0000000000054422

AUTHOR

Tomasz Moszkowski

showing 2 related works from this author

Modeling the pelvic region for non-invasive pelvic intraoperative neuromonitoring

2016

Abstract Finite element analysis (FEA) of electric current distribution in the pelvis minor may help to assess the usability of non-invasive surface stimulation for continuous pelvic intraoperative neuromonitoring. FEA requires generation of quality volumetric tetrahedral mesh geometry. This study proposes the generation of a suitable mesh based on MRI data. The resulting volumetric mesh models the autonomous nerve structures at risk during total mesorectal excision. The model also contains the bone, cartilage, fat, skin, muscle tissues of the pelvic region, and a set of electrodes for surface stimulation. The model is ready for finite element analysis of the discrete Maxwell’s equations.

medicine.medical_specialtybusiness.industryfinite element methodlcsh:RNon invasiveBiomedical Engineeringlcsh:Medicinepelvic intraoperative neurophysiological monitoring03 medical and health sciences0302 clinical medicinemedicine.anatomical_structure030220 oncology & carcinogenesismedicine030211 gastroenterology & hepatologyelectric field modelingRadiologybusinessPelvisCurrent Directions in Biomedical Engineering
researchProduct

Extracorporeal Stimulation of Sacral Nerve Roots for Observation of Pelvic Autonomic Nerve Integrity: Description of a Novel Methodological Setup.

2017

Introduction: Neurophysiologic monitoring can improve autonomic nerve sparing during critical phases of rectal cancer surgery. Objectives: To develop a system for extracorporeal stimulation of sacral nerve roots. Methods: Dedicated software controlled a ten-electrode stimulation array by switching between different electrode configurations and current levels. A built-in impedance and current level measurement assessed the effectiveness of current injection. Intra-anal surface electromyography (sEMG) informed on targeting the sacral nerve roots. All tests were performed on five pig specimens. Results: During switching between electrode configurations, the system delivered 100% of the set cur…

SacrumIntraoperative Neurophysiological MonitoringSwineBiomedical EngineeringAnal CanalStimulationElectromyographySignalExtracorporealPelvis03 medical and health sciences0302 clinical medicinemedicineAnimalsAutonomic PathwaysElectrical impedanceAutonomic nervemedicine.diagnostic_testbusiness.industryElectromyographