STRUCTURAL ORGANIZATION OF TRACHEA AND PRIMARY BRONCHUS OF THE 7-10 MONTHS’ FETUS
Experemental medicine

STRUCTURAL ORGANIZATION OF TRACHEA AND PRIMARY BRONCHUS OF THE 7-10 MONTHS’ FETUS

Published 2019-05-15

Authors:

Т.V. Khmara
L.Ya. Fedoniuk
L.А. Sarafiniuk
А.А. Halahdyna
V.А. Honcharenko

Abstract:
The histological examination was conducted on 24 series of the thoracic part histological sections of trachea and the primary bronchus in the human fetus of 231.0-375.0 mm of parietal-coccyхal length. Microscopic study of the trachea and bronchus in the fetus of 231.0-375.0 mm TKD showed that their wall consists of mucosa, submucosa, fibrous-cartilage layer and adventitia, which in different age periods have their structural features. Histological examination of the trachea and primary bronchus in the early period of the ontogenesis of the human fetus revealed a fragmentary nature of the cartilage skeleton structure of the trachea and primary bronchus at the completion of the formation of other layers. It was established that at the end of the fetal period of ontogenesis (311.0-375.0 mm PCL), an intensive development of the components of the trachea wall and primary bronchus, which anatomically causes increased growth and formation in this period of prenatal ontogenesis, is observed.
Keywords:
trachea primary bronchus microscopic structure fetus human
References:
  1. Harchenko VV, Mantulina LA, Nikishina EI, Bahmet AA, Klochkova SV. Sostoyanie slizistoy obolochki traheobronhialnogo dereva v norme u lyudey zrelogo vozrasta. Kurskiy nauchno-prakticheskiy vestnik “Chelovek i ego zdorove”. 2016; 2-3: 89-99. [in Russian]
  2. Kisilevskiy MV, Lebedinskaya OV, Anisimova NYu, Polotskiy BE, Davyidov MI. Geterotopnaya transplantatsiya matriksa trahei, zaselennogo mezenhialnyimi stvolovyimi kletkami retsipientov. Vestnik Uralskoy meditsinskoy akademicheskoy nauki. 2012: 41(4): 41-42. [in Russian]
  3. Myagkov AP, Rudik NV, Myagkov SA, Sementsov AS, Nakonechnyiy SYu.Znachenie kompyuterno-tomograficheskoy angiopulmonografii v diagnostike hronicheskoy tromboembolicheskoy legochnoy gipertenzii. Promeneva diagnosty`ka, promeneva terapiya. 2016; 1: 14-20. [in Russian]
  4. Johannes CS. Development of the lung. Cell Tissue Res. 2017; 367(3): 427–444.
  5. Reid JH, Coche EE, Inoue T, Kim EE, Dondi M, Watanabe N, Mariani G. Is the lungscan alive and well? Facts and controversies in defining the role of lung scintigraphyfor the diagnosis in the era of MDCT. Eur. J. Nucl. Med. Mol.Imaging. 2009; 36(3): 505-521.
  6. Xia GB, Hogan LM, Baldock R, Bard J, Morriss-Kay G. Kaufman's Atlas of Mouse Development Supplement (Coronal Images). 2016. 345 p.
Publication:
«World of Medicine and Biology» Vol. 15 No. 69 (2019) , с. 230-233
УДК 611.231/.233-053.1