ISSN 2415-3060 (print), ISSN 2522-4972 (online)
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УЖМБС 2019, 4(1): 243–248
https://doi.org/10.26693/jmbs04.01.243
Biology

Anatomic Features of the Spleen in Vertebrate Animals

Dunaievska O. F.
Abstract

Filtering, purifying, depositing functions of the spleen are closely connected with the system of blood circulation, which occurs in it. Moreover, the anatomical structure is determined by the design of vascular circulation in the body. The purpose of the work was defining the anatomical features of the vascular circulation of the spleen depending on the form of the organ in representatives of different classes of vertebrates. Material and methods. The spleen was taken from sexually mature animals of both sexes in the ratio of 1: 1 in the phase of morphofunctional maturity of the organ: catfish, frog; lizards, pigeon, chicken, quail, sheep, pig, horse, bovine and rabbit. Angiography of vessels was performed after the introduction of 76 % triombrast and ultrasound. Linear parameters of the body (width, length) were determined in mm by direct measurement. The index of spleen development was calculated as a percentage of the ratio of width to length. Results and discussion. The anatomical structure and morphology of the spleen are determined by the place of animals in the evolutionary series of vertebrates. The spleen of all animals under study was located under the ribs to the left. In poikilothermic animals, it was located in ripples. The spleen was fixed with a binder apparatus in homeothermic animals. The number of gates depends on the form of the organ and is ranged from 1 to 4. We detected the out of organ branching of the splenic artery. A tree-like type of vessel branching is characteristic for a spleen of round shape, the elongated form is characterized by the location of the arteries and veins by segments. In the phylogenetic series of vertebrates, the spleen shape is different and is determined by the index of spleen development (ISD): round-elongate (elliptical) is in the frog (ISD = 74.91 %), chicken and quail (ISD = 68.08 % and 63.29 ± 2.18 %); elongated form is in the lizard (ISD = 26.56 %), bovine (ISD = 32.50 %) and horse (ISD = 25.84 %); narrow and strongly elongated form is in a pigeon (ISD = 12.50 %), rabbit (ISD = 8.66 %), pig (ISD = 12.98 %); in the catfish it is triangular-elongated or trapezoidal-elongated (ISD = 77.02 %). In sheep, it has variable characteristics: triangular, elliptical or triangular-elliptic and trapezoidal (ISD = 69.81 %). Conclusions. The anatomical features of the spleen depend not only on the class and the species of animals. In the case of surgical intervention, an ultrasound examination of the body is required. It will allow a spleen-saving operation to be performed as effectively as possible. The following anatomical features must be taken into account: age, sex, breeding, and, most importantly, individual anatomical features.

Keywords: anatomy, spleen, vertebrates, form, vessels

Full text: PDF (Ukr) 280K

References
  1. Vyshnevskaia TYa, Abramova LL. Dinamika morfofunktsionalnogo sostoyaniya selezеnki krolika kak indikator stressa i immunokorrektsii preparatom ronkoleykin. Izvestiya Orenburgskogo gosudarstvennogo agrarnogo universiteta. 2013; 6(44): 222–4. [Russian]
  2. Vishnevskaya TYa, Abramova LL. Morfofunktsionalnyie tipyi selezenki raznyih vidov mlekopitayuschih. Izvestiya Orenburgskogo gosudarstvennogo agrarnogo universiteta. 2015; 2(56): 247–9. [Russian]
  3. Inakov A. K. Anatomiya i topografiya selezenki cheloveka v postnatalnom ontogeneze. Ontogenez i vozrastnaya anatomiya krovenosnoy i limfaticheskoy sistem cheloveka. M.; 1983. p. 32–6. [Russian]
  4. Kolisnyk IL, Zharova NV, Shevtsov OO, Avilova OV. Dzherela formuvannia ta zovnishnia budova selezinkovoho spletinnia. Aktualni pytannia medychnoi nauky ta praktyky. 2015; 82 (2): 149–57. [Ukrainian]
  5. Vozgoment OV, Pyikov MI, Zaytseva NV, Akatova AA, Ivashova YU, Chigvintsev VM. Novyiy ultrazvukovoy kriteriy otsenki razmerov selezenki u detey i opredelenie diapazona normativnyih znacheniy organa. Pediatricheskaya farmakologiya. 2014; 3: 89–92. [Russian]
  6. Ryadinskaya NN, Sayvanova SA, Samojapova SD, Tarasevich VN, Tarasevich EN, Chistova ES. Osobennosti ekstraorgannyih arteriy selezenki, pecheni, jeludka i podjeludochnoy jelezyi u baykalskoy nerpyi. Vestnik Kras GAU. 2016; 3: 121–9. [Russian]
  7. Petrov RV, Chereshnev VA, Haitov RV. Fiziologiya immunnoy sistemyi: kletochnyie i molekulyarno-biologicheskie mehanizmyi. Vestnik RFFI (Rossiyskiy fond fundamentalnyih issledovaniy). 2017; 1: 96–119. https://doi.org/10.22204/2410-4639-2017-094-02S-96-119. [Russian]
  8. SHay AM, Mahniboroda AV, Kiryakulov GS, Jdanov EV, Kryukov EL. Sravnitelnaya harakteristika arterialnogo rusla selezenki mujchin i jenschin, 1-go i 2-go perioda zrelogo vzrasta. Tavricheskiy mediko-biologicheskiy vestnik. 2013; 16(1): 212–4. [Russian]
  9. Banzato T, Bellini L, Contiero B, Selleri P, Zotti A. Abdominal ultrasound features and reference values in 21 healthy rabbits. Veterinary Record. 2014; 176(4): 101-11. https://doi.org/10.1136/vr.102657.
  10. Castilhos AM, Francisco CL, Branco RH, Bonilha SFM, Mercadante MEZ, Meirelles PRL, et al. In vivo ultrasound and biometric measurements predict the empty body chemical composition in Nellore cattle. Journal of Animal Science. 2018; 96(5): 1678-87. https://www.ncbi.nlm.nih.gov/pubmed/29518224. https://www.ncbi.nlm.nih.gov/pmc/articles/6140984. https://doi.org/10.1093/jas/sky081