These lateral sense-organs of the annelids have been specially described by
Eisig in the Capitellidæ, and, according to Lang, "there are many reasons
for considering these lateral organs to be homologous with the dorsal cirri
of the ventral parapodia of other Polychæta, and in the family of the
Glyceridæ we can follow, almost step by step, the transformation of the
cirri into lateral organs." Eisig describes them in the thoracic
prebranchial region as slightly different from those in the abdominal
branchial region; in the latter region, the ventral parapodia are
gill-bearing, so that these lateral organs are in the branchial region
closely connected with the branchiæ, just as is also the case in the
vertebrates. It is but a small step from the gill-bearing ventral parapodia
of the annelid to the gill-bearing appendages of the phyllopod-like
protostracan; so that if we assume that this is the correct line along
which to search for the origin of the vertebrate auditory apparatus, then,
on my theory of the origin of the vertebrates from a group resembling the
Protostraca, it follows that special sense-organs must have existed either
on or in close connection with the branchial and prebranchial appendages of
the protostracan ancestor of the vertebrates, which would form an
intermediate link between the lateral organs of the annelids and the
lateral and auditory organs of the vertebrates.
Further, these special sense-organs could not have been mere tactile hairs,
but must have possessed some special function, and their structure must
have been compatible with that function. Can we obtain any clear conception
of the original function of this whole system of sense-organs?
A large amount of experimental work has been done to determine the function
of the lateral line organs in fishes, and they have been thought at one
time or another to be supplementary organs for equilibration, organs for
estimating pressure, etc. The latest experimental work done by Parker
points directly to their being organs for estimating slow vibrations in
water in contradistinction to the quicker vibrations constituting sound. He
concludes that surface wave-movements, whether produced by air moving on
the water or {358}solid bodies falling into the water, are accompanied by
disturbances which are stimuli for the lateral line organs.
One of these segmental organs has become especially important and exists
throughout the whole vertebrate group, whether the animal lives on land or
in water--this is the auditory organ. Throughout, the auditory organ has a
double function--the function of hearing and the function of equilibration.
If, then, this is, as is generally supposed, a specialized member of the
group, it follows that the less specialized members must possess the
commencement of both these functions, just as the experimental evidence
suggests.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account