The use of photoplethysmography allows an accurate assessment of the level of blood supply in inflammatory symptoms in patients with diabetes after tooth extraction, this method has the positive properties of non-invasiveness, high sensitivity and probabilistic ease of examination. Photon radiation has been shown to increase blood vessel wall elasticity, erythrocyte elasticity, blood oxygen transport function, cell membrane activity, accelerate tissue regeneration, reduce lipid oxidation, and normalize blood rheology. The photon radiation of the "MultiSpectr-001" multispectral physiotherapy device has been shown to lead to anti-inflammatory, desensitizing, analgesic, antispasmodic, anti-edema effects, which was confirmed in this study in the treatment of diabetic patients.
KEYWORDS: Matrix multiplication, Field programmable gate arrays, Digital signal processing, Optimization (mathematics), Logic, Digital electronics, Data processing, Clocks, Very large scale integration, Transistors
Modern VLSI (Very-Large-Scale Integration) integrated circuits contain several billion transistors. Systems of this complexity are very difficult to design. Manually designing each transistor at the level of logic gates is beyond the skill of the expert team. Manual verification of the chip design is also beyond the capabilities of even engineering teams. With the increasing complexity of electronic systems, there has been a need to automate both the design and verification stages at more abstract levels. This paper describes concept of multi-level compiler which convert algorithm described in Python language to FPGA bitstream. Compiler transforms automatically high-level description (Python) to low level (bitstream) on different levels based on configuration files. Testing is also done automatically on several levels of abstraction. Process automation enable to reduce designing and testing time. The article propose VHDL Microinstruction compiler, test tools with examples of its use.
KEYWORDS: Digital signal processing, Signal processing, Fiber optics, Telecommunications, Statistical analysis, Signal attenuation, Analog electronics, Analytical research, Phase shift keying, Fourier transforms
The high-performance methods of multi-stage digital processing of linear signals of fiber optic transmission systems in the spectral and time domain with the use of Fourier transform methods are proposed. Based on the proposed methods of signal processing, a digital device for restoring of linear signals in fiber-optic transmission systems is developed. The advantage of the device is high performance, which enables digital processing of linear signals in the spectral region without loss of information.
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