Biopotentials of the urinary bladder during functional load


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Abstract

The study aimed to investigate the specific bioelectrical activity of the urinary bladder walls at a functional load. Materials and methods. The study comprised five subjects aged 18-22 years who had no diseases of the urinary system. Participants signed an informed consent form before entering the study, which was approved by the Ethics Committee of our organization. Biopotentials from the ureter and urinary bladder area were recorded using the Neuro-Spectrum NeuroSoft-21 Neuron Spectrum-4 electroencephalograph, which has a higher sensitivity compared to other biopotential amplifiers. The sensitivity range of the electroencephalograph according to the manufacturer was in the frequency range from 0.05 to 250 Hz 1-1000 цУ/mm, the quantization frequency - up to 5000 Hz, the noise level - less than 0.3 μV The obtained data were in agreement with the results of the ultrasound and urodynamic studies, which implied the possibility to consider this method of registration of bladder biopotentials suitable for such a purpose. Results. The analysis of the background spectra for the same time (at rest and under load) identified a correlation between them (correlation coefficient > 0.8). Three frequencies were chosen in the range from 0.5 to 2 Hz, for which the changes of the amplitude were most clearly traced in time. A correlation analysis (using the STATISTICA 10 software) showed a correlation between these three frequencies and background load (correlation coefficient 0.2). Conclusions. The water loading resulted in an increase in the activity of the bladder wall biopotentials after the 10th minute of registration. The functional load changed the pattern of the changes of the harmonics of the bioelectrical activity spectrum of the bladder walls: in the background record, the harmonics behaved almost identically in time, but after water loading, the amplitudes of the harmonics changed with the passage of time. One of the main findings of the work is the detection of several frequencies ranged from 0.5 to2 Hz (0.7, 1.5 and 1.7 Hz), which can be used to assess the functional state of the bladder wall.

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About the authors

A. P Rytik

N.G. Chernyshevsky Saratov State University

Email: ra4csz@ya.ru
Associate Professor at the Department of Medical Physics, Faculty of Nanotechnology and Biomedical Technologies

O. Yu Kutikova

N.G. Chernyshevsky Saratov State University

Student at the Department of Medical Physics

D. A Usanov

N.G. Chernyshevsky Saratov State University

Professor, Dr.Phys. -Math.Sci., Head ofthe Department of Solid State Physics, Faculty of Nano- and Biomedical Technologies

V. I Goremykin

V.I. Razumovsky Saratov State Medical University

Dr.Med.Sci., Professor, Head of the Department of Pediatrics

E. E Prosova

V.I. Razumovsky Saratov State Medical University

Email: mesherjkoval@mail.ru
Assistant of the Department of Pediatrics

References

  1. Вишневский Е.Л. Диагностика и лечение нейрогенных дисфункций мочевого пузыря у детей. Педиатрия. 1997;3:27-30
  2. Пирогов В.А., Чабанов П.В. Электромиография как метод диагностики у больных с нарушениями функции органов мочевыделительной системы. Здоровье мужчины. 2013;3;65-68
  3. Филин В.А., Кузнецова Н.И., Михеева И.Г., Николаева В.В., Моисеев А.Б., Кольбе О.Б., Бадяева С.А., Паршина К.Б. Детско-родительские отношения в семье девочек с нейрогенной дисфункцией мочевого пузыря. Педиатрия. 2009;87(3):19-22
  4. Казанская И.В. Энурез: классификация, причины, диагностика и лечение. Вопросы современной педиатрии. 2003;(2)6:58-66
  5. Ревенко С.В. Гармонические перспективы реографии. Нервно-мышечные болезни. 2012;4:8-18
  6. Буренина И.А., Хасанов В.В. Эффективность применения электростимуляции почек и мочеточников синусоидальными модулированными токами в комплексном консервативном лечении мочекаменной болезни. Вестник современной клинической медицины. 2008;1:30-32
  7. Собакин М.А. Экспериментальная методика электрографического исследования моторной деятельности желудка при пищеварении. Бюлл. экспер. биол. и мед. 1953;36(3):76-79
  8. Смирнова Г.О., Силуянов С.В. Периферическая электрогастроэнтерография в клинической практике. Пособие для врачей. Под ред. профессора В.А. Ступина М.: 2009;20 c.
  9. Tugtepe H., Thomas D.T., Ergun R., Kalyoncu A., Kaynak A., Kastarli C., Dagli T.E. The effectiveness oftranscutaneous electrical neural stimulation therapy in patients with urinary incontinence resistant to initial medical treatment or biofeedback. Journal of pediatric urology. 2015;(11)3:137. doi: 10.1016/j.jpurol.2014.10.016.
  10. Горемыкин В.И., Усанов Д.А., Просова Е.Е., Рытик А.П., Григорьева М.М. Устройство для коррекции нарушений уродинамики верхних мочевых путей у детей с хроническим пиелонефритом. Медицинская техника. 2014;4:1-4
  11. Пугачев А.Г. Детская урология: Руководство для врачей 2009 г.

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