For a herbaceous species, the inverse of the fresh
leaf surface density, the Hughes constant, is nearly conserved. We
apply the Hughes constant to develop an absolute method of leafarea
measurement that requires no regression fits, prior calibrations
or oven-drying. The Hughes constant was determined in situ
using a known geometry and weights of a sub-set obtained from the
fresh leaves whose areas are desired. Subsequently, the leaf-areas
(at any desired stratification level), were derived by utilizing the
Hughes constant and the masses of the fresh leaves. The proof of
concept was established for leaf-discs of the plants Mandevilla
splendens and Spathiphyllum wallisii. The conservativeness of the
Hughes constant over individual leaf-zones and different leaftypes
from the leaves of each species was quantitatively validated.
Using the globally averaged Hughes constant for each species, the
leaf-area of these and additional co-species plants, were obtained.
The leaf-area-measurement-by-mass was cross-checked with
standard digital image analysis. There were no statistically significant
differences between the leaf-area-measurement-by-mass and
the digital image analysis measured leaf-areas and the linear
correlation between the two methods was very good. Leaf-areameasurement-
by-mass was found to be rapid and simple with
accuracies comparable to the digital image analysis method. The
greatly reduced cost of leaf-area-measurement-by-mass could be
beneficial for small agri-businesses in developing countries.
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