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A Craniospinal Compliance Monitor

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Biomedical Engineering Aims and scope

The number of diseases requiring continuous neurological monitoring of the main parameters of the craniospinal system increases year on year. Retrospective analysis of results from monitoring intracranial pressure supported the development of an original technology for evaluating the magnitude and dynamics of craniospinal compliance in pathology of cerebrospinal fluid circulation, including a means for quantitative assessment of craniospinal compliance from the amplitude of pulsatile oscillations in intracranial pressure and instrumented implementation of the method in the form of a technically perfected medical device, i.e., the Neurocom craniospinal compliance monitor, as well as a means of applying the technology to different purposes in neurosurgery and neuroresuscitation.

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References

  1. Atiskov, Yu. A. and Khachatryan, W. A., “Low-invasive techniques for assessment of the biomechanical properties of the craniospinal system (CSS) and CSF circulation (CC),” in: Polenov Lectures: Proceedings of the XI Scientific and Applied Conference, Ross. Neirokhirurg. Zh., IV (2012).

  2. Domanskii, D. S., Belkin, A. A., and Zislin, B. D., “Comparative assessment of available methods for measuring intracranial pressure,” Ural. Med. Zh., No. 1, 23-28 (2007).

  3. Atiskov, Yu. A., Yakovenko, I. V., Khachatryan, W. A., Samochernykh, K. A., Kim, A. V., and Borovikova, V. N., A Method for Quantitative Assessment of Cerebral Compliance, RF Patent No. RU 2474380 S1 2474380 (2013).

  4. Gorbachev, V. I., Likholetova, N. V., and Gorbachev S. V., “Monitoring of intracranial pressure: Current state and potentials (communication 3),” Politravma, No. 2, 77-86 (2004).

  5. Khachatryan, W. A., Bersnev, V. P., Safin, Sh. M., et al., Hydrocephalus: Pathogenesis, Diagnosis, Surgical Treatment [in Russian], St. Petersburg (1998).

  6. Tain, R. W., Bagci, A. M., Lam, B. L., Sklar, E. M., Ertl-Wagner, B., and Alperin, N., “Determination of cranio-spinal canal compliance distribution by MRI: Methodology and early application in idiopathic intracranial hypertension,” J. Magn. Reson. Imaging., 34, No. 6, 1397-1404 (2011).

    Article  Google Scholar 

  7. Czosnyka, M. and Pickard, J. D., “Monitoring and interpretation of intracranial pressure,” J. Neurol. Neurosurg. Psychiatry, 75, No. 6, 813-821 (2004).

    Article  CAS  Google Scholar 

  8. Magnaes, B., “Clinical studies of cranial and spinal compliance and the craniospinal flow of cerebrospinal fluid,” Br. J. Neurosurg., 3, No. 6, 659-668 (1989).

    Article  CAS  Google Scholar 

  9. Nurpeisov, A. Z., Nurdinov, M. A., Abakov, D. K., and Maev, E. Zh., “Monitoring of intracranial pressure,” Neurokhurg. Nevrol. Kazakhst., 23, No. 2, 38-47 (2011).

    Google Scholar 

  10. Belkin, A. A., Zislin, B. D., and Domanskii, D. S., “Monitoring of craniospinal compliance in cerebral failure,” Anesteziol. Reanim., No. 2, 34-36 (2010).

  11. Atiskov, Yu. A., Samochernykh, K. A., and Khachatryan, W. A., “Assessment of craniospinal compliance,” Neirokhurigiya, No. 4, 42-49 (2017).

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Correspondence to E. T. Nazaralieva.

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Translated from Meditsinskaya Tekhnika, Vol. 54, No. 6, Nov.-Dec., 2020, pp. 7-10.

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Atiskov, Y.A., Khachatryan, W.A., Nazaralieva, E.T. et al. A Craniospinal Compliance Monitor. Biomed Eng 54, 380–383 (2021). https://doi.org/10.1007/s10527-021-10044-8

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  • DOI: https://doi.org/10.1007/s10527-021-10044-8

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