scholarly article | Q13442814 |
P356 | DOI | 10.1007/BF00303435 |
P953 | full work available at URL | http://link.springer.com/content/pdf/10.1007/BF00303435.pdf |
http://link.springer.com/article/10.1007/BF00303435/fulltext.html | ||
http://link.springer.com/content/pdf/10.1007/BF00303435 | ||
P698 | PubMed publication ID | 4693636 |
P50 | author | Nicole Marthe Le Douarin | Q457343 |
P2093 | author name string | J. M. Polak | |
N. Le Douarin | |||
F. W. Rost | |||
A. G. Pearse | |||
J. Fontaine | |||
C. Le Lièvre | |||
P2860 | cites work | The cytochemistry and ultrastructure of polypeptide hormone-producing cells of the APUD series and the embryologic, physiologic and pathologic implications of the concept | Q28237047 |
Journal of Pharmacology and Experimental Therapeutics | Q1500272 | ||
THE DEVELOPMENT OF THE RAT CAROTID BODY | Q34090230 | ||
Ultrastructure of the carotid body | Q36188113 | ||
An improved microspectrofluorimeter with automatic digital data logging: Construction and operation | Q36547206 | ||
Carotid body: structure and function | Q40008443 | ||
Electron microscopic radioautographic studies of the carotid body following injections of labeled biogenic amine precursors | Q41112006 | ||
Electron Microscopic Observations of the Carotid Body of the Cat | Q41818686 | ||
Observations on the fine structure and histochemistry of the carotid body in the cat and rabbit | Q41973846 | ||
Neural crest origin of the endocrine polypeptide (APUD) cells of the gastrointestinal tract and pancreas | Q43249663 | ||
Medullary cancer of the thyroid gland associated with hypercorticism | Q44417305 | ||
Ultrastructural characteristics of the thyroid C cells in the summer, autumn and winter states of the hedgehog (Erinaceus europaeus L.), with some reference to other mammalian species | Q46695746 | ||
The practical histochemical demonstration of catecholamines by formaldehyde-induced fluorescence | Q46929853 | ||
Lead-haematoxylin as a stain for endocrine cells. Significance of staining and comparison with other selective methods | Q49116094 | ||
Selective staining of endocrine cells by basic dyes after acid hydrolysis | Q49156649 | ||
The content and localization of catecholamines in the carotid labyrinths and aortic arches ofRana temporaria | Q51207161 | ||
Common cytochemical properties of cells producing polypeptide hormones, with particular reference to calcitonin and the thyroid C cells. | Q51226393 | ||
Ultrastructure of the human carotid body. A perspective on the mode of chemoreception. | Q53831824 | ||
Catecholamines in the Carotid Body of the Cat | Q59060500 | ||
5-Hydroxytryptophan Uptake by Dog Thyroid ‘C’ Cells, and its Possible Significance in Polypeptide Hormone Production | Q59069913 | ||
Cytochemical Evidence for an Ultimobranchial Origin of Rodent Thyroid C Cells | Q59096661 | ||
Cytochemical Demonstration of Catecholamines in the Human Carotid Body | Q59098960 | ||
Histochemical characteristics of chemoreceptor organs (glomera) | Q68428421 | ||
Analysis of fluorescence excitation peak ratios for the cellular identification of noradrenaline, dopamine or their mixtures | Q69158024 | ||
Experimental research on the embryologic origin of the carotid body in birds | Q69377721 | ||
The histochemically demonstrable monoamines of human fetal carotid body | Q70400271 | ||
Cytochemical evidence for the neural crest origin of mammalian ultimobranchial C cells | Q70529519 | ||
Catecholamines in the avian carotid body | Q71251808 | ||
Fluorogenic amine tracing of neural crest derivatives forming the adrenal medulla | Q71756208 | ||
Concomitant depletion of dopamine and secretory granules from cells in the ultimobranchial gland of vitamin D2-treated chicken | Q71783855 | ||
An ultrastructural study of the carotid body of horse and dog | Q71866767 | ||
The uptake and localization of radioactive DOPA by amphibian melanoblasts in vitro | Q72030003 | ||
Fine structure of the carotid body of normal and anoxic cats | Q72081269 | ||
[Ultrastructural study of ultimobranchial body of chicken. I. Normal aspect and embryonal development] | Q72473215 | ||
