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The normal white cell count is usually between 4 × 10 9 /L and 1.1 × 10 10 /L. In the US, this is usually expressed as 4,000 to 11,000 white blood cells per microliter of blood. [7] White blood cells make up approximately 1% of the total blood volume in a healthy adult, [8] making them substantially less numerous than the red blood cells at ...
Ethnic distribution of ABO (without Rh) blood types [75] (This table has more entries than the table above but does not distinguish between Rh types.) People group O (%) A (%) B (%) AB (%) Australian Aboriginals: 61: 39 0 0 Abyssinians: 43 27 25 5 Ainu 17 32 32 18 Albanians: 38 43 13 6 Great Andamanese: 9 60: 20 12 Arabs: 34 31 29 6 Armenians ...
The reference range provided by the particular lab that performed the testing should always be used to interpret the results. [3] Also, some healthy people may have values outside of the "normal" range provided by any lab. [citation needed] Modern analyzers use ion-selective electrodes which give a normal anion gap as <11 mEq/L. Therefore ...
In statistics, dispersion (also called variability, scatter, or spread) is the extent to which a distribution is stretched or squeezed. [1] Common examples of measures of statistical dispersion are the variance, standard deviation, and interquartile range. For instance, when the variance of data in a set is large, the data is widely scattered.
Many cross- sectional studies have shown that, even within the normal BMI range, many adults have WHtR which is above 0.5. [ 34 ] [ 35 ] [ 26 ] Many children show the same phenomenon. [ 36 ] [ 37 ] Risk factors for metabolic diseases [ 35 ] [ 38 ] and mortality are raised in these subjects.
Logistic regression is used in various fields, including machine learning, most medical fields, and social sciences. For example, the Trauma and Injury Severity Score (), which is widely used to predict mortality in injured patients, was originally developed by Boyd et al. using logistic regression. [6]
The distributions of a wide variety of physical, biological, and human-made phenomena approximately follow a power law over a wide range of magnitudes: these include the sizes of craters on the moon and of solar flares, [2] cloud sizes, [3] the foraging pattern of various species, [4] the sizes of activity patterns of neuronal populations, [5] the frequencies of words in most languages ...
The contribution of the muscle to the specific heat of the body is approximately 47%, and the contribution of the fat and skin is approximately 24%. The specific heat of tissues range from ~0.7 kJ · kg−1 · °C−1 for tooth (enamel) to 4.2 kJ · kg−1 · °C−1 for eye (sclera). [13]