The Cambridge natural history, Vol. 07 (of 10)Boulenger, George Albert
Science
The Cambridge natural history, Vol. 07 (of 10)
Boulenger, George Albert
Animals
In _Protopterus_[295] the number of branchial arches is increased to six,
but, in consequence of the closure of the hyobranchial cleft, there are but
five open clefts. The first, second, and third arches are wholly devoid of
branchial filaments: the fourth and fifth support each a biserial gill,
while the sixth arch retains only an anterior hemibranch, which, however,
as the source of its blood supply seems to indicate, may consist of
"emigrant" gill-filaments from the posterior hemibranch of the fifth
arch.[296] Interbranchial septa are practically non-existent, the
flattened, leaf-like gill-lamellae being free except at their attached
bases, and thus repeating a characteristic Teleostean feature. A "hyoidean"
hemibranch or pseudobranch, supplied from the ventral aorta, is present,
but as the hyobranchial cleft is closed it projects into the branchial
cavity immediately in front of the cleft between the first and second
branchial arches. In _Lepidosiren_[297] the branchial arches are reduced to
five and the clefts to four, the hyobranchial and fifth clefts being
closed. There is a "hyoidean" hemibranch resembling that of _Protopterus_.
The facts furnished by the study of the numerical and structural variations
in the gill-clefts, gills, and gill-arches of different groups of Fishes
prove that atrophy of these structures takes place at opposite ends of the
series. We have examples of this anteriorly in the suppression of the
hyo-mandibular cleft and its hemibranch, and of the hyoidean hemibranch, as
the result of {287}the conversion of the mandibular and hyoid arches into
jaws, or into skeletal supports for the jaws; and posteriorly, in the
reduction which is evident when the generality of Fishes are compared with
such primitive Elasmobranchs as _Chlamydoselachus_ and _Notidanus_.
In most Fishes the concave pharyngeal margins of the branchial arches are
fringed with a double series of either cartilaginous or bony tubercles or
filaments, the "gill-rakers" (Figs. 161 and 164). The anterior row of
gill-rakers on each arch usually interdigitate with those of the posterior
row on the preceding arch, and in this way the two rows form a sieve-like
mechanism to prevent any solid particles, which may enter the pharynx with
the respiratory current of water, from passing into the gill clefts and
clogging or otherwise injuring the branchial filaments.
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