The Vertebrate SkeletonReynolds, Sidney H. (Sidney Hugh)
Science
The Vertebrate Skeleton
Reynolds, Sidney H. (Sidney Hugh)
Skeleton
(_b_) The enamel of the pharyngeal teeth of the Salmon and many other
Teleosteans is hypoblastic in origin. The epiblast of the stomodaeum,
in which the other teeth are developed, passes into the hypoblast of
the mesenteron in which these pharyngeal teeth are formed.
II. MESOBLASTIC.
The most primitive type of a mesoblastic endoskeleton consists of a
membranous sheath surrounding the notochord, as in _Myxine_ and its
allies. The first stage of complication is by the development of
cartilage in the notochordal sheath, as in _Petromyzon_. Often the
cartilage becomes calcified in places, as in the vertebral centra of
_Scyllium_ and other Elasmobranchs. Lastly, the formation of bone
takes place; it generally constitutes the most important of the
endoskeletal structures.
=Bone= may be formed in two ways:--
(1) by the direct ossification of pre-existing cartilage, when it is
known as =cartilage bone= or =endochondral bone=;
(2) by independent ossification in connective tissue; it is then known
as =membrane= or =dermal= or =periosteal bone=.
With the exception of the _clavicle_[4] all the bones of the trunk and
limbs, together with a large proportion of those of the skull, are
preformed in the embryo in cartilage, and are grouped as cartilage
bones; while the clavicle and most of the roofing and jaw-bones of the
skull are not preformed in cartilage, being developed simply in
connection with a membrane. Hence it is customary to draw a very
strong line of distinction between these two kinds of bone; in reality
however this distinction is often exaggerated, and the two kinds pass
into one another, and as will be shown immediately, the permanent
osseous tissue of many of those which are generally regarded as
typical cartilage bones, is really to a great extent of periosteal
origin. The palatine bone, for instance, of the higher vertebrates in
general is preceded by a cartilaginous bar, but is itself almost
entirely a membrane bone.
Before describing the development of bone it will be well to briefly
describe the structure of adult bone and cartilage.
The commonest kind of =cartilage=, and that which preforms so many of
the bones of the embryo, is =hyaline= cartilage. It consists of oval
nucleated cells occupying cavities (=lacunae=) in a clear
intercellular semitransparent matrix, which is probably secreted by
the cells. Sometimes one cell is seen in each lacuna, sometimes
shortly after cell-division a lacuna may contain two or more cells.
The free surface of the cartilage is invested by a fibrous membrane,
the =perichondrium=.
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