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Biomedical subjects

M Doskocil

Publications and source records attributed to M Doskocil.

At least 37 records · Page 2Linked to original sources

[The development of the clavicle in man].

The development of the human clavicle was studied in 50 to 60 d old human embryos. Our findings are summarized as follows: The whole clavicle develops from a cartilaginous anlage. In the middle part of the clavicle, an osseus cuff develops very early by the ossification in the perichondrium. In the lumen of this cuff, a cartilaginous cork persists which is resorbed and replaced by bone and marrow later than in other bones. It is possible that cartilaginous nests may persist in the middle part of the clavicle. In both extremities of the clavicle, the normal enchondral ossification exists as it is described in other anlages. It is difficult to explicate the syndrome of the cleido-facial and cleido-cranial dysostoses only as disturbances of the endesmal ossification.

Cartilage↗

[Structure of the hen's egg shell and its changes during incubation. A scanning electron microscope study].

The structure of the hen's egg shell was studied during the incubation. The local differences in the structure of the shell were estimated during the incubation in dependence to the development of the allantochorial vascular system. On the external surface of the shell there is a thin layer, homogenous in the SEM. It remains changeless during the whole period of incubation. The main part of shell is formed by long prisms with their long axes oriented perpendicularly to the external surface of the shell. These prisms are partially twisted round each other, similarly as in the case of the teeth enamel. The inner layer of the shell is formed by a system of fibers forming the three-dimensional network, similar to an air filter. In the middle of incubation, when the embryo's skeleton is still predominantly cartilaginous, is the structure of the shell identical with that one at the beginning of incubation. At the end of incubation, when the embryo's skeleton is already predominantly ossificated, the inner layer of the shell disappears without any trace. By resorption of the shell are the peaks of the prisms of the middle layer of the shell destroyed as well. The above described changes are the best visible in the equator region of the shell. Less developed are they in the region of the sharp pole of the egg. They are not detectable in the region of the blunt pole of the egg. In this region the egg's shell has the same structure during the whole period of incubation. The changes of structure of the shell--the resorption of the inner layer together with partial destruction of the prisms of the middle layer - exactly correspond with extension of the allantochorial vascular system.

Animals↗

[Study of the development of the human knee joint].

By studying a complete series of sections of the human knee joint during the period in which the joint gap develops we have found out that the knee joint contains a high broad septum (the mediastinum genus), in which there are many broad vessels. These vessels feed the cruciate ligament anlages, the meniscus anlages and the cartilagenous models of the adjacent bone anlages. In the human embryo the mediastinum genus splits the knee joint into a lateral and a medial half. Communication between these 2 halves is between the small contact surfaces of the patella and femur anlages.

Femur↗

Density of cells and mitoses in the upper limb primordium of the chick embryo during days 3 and 4 of incubation.

3 groups of Embryos (Hamburger-Hamilton's stages 17--18 HH 21, HH 23) were used for assessing the density of cells and density of mitoses per tissue volume unit in the upper limb buds of the chick embryos. The extremities were studies as a whole, as were their individual parts which had been precisely defined before. We disclosed that 1. The density of cells in the whole extremity descreases during 3 to 4 of incubation. 2. Various parts of the limb bud differed as regards the density of cells. In group II (HH 21), the cell density was highest in the ventral axial part, being lowest in the axial one. In group III (HH 23) the differences disappeared, the most dense tissue being, paradoxically, in the axial part. 3. The density of mitoses decreased during the period studied, the differences between various components of the limb primordium being nonsignificant.

Animals↗