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Biomedical subjects

M A Iakushin

Publications and source records attributed to M A Iakushin.

3 recordsLinked to original sources

[Crisis of computer diagnosis and ways of its overcoming].

Despite a widespread application of computer technologies in medicine, there is currently a lack of diagnostic computer programs, meeting neurological needs. Most of the existing programs depend on some subjective factors. The authors propose their own computer program named "indicated diagnosis", and demonstrate its potential for diagnosis of peripheral monoparesis. Indicated diagnosis included testing and structuring of clinical and anatomical traits, along with the data of instrumental examination of the patients, ranging from patients complaints to establishing topic and nosologic diagnosis. Indicated diagnostics algorithm may be used for measuring of the lesions of nerves, plexuses, terminals and spinal cord segments involved in limb innervation.

Algorithms↗

[New approach to determining sensitive innervation zones].

Despite a vast body of studies carried out over the past years, there is no single definite opinion about the topography of sensitive innervation zones. The reason, underlying such a situation, is analyzed in the report. Based on laser dopplerfluorometry and evoked somato-sensory potentials, an original method for determining autonomic innervation zones is described. High sensitivity of the method allows measuring dermatome topography in the absence of corresponding clinical disorders.

Autonomic Nervous System↗

[Diagnostic algorithm for upper extremity peripheral paresis].

The authors have rejected applying of image identification algorithms and searching for given sequence in favor of algorithms sorting, eliminating thereby an influence of subjective factors on diagnostic process. To create the program, the diagnostic signs with probability coefficient 1 (positive indicator) or 0 (negative indicator) were used. To positive signs were attributed indicator muscles and indicator sensitive zones--the cutaneous areas where sensitive disorders appeared in the first turn, in response to a lesion in corresponding segment of peripheral nervous system, and disappeared in the last turn; to negative ones--muscles or cutaneous areas, being never affected by paresis or hyperesthesia in response to the given lesion type. The first part of the algorithm concerns a definition of defect level and the second one--an establishment of final diagnosis. The use of the algorithm developed simplifies diagnostics and raises its efficacy.

Algorithms↗