FIELD: medicine, medicinal equipment.
SUBSTANCE: the present innovation deals with rehabilitation and correction of psychophysiological state at applying multi-functional biological feedback (BF) in patients with cardio-vascular diseases, those of nervous system, chronic diseases of respiratory organs and urogenital system. The suggested rehabilitation psychophysiological complex for training at application of biological feedback (BF-training) contains successively connected the block of sensors and electrodes, a multi-channel bioamplifier, a multi-channel analog-digital transformer, a controller (microelectronic computer), an electronic computer for processing and analyzing electrophysiological signals and managing the seances of BF-training, a block for presenting stimulation impacts, a block for presenting BF-signals and an audio-tactile therapeutic device to affect with sound fluctuations upon a patient's body and contains a microelectronic computer, a block for presenting melodies and sounds from the archives, a multi-channel amplifier of sound frequency and a sensor arm-chair. The latter contains a seat, a back and emitters of sound frequency designed as electrodynamic transformers of electric fluctuations into sound ones with possibility to be applied in the arm-chair's back at the level of patient's occiput, median cervical (C3, C4), thoracic (Th3, Th4), lumbar (Th1, Th2) vertebrae and sacral top and in areas of sciatic tuber, short caput of biceps muscle of thigh and at the level of popliteal muscle in the arm-chair's seat. The innovation provides widened functional possibilities due to information impact with sound fluctuations upon human body at training at application of multi-functional biological feedback, increased efficiency of therapy in patients with affected physiological functions of cardio-vascular system, that of respiration, motor system, central and peripheral nervous systems due to additional sensor control for physiological processes in mechanical tonicity.
EFFECT: higher efficiency.
7 cl, 6 dwg
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Authors
Dates
2006-12-20—Published
2004-12-08—Filed