The patient should be placed in a comfortable position with “chin up,”
as though looking at a distant object. The instrument should then be
raised or lowered by the adjustable ratchet wheel of the bracket. The
wall bracket gives best results when suspended from the wall, back
of the patient, as shown on page 135. This bracket should be placed
about ten inches above the head of the average patient. When the
Ski-optometer is placed in position for use, its lower edge will barely
touch the patient’s cheeks. It is sometimes advisable to request the
patient to lightly press toward the face the horizontal bar supporting
the instrument. Particularly good results are secured where a chair
with a head-rest is employed in conjunction with the Ski-optometer.
(See illustration of Model Refraction Room, Page 112).
CLEANING THE LENSES
The time-waste of perpetually cleaning lenses is overcome where the
Ski-optometer is employed. For the convenience of the operator and
protection of Ski-optometer lenses, the latter are concealed in a
dust-proof cell, overcoming all dust and finger-print annoyances. When
not in use, the instrument should be covered with the standardized hood
forming part of the equipment.
The instrument should not be taken apart under any circumstances. To
clean its lenses, not a single screw need be removed, as the lenses of
each disk may be cleaned individually through the opening of the other
disks. These openings are conveniently indicated by the white zeros
(Fig. 2). The Ski-optometer contains but eleven spherical and eight
cylindrical lenses on each side, so that the actual work of cleaning
should not require over ten minutes at the most, cleaning the lenses
every other week proving quite sufficient.
ACCURACY ASSURED IN EVERY TEST
Loss of refraction is completely eliminated through the use of the
Ski-optometer. The most casual examination of the trial-frame or
any other instrument shows that the construction necessitates the
placing of the spherical lens next to the eye with the cylinder lens
outermost—a serious fault wholly overcome in the Ski-optometer.
Not only do the cylindrical lenses of the Ski-optometer set directly
next to the patient’s eye, thus overcoming any possible loss of
refraction, but the strong spherical lenses of the supplementary disk
are set directly next to the cylinder. There is apparently but a hair’s
distance between these lenses; the two disks containing the spherical
lenses of the Ski-optometer likewise setting close together.
In a word, the Ski-optometer’s cylinder lenses set directly next to the
patient’s eye, followed by the stronger sphericals, so that the weakest
spherical or +.25 (the lens of least importance) sets farthest away.
This is 3½ m/m closer than any trial-frame manufactured, however, and
at least 10 m/m closer than any other instrument—another reason for
implicitly relying on the Ski-optometer for uniformly accurate results.
BUILT TO LAST A LIFETIME
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.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account