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LineBIABody Composition Measurement System

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This module provides for obtaining the following: unbiased findings on the human body quantitative composition, linear control and timely correction of nutrition programs in clinical practice and sports medicine, an unbiased assessment of physical conditioning and nutrition, analysis of water-salt metabolism, analysis of the state of water-salt metabolism during the period of adaptive changes in the human body, under changing weather conditions. Body composition measurement by means of the LineBIA method is based on assessing the distribution of water volumes in the human body and on tissue ability to conduct electricity. Cannot be used without an interface block.

Most popular related searches
  • determine the quantitative content of fluid in the body, body mass index, standard metabolism
  • determine the active cell mass, bone mass, fat mass
  • obtain unbiased data on the human body quantitative composition
  • get linear control and timely correction of nutrition programs in clinical practice and sports medicine
  • an unbiased assessment of physical conditioning and nutrition
  • analyze the water-salt metabolism
  • analyze the state of water-salt metabolism during the period of adaptive changes in the human body, under changing weather conditions (mountain climate, hot climate, or dry climate)
  • and much more...

Module package

  1. Hand electrodes on a wooden mount
  2. Foot electrodes on a wooden mount
  3. Modular unit on the motherboard
  4. The LineBIA section in the LifeStream® program

The hardware/firmware analysis of the human body composition is based on the predominant conductivity of the muscle mass of the human body in comparison with fat, which is related to the different content of liquid (water and dissolved elements) in these tissue structures.

Tissue resistance to current is directly proportional to the content of fluid in them: highly hydrated tissues (muscle tissue) are active and powerful conductors, while poorly (weakly) hydrated adipose tissue appears as an insulator in this particular case. As a result the impedance is inversely proportional to the fluid content in the tissues of the human body. High frequency currents pass through the extracellular and intracellular space (liquids, including dissolved solids), making it possible to measure fat-free mass (lean body mass), while lower frequency currents are absorbed in the extracellular space.

This is an unbiased method of analyzing the composition of the human body in a completely safe way and with a high objectivity rate.