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Studies of otoconial development in a "giant-crystal" strain of chicks using scanning electron microscopy, polarized light microscopy, and X-ray crystallography.

Otolith formation was studied in a mutant strain of low-fertility Delaware chicks which exhibit an otolithic defect. In all chicks of this strain, otoliths were present as a fused crystal mass which contained abnormally large (giant) otoconia. Studies of the formation of such otoliths during embryonic development revealed that from the very earliest stages the otoconia were much larger than normal, and in the saccular and utricular otoliths formed a fused mass. These results are interpreted as supporting a hypothesis of the de novo formation of giant otoconia in this giant-crystal strain as opposed to the recrystallization hypothesis proposed for other, dissimilar mutant mammals and birds which also produce giant otoconia.

Animals↗

[Mucous membrane changes in the anterior ethmoid bone in chronic sinusitis and mycoses of the paranasal sinuses. An endoscopy, light and electron microscopy study. 2. Electron microscopy findings].

In the second part of this paper the findings of electron microscopical studies on ultrastructural changes of the cilia of the ethmoidal mucous membrane in patients with mycotic chronic sinusitis are presented. Many pathological variations of the normal 9 + 2 pattern can be demonstrated, along with compound cilia and central axis deviation beyond 25 degrees. This together with the endoscopical and lightmicroscopical findings results in conditions which are different from those in acute sinusitis. It may as well explain, why hardly a conservative therapy--aiming mostly for vasoconstriction and decrease of mucosal edema--is successful in chronic sinusitis. Endoscopical surgery of the diseased anterior ethmoid in most of the cases brings along cure of the dependent frontal and maxillary sinuses as well.

Chronic Disease↗

[The neurocytes of the caudal part of the tuberomamillary nucleus in Ovis aries L. (light microscopy and electron microscopy studies)].

The neurons of the pars caudalis nuclei tuberomammillaris (pc-NTM) were studed light-microscopically and electron-microscopically in sheep and rams of Merino breed. In our study we observed: In the regarded neural nucleus, there is the majority of the great neurons (up to 60 microns in diameter) rich in the NISSL's bodies. When stained with the cresyl violet, the NISSL's substance is apparently stored mainly in peripheral area of the cell body and in the distant parts of numerous protoplasmic processes, what evokes an impression of the "jagged" surface of these cells. After staining with paraldehyde fuchsin, we found purple coloured lumps of irregular shape stored outside the cell bodies, in the neuropil. The less extended cells, usually with lower content of NISSL bodies, are in pc-NTM less frequent. In the electron-microscopic study we identified 3 types of neurons: Cells rich in rough endoplasmic reticulum; "light" cells, "dark" cells. The cells of the 1st type were the most frequent ones. Cisterns of rough endoplasmic reticulum in the 1st type of cells are often dilated. The protoplasmic processes of these cells are frequently stepped over by flat tubuli of endoplasmic reticulum. The 2nd type of cells is characterized by the light cytoplasmic matrix, low quantity of endoplasmic reticulum and frequent occurrence of lipofuscin bodies. The 3rd type of cells are characterized by the high density of cytoplasmic matrix, well developed GOLGI complex, and very broad cisterns of endoplasmic reticulum, forming a labyrinth, and it is bound to a broad perinuclear space.

Animals↗