Bibliography 146
CHAPTER I
INTRODUCTION
The manner of movement common to amebas has attracted the attention of
biologists ever since the discovery of ameba by Rösel v. Rosenhof in
1755. In his description of “Der kleine Proteus” he records the
observation that the various form changes which the ameba undergoes are
associated with the streaming of the endoplasm. This observation marks
the very beginning of the investigation of ameboid movement. And this
investigation also possesses the distinction of being the most important
single observation that has thus far been recorded in this special
field, for it is now generally understood that by ameboid movement is
meant movement due to the streaming of protoplasm.
The phenomenon of ameboid movement as discovered by v. Rosenhof, was an
isolated phenomenon. It attracted attention mainly because of its
uniqueness, for it was the only instance of the kind that was then
known. It could not be compared with any other form of movement; and the
animal itself, considered apart from the streaming of the protoplasm,
was unique also, because of its remarkable form changes which it alone,
of all the animals then known, exhibited.
But when Corti in 1774 discovered streaming protoplasm in the cells of
chara and various other plants, the ameba could no longer be said to
occupy this position of isolation. Although streaming is not accompanied
by locomotion in chara, it had been observed that movement in the ameba
was always accompanied by streaming, so it came to be generally accepted
that the really fundamental feature of ameboid movement was the
streaming of the protoplasm.
The ameba came to be of especial interest to the physiologists later on
when the finer structures of the larger animals were studied more
carefully. Thus when the normal movements of the white blood corpuscles
were discovered, no one failed to be struck with their ameboid
characteristics in almost every detail of movement, feeding habits and
gross structure. The great importance of the functions that have been
ascribed to leukocytes, and their very widespread occurrence in the
higher animals has served to give rise to the belief that ameboid
characteristics were not unique among animals, but common to many of
them. The discovery of ameboid movements among plant zoospores, among
animal ova, in the endoderm cells lining the digestive tract of a great
variety of animals, in the nuclei of some animal cells, in the wandering
cells of sponges and other animals--all these instances of ameboid
movement occurring in such widely different tissues inevitably placed it
among the most important phenomena known to occur in organisms.
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