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Qu'est-ce (qui) est labeled$42858$ - définition

WATER MADE OF UNCOMMON HYDROGEN AND OXYGEN ISOTOPES
Doubly-labeled water test; Doubly labeled water test; Doubly-labeled water

Doubly labeled water         
Doubly labeled water is water in which both the hydrogen and the oxygen have been partly or completely replaced (i.e.
Transition system         
ABSTRACT MACHINE USED IN THE STUDY OF COMPUTATION
State transition system; Labelled transition system; Labeled Transition System; Labeled transition system
In theoretical computer science, a transition system is a concept used in the study of computation. It is used to describe the potential behavior of discrete systems.
Soft key         
BUTTON FLEXIBLY PROGRAMMABLE TO INVOKE ANY OF A NUMBER OF FUNCTIONS
Softkey; Screen-labeled function keys; Screen Labeled Function Keys; Soft button; Hard key; Soft keys; Screen labeled function keys
A soft key is a button flexibly programmable to invoke any of a number of functions rather than being associated with a single fixed function or a fixed set of functions. A softkey often takes the form of a screen-labeled function key located alongside a display device, where the button invokes a function described by the text at that moment shown adjacent to the button on the display.

Wikipédia

Doubly labeled water

Doubly labeled water is water in which both the hydrogen and the oxygen have been partly or completely replaced (i.e. labeled) with an uncommon isotope of these elements for tracing purposes.

In practice, for both practical and safety reasons, almost all recent applications of the "doubly labeled water" method use water labeled with heavy but non-radioactive forms of each element (deuterium and oxygen-18). In theory, radioactive heavy isotopes of the elements could be used for such labeling; this was the case in many early applications of the method.

In particular, doubly labeled water (DLW) can be used for a method to measure the average daily metabolic rate of an organism over a period of time (often also called the Field metabolic rate, or FMR, in non-human animals). This is done by administering a dose of DLW, then measuring the elimination rates of deuterium and oxygen-18 in the subject over time (through regular sampling of heavy isotope concentrations in body water, by sampling saliva, urine, or blood). At least two samples are required: an initial sample (after the isotopes have reached equilibrium in the body), and a second sample some time later. The time between these samples depends on the size of the animal. In small animals, the period may be as short as 24 hours; in larger animals (such as adult humans), the period may be as long as 14 days.

The method was invented in the 1950s by Nathan Lifson and colleagues at the University of Minnesota. However, its use was restricted to small animals until the 1980s because of the high cost of the oxygen-18 isotope. Advances in mass spectrometry during the 1970s and early 1980s reduced the amount of isotope required, which made it feasible to apply the method to larger animals, including humans. The first application to humans was in 1982, by Dale Schoeller, over 25 years after the method was initially discovered. A complete summary of the technique is provided in a book by British biologist John Speakman.