensitive neuro-epithelial bodies intrapulmonary secretory neuroreceptors, modulated by the CNS , 1973, Zeitschrift für Zellforschung und Mikroskopische Anatomie.
[23] F. Sundler,et al. Occurrence and function of amines in endocrine cells producing polypeptide hormones. , 1973, Federation proceedings.
[24] C. G. Loosli,et al. Ultrastructure of nerves and associated cells in bronchiolar epithelium of the mouse lung. , 1973, Journal of ultrastructure research.
[25] J. Lauweryns,et al. Serotonin Producing Neuroepithelial Bodies in Rabbit Respiratory Mucosa , 1973, Science.
[26] J. Lauweryns,et al. Neuro-epithelial bodies in the respiratory mucosa of various mammals , 1972, Zeitschrift für Zellforschung und Mikroskopische Anatomie.
[27] F. Adams,et al. The effects of ganglionic blockade on tracheobronchial muscle in fetal and newborn lambs. , 1972, Respiration physiology.
[28] P. Conen,et al. Endocrine‐like cells in human fetal lungs: An electron microscopic study , 1972, The Anatomical record.
[29] J. Peuskens,et al. Neuro‐epithelial bodies (neuroreceptor or Secretory Organs?) in Human Infant Bronchial and Bronchiolar Epithelium , 1972, The Anatomical record.
[30] J. Peuskens,et al. Argyrophil, fluorescent and granulated (peptide and amine producing?) AFG cells in human infant bronchial epithelium. Light and electron microscopic studies. , 1970, Life sciences. Pt. 1: Physiology and pharmacology.
[31] J. Peuskens,et al. Argyrophil (kinin and amine producing?) cells in human infant airway epithelium. , 1969, Life sciences.
[32] L. M. Zieher,et al. CYTOCHEMISTRY OF 5-HYDROXYTRYPTAMINE AT THE ELECTRON MICROSCOPE LEVEL I. STUDY OF THE SPECIFICITY OF THE REACTION IN ISOLATED BLOOD PLATELETS , 1968, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[33] Liebow Aa,et al. Cells of Kultschitzky type in bronchioles and their relation to the origin of peripheral carcinoid tumor. , 1967 .
[34] J. Lauweryns. Pulmonary arterial vasculature in neonatal hyaline membrane disease. , 1966, Science.
[35] THE PULMONARY HYPOPERFUSION SYNDROME , 1965, Pediatrics.
[36] G. Gordon,et al. Studies on the bronchial counterpart of the Kultschitzky (argentaffin) cell and innervation of bronchial glands. , 1965, Journal of ultrastructure research.
[37] M. Klaus,et al. PRELIMINARY REPORT. THE PULMONARY HYPOPERFUSION SYNDROME. , 1965, Pediatrics.
[38] C A SMITH,et al. Studies on the circulation in the neonatal period. The circulation in the respiratory distress syndrome. , 1961, Pediatrics.
[39] THE JOURNAL OF HiSTOCHEMiSTRY AND CYTOCHEMiSTRY , 2005 .
[40] I. Keith,et al. Pulmonary neuroendocrine cells: Decreased serotonin fluorescence and stable argyrophil-cell numbers in acute hypoxia , 2004, Cell and Tissue Research.
[41] C. Capella,et al. Lead-haematoxylin as a stain for endocrine cells , 2004, Histochemie.
[42] F. Sundler,et al. Fluorescence and electron microscopy of amine-storing enterochromaffin-like cells in tracheal epithelium of mouse , 2004, Zeitschrift für Zellforschung und Mikroskopische Anatomie.
[43] A. Silverman,et al. Pituitary serotonin: Responsiveness of levels to hormonal change and ultrastructural alterations associated with amine depletion , 2004, Cell and Tissue Research.
[44] K. Wasano. Neuro-epithelial bodies in the lung of the rat and the mouse. , 1977, Archivum histologicum Japonicum = Nihon soshikigaku kiroku.
[45] W. Paton,et al. The origin of acetylcholine released from guinea‐pig intestine and longitudinal muscle strips , 1968, The Journal of physiology.
[46] Coons Ah. Fluorescent antibody methods , 1968 .
[47] K. Bensch,et al. Cells of Kultschitzky type in bronchioles and their relation to the origin of peripheral carcinoid tumor. , 1967, Laboratory investigation; a journal of technical methods and pathology.
[48] N. Assali,et al. CIRCULATORY AND METABOLIC ADJUSTMENTS OF THE FETUS AT BIRTH. , 1964, Biologia neonatorum. Neo-natal studies.
[49] J. Lauweryns,et al. A haemodynamic study of the syndrome of secondary pulmonary atelectasis. , 1961, Acta anatomica.
[50] A. H. Coons. Fluorescent antibody methods. , 1958, General cytochemical methods.