Four types of main cells in the carotid body of the cat | Q72535214 | ||
Demonstration of catecholamines and 5-hydroxytryptamine in the human carotid body | Q72865629 | ||
Fine structure of the carotid body of Macaca mulata monkey | Q93780662 | ||
[The metabolism of catecholamines in the carotid body of the rat. (Radio-autographic studies using 3H-Dopa)] | Q93792036 | ||
Demonstration of neural origin of calcitonin cells of ultimobranchial body of chick embryo | Q93804211 | ||
[The migration of pigmentary cells studies by the method of heterospecific grafts of neural tube in bird embryo] | Q93804618 | ||
Optical and electron microscopical study of cytoplasmic granules in human carotid body, carotid body tumours and glomus jugulare tumours | Q93816537 | ||
Localization, by the method of interspecific grafts of the neural area from which adrenal cells arise in the bird embryo | Q93821063 | ||
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | cell biology | Q7141 |
P304 | page(s) | 191-203 | |
P577 | publication date | 1973-01-01 | |
P1433 | published in | Histochemie. Histochemistry. Histochimie | Q27711107 |
P1476 | title | Demonstration of the neural crest origin of type I (APUD) cells in the avian carotid body, using a cytochemical marker system | |
P478 | volume | 34 |
Q73897341 | A case of primitive floor of the mouth paraganglioma in a child: an embryological theory unifying viscerocranium appended paragangliomas |
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Q37584866 | Adrenergic differentiation of cells of the cholinergic ciliary and Remak ganglia in avian embryo after in vivo transplantation |
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Q34972650 | Carotid body and glomus cells distributed in the wall of the common carotid artery in the bird |
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Q51478081 | Characteristics of 5-HT-containing chemoreceptor cells of the chicken aortic body. |
Q48514958 | Combined endovascular and surgical treatment of carotid body tumor in a patient with thoracic situs solitus |
Q36438230 | Comparative embryology of the carotid body |
Q37638606 | Convergence of Stimuli in Arterial Chemoreceptors |
Q40116008 | Demonstration of hormonal activity of a glomus jugulare tumour by catecholamine determination |
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Q72616450 | Effects of substance P on carotid chemoreceptor activity in the cat |
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Q41048448 | Enterochromaffin cells as the endocrine source of gastrointestinal substance P |
Q33708212 | Evolution of the hypoxia-sensitive cells involved in amniote respiratory reflexes |
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Q67449593 | Fine structure of chemosensitive cells (glomus caroticum) in tissue culture |
Q67863570 | Formaldehyde induced catecholamine fluoroscence in the mouse inferior laryngeal paraganglion |
Q55338865 | HIF-2α is essential for carotid body development and function. |
Q39923621 | Histochemical observations on uptake of L-dopa into endocrine cells of the rat pituitary gland during the postnatal development |
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Q53752379 | Microfluorometry of primary and secondary fluorescence in biological tissue |
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Q67685533 | The acetylcholinesterase reaction and catecholamine fluorescence in the glomus cells of rat carotid body |
Q41790595 | The diffuse neuroendocrine system: peptides, amines, placodes and the APUD theory. |
Q40007611 | The effect of combined chronic hypoxia and N-ethyl-N-nitrosourea on the carotid bodies of rats |
Q67323220 | The general ultrastructure of the carotid body of the domestic fowl |
Q70424496 | The glomus cell of the carotid labyrinth of Xenopus laevis |
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Q40351167 | Tracheal paraganglioma: A case report with review of the literature |
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