Great importance has always been attached to the investigation of the
SPECIFIC GRAVITY of the blood; since the density of the blood affords a
measure of the number of corpuscles, and of their haemoglobin equivalent.
It is easy to collect observations, as in the last few years two methods
have come into use which require only a small quantity of material, and
do not appear to be too complicated for practical clinical purposes. One
of these has been worked out by R. Schmaltz, in which small amounts of
blood are exactly weighed in capillary glass tubes (the capillary
pyknometric method). The other is A. Hammerschlag's, in which, by a
variation of a principle which was first invented by Fano, that mixture
of chloroform and benzol is ascertained in which the blood to be
examined floats, _i.e._ which possesses exactly the specific gravity of
the blood[2].
According to the researches of these authors and numerous others who
have used their own methods, the specific gravity of the total blood is
physiologically 1058-1062, or on the average 1059 (1056 in women). The
specific gravity of the serum amounts to 1029-1032--on the average 1030.
From which it at once follows that the red corpuscles must be the chief
cause of the great weight of the blood. If their number diminishes, or
their number remaining constant, they lose in haemoglobin, or in volume,
the specific gravity would be correspondingly lowered. We should
therefore expect a low specific gravity in all anaemic conditions.
Similarly with an increased number of corpuscles, and a high haemoglobin
equivalent, an increase in the density of the total blood makes its
appearance.
Hammerschlag has found in a large number of experiments that the
relation between the specific gravity and the amount of haemoglobin is
much closer than between the specific gravity and the number of
corpuscles. The former in fact is so constant that it may be represented
by a table.
Sp. gravity Quantity of Haemoglobin
(Fleischl's method)
1033-1035 25-30%
1035-1038 30-35%
1038-1040 35-40%
1040-1045 40-45%
1045-1048 45-55%
1048-1050 55-65%
1050-1053 65-70%
1053-1055 70-75%
1055-1057 75-85%
1057-1060 85-95%
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