Abstract
The ductuli efferentes and rete testis of the guinea pig were isolated by micro dissection, fixed in cold buffered osmium tetroxide, and sectioned for examination with the light and electron microscopes. Proximal and distal segments of the ductuli efferentes were identified and their respective cytological organizations characterized. The cytological components of the rete testis are briefly described and figured. Non-ciliated and ciliated cells are found in both segments of the ductuli efferentes. The non-ciliated cells have a microvillous border, mitochondria, a Golgi complex, an ubiquitous endoplasmic reticulum, and numerous cytoplasmic vacuoles. The ciliated cells contain more mitochondria, an endoplasmic reticulum with a relatively sparse distribution, and few, if any, cytoplasmic vacuoles. A regional difference exists in proximal and distal segments based on the distribution, size, number, and electron opacity of the cytoplasmic vacuoles. Attention was paid to the disposition of the endoplasmic reticulum and its relation to the system of cytoplasmic vacuoles. These findings are interpreted as suggesting that the continuity of the vacuolar system with elements of the endoplasmic reticulum represents a pathway for transfer of large quantities of fluid, an activity which has long been ascribed to the epithelium of the ductuli efferentes. Periductular capillaries possess pore-like apertures in their endothelia similar to those in other tissues known to engage in fluid transfer.
Keywords
MICROSCOPY
ELECTRON
TESTES/anatomy and histology
MeSH Terms
Animals
Body Fluids
Buffers
Cytoplasm
Dissection
Electrons
Epithelium
Golgi Apparatus
Guinea Pigs
Histological Techniques
Humans
Inferior Colliculi
Light
Male
Microscopy
Microscopy, Electron
Mitochondria
Osmium Tetroxide
Rete Testis
Testis/anatomy & histology
Vacuoles
Chemicals
Buffers
Osmium Tetroxide
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
LADMAN A J
YOUNG W C
References (13)
13 references, click to expand
-
Some functions of the caput epididymis.
Ann N Y Acad Sci. 1952 Nov 20;55(4):585-93
PMID: 13139146
-
Electron microscopy of the vascular bed of the kidney cortex.
Anat Rec. 1955 Apr;121(4):701-21
PMID: 14388260
-
Electron microscopy of the tubular cells of the kidney cortex.
Anat Rec. 1955 Apr;121(4):723-43
PMID: 14388261
-
The nuclear envelope; its structure and relation to cytoplasmic membranes.
J Biophys Biochem Cytol. 1955 May 25;1(3):257-70
PMID: 13242591
-
Fine structures of the kidney seen by electron microscopy.
J Histochem Cytochem. 1955 Jul;3(4):295-308
PMID: 13242788
-
Intracisternal granules in the exocrine cells of the pancreas.
J Biophys Biochem Cytol. 1956 Jul 25;2(4):417-22
PMID: 13357506
-
Liver microsomes; an integrated morphological and biochemical study.
J Biophys Biochem Cytol. 1956 Mar 25;2(2):171-200
PMID: 13319380
-
The base of the proximal convoluted tubule cells of rat kidney.
J Biophys Biochem Cytol. 1957 Mar 25;3(2):249-54
PMID: 13438908
-
Studies on the endoplasmic reticulum. III. Its form and distribution in striated muscle cells.
J Biophys Biochem Cytol. 1957 Mar 25;3(2):269-300
PMID: 13438910
-
Cellular differentiation in the kidneys of newborn mice studies with the electron microscope.
J Biophys Biochem Cytol. 1957 May 25;3(3):349-62
PMID: 13438920
-
An electron microscopic correlation of structure with function in the isolated perfused cow adrenal, preliminary observations.
J Biophys Biochem Cytol. 1957 Jul 25;3(4):615-8
PMID: 13449105
-
The fine structure of the renal glomerulus of the mouse.
J Biophys Biochem Cytol. 1955 Nov 25;1(6):551-66
PMID: 13278366
-
The electron microscopy of the choroid plexus.
J Biophys Biochem Cytol. 1956 Jul 25;2(4):467-74
PMID: 13357511