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Towards a non-invasive craniospinal compliance biomarker
(2022)Measuring intracranial pressure (ICP) is required for clinical management of several neurological disorders. Of arguably similar value, but more difficult to measure, is craniospinal compliance (CC). Changes in head impedance due to geometry and dielectric properties variation during the cardiac cycle is a promising biomarker for non-invasive CC monitoring. Recently, we developed an efficient computational method to facilitate signal ...Other Conference Item -
Computational modelling for non-invasive monitoring of intracranial pressure
(2023)7th HBP Student Conference on Interdisciplinary Brain Research. Book of AbstractsMeasuring intracranial pressure (ICP) is crucial for diagnosis, treatment and monitoring of craniospinal disorders. Non-invasive ICP measurement is still a grand challenge despite more than 60 years of research. In this study, we tackle this challenge by computing the head impedance changes (∆Z) during the cardiac cycles inspired by the work of Russegger and Ennemoser. We use the results to establish correlations between the non-invasively ...Other Conference Item