The purpose of this publication – to familiarize the readers with the newest achievements in the field of vision machine technologies with regard to the occlusal plethysmography. The principle of plethysmograph work is similar to a principle of mechanical occlusal plethysmograph work, with that only a difference that working measuring environment (gas or liquid) is replaced with laser labels, and fixation of change of volume is made by machine vision with the subsequent computer processing. Application of laser technologies of machine vision in future considerably simplified process of diagnostics, will allow to carry out diagnostics repeatedly and under various conditions of, for example, case of external action on the examined finiteness of the of heat, cold, physical exercise, and so, is representative of more and accurate picture of the state of blood vessels in the dynamics.
Diagnostics of a functional condition of an organism of athletes is based on methods of cardiological monitoring. Respiratory methods of diagnostics in sports medicine can become important addition in the prevention of development of cardiovascular diseases and need additional researches. In an assessment of a functional condition of athletes authors of article allocate a particular interest for remote methods of on-line diagnostics. In article possibilities of application of remote respiratory monitoring in functional diagnostics of athletes and the people which work is connected with raised loads of an organism are considered. Respiratory monitoring is applied to carry out microminiature accelerometers. The method of mobile cellular systems is offered for on-line monitoring.
Increase of cardiovascular tension is a common thing for professional athletic training. Cardiovascular pathologies can be prevented by permanent physiological monitoring using, among others, the methods of cardiologic monitoring so far available in stationary diagnostic centers. On-line remote diagnostics during training is potent to enhance effectiveness and efficiency of sporting people's health management. In addition, RD will also enable extensive investigations of the bodily responses of individually determined training loads. The paper gives an overview of the current RM technologies.