Journal Biomedical Radioelectronics №3 for 2026 year
Prediction of sudden cardiac death by entropic heart rate indicators

L.A. Manilo1, A.A. Mekhonoshina2, A.P. Nemirko3, Z.M. Yuldashev4, D.A. Stepanov5

1–4 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
5 Almazov National Medical Research Centre (St. Petersburg, Russia)
1 lmanilo@yandex.ru, 2 annmeh2003@yandex.ru, 3apn-bs@yandex.ru, 4yuld@mail.ru, 5daniel36611b@gmail.com

8-17
System for differential diagnosis of maxillary sinus pathologies based on digital diaphanoscopy and convolutional neural networks

E.O. Bryanskaya1, D.V. Gerasin2, A.V. Bakotina3, A.Yu. Ovchinnikov4, Yu.O. Nikolaeva5, V.V. Dremin6, A.V. Dunaev7

1, 2, 6, 7 Research and Development Center of Biomedical Photonics, Orel State University (Orel, Russia)
3–5 Russian University of Medicine of the Ministry of Health of the Russian Federation (Moscow, Russia)
1bryanskayae@mail.ru

18-22
Brain electrical activity signal generator within a “brain – computer – virtual reality” interface

A. D. Ivanov1, A. Yu. Tychkov2, D. S. Chernyshov3, A. K. Alimuradov4, O. S. Simakova5

1–5 Penza State University (Penza, Russia)
1Sailtothe54@gmail.com, 2tychkov-a@mail.ru, 3deniska_1980_13@mail.ru, 4alansapfir@yandex.ru, 5zcsio@mail.ru

23-28
The concept of constructing biosensor systems based on peptide recognition elements for express diagnostics of protein disease biomarkers

N.O. Sitkov1, Z.M. Yuldashev2

1,2 St. Petersburg Electrotechnical University ETU «LETI», (St. Petersburg, Russia)
1 sitkov93@yandex.ru

29-36
State-Space Modeling and Comparative Analysis of Automated Control Methods for a Direct-Drive Pupil Tracking System in Teleophthalmology

Аli Sultan Mayya1

1 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
1 alimayya1357@gmail.com

37-42
Algorithmic model of the technological process for spatial navigation of blind and visually impaired persons based on predictive trajectory correction

D.I. Palogiannidis1

1 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
1 dimitris.palogiannidis@gmail.com

43-49
Artificial intelligence in flow cytometry systems: a method to increase the processing speed of big data. Problems and solutions

V.G. Nikitaev1, T.G. Gevorkyan2, A.N. Pronichev3, T.N. Zabotina4, O.V. Nagornov5, E.B. Vesna6, A.A. Borunova7, M.S. Torosyan8

1, 3, 5, 6, 8 National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), (Moscow, Russia)
 2, 4, 7 Blokhin National Research Medical Center of Oncology, Ministry of Health of the Russian Federation, (Moscow, Russia)
1 VGNikitayev@mephi.ru, 2 t.gevorkian@ronc.ru, 3 anpronichev@mephi.ru, 4 tnz@ronc.ru, 5 OVNagornov@mephi.ru, 6 EBVesna@mephi.ru, 7 a.borunova@ronc.ru, 8 torosyan.marlen@yandex.ru

50-54
Analysis of factors influencing the correctness of diagnosis in medical diagnostics

E.S. Suloeva1, Z.M. Yuldashev2

1, 2 St. Petersburg Electrotechnical University "LETI" (St. Petersburg, Russia)
1 suloewa@list.ru, 2 zmyuldashev@etu.ru

55-61
Quantitative analysis of gait and balance disorders in patients after total knee arthroplasty

S. Bilal1, A. V. Samorodov2

1, 2Bauman Moscow State Technical University (Moscow, Russia)
1 bilal@bmstu.ru, 2 avs@bmstu.ru

62-65
Wavelet transform and convolutional neural networks for detecting short fragments of dangerous arrhythmias

B.E. Alekseev1

1 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
1 BorisBoris12@yandex.ru

66-70
Development of a biotechnical system for diagnosis the condition of brain tissues in vitro

A.E. Gerasimenko1

1 St. Petersburg Electrotechnical University “LETI” (St. Petersburg, Russia)
1 sasha_grsmnk@mail.ru

71-75
Assessment of peripheral hemodynamics using multichannel local thermometry

K.E. Sanarova1

1 St. Petersburg Electrotechnical University “LETI” (St. Petersburg, Russia)
1 kseniya.sanarova@mail.ru

76-80
Noninvasive skin cancer diagnostics method based on terahertz ellipsometry

M.K. Khodzitsky1

1 Limited Liability Company «Terahertz Photonics» (St. Petersburg, Russia)
1 khodzitskiy@yandex.ru

81-86
Method of non-invasive monitoring of glycated hemoglobin levels in blood using terahertz radiation

M.K. Khodzitsky1

1 Limited Liability Company «Terahertz Photonics» (St. Petersburg, Russia)
1 khodzitskiy@yandex.ru

87-92
Analysis of factors triggering crisis states in individuals with autism spectrum disorders for the development of a rapid state regulation system

H.N. Shalobyta1

1 St. Petersburg State Electrotechnical University (St. Petersburg, Russia)
1 enshalobyta@etu.ru

93-96
97-102
Development of the implantable brain–computer interface prototype with a wireless data and power transfer system

I.A. Starikov1, Z.M.Yuldashev2

1, 2 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
1starikov.ilyaa@gmail.com, 2yuld@mail.ru

103-109
Development of a software package for automatic determination of the state of brain tissue based on impedance spectroscopy

A.E. Gerasimenko1

1, 2 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
1 sasha_grsmnk@mail.ru

110-114
Development of an extended pregnancy management protocol using intelligent monitoring methods

I.P. Korneeva1

1 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
1 ipkorneeva@etu.ru

115-118
Hybrid expert model for predicting ART outcomes based on weighted decision tree and logistic calibration

D.S. Ripka1, E.A. Semenova2

1, 2 St. Petersburg State Electrotechnical University "LETI" (St. Petersburg, Russia)
1 dar.stkr@gmail.com, 2easemenova@etu.ru

119-124
Optimizing the device model for recording low-amplitude high-frequency cardiac signals

D.N. Klypin1, D.A. Titov2

1, 2 Omsk State Technical University (Omsk, Russia)
1 lan@omgtu.ru, 2 dtitov2@yandex.ru

125-130
Epileptic seizure monitoring method based on multimodal analysis of human electrophysiological parameters

I.I. Titova1

1 St. Petersburg State Electrotechnical University (St. Petersburg, Russia)
1 iititova@etu.ru

131-135
Generalized system structure for synchronous recording of pressure distribution over the foot and in the receiving sleeve of the lower limb prosthesis

A.Yu. Kurochkin1, Z.M. Yuldashev2, L.M. Smirnova3

1–3 St. Petersburg Electrotechnical University “LETI” (St. Petersburg, Russia)
3 Federal Scientific and Educational Center for Medical and Social Expertise and Rehabilitation n.a. G.A. Albrecht (St. Petersburg, Russia)
1 k.a.u.6587@gmail.com, 2 zmyuldashev@etu.ru, 3 info@diaserv.ru

136-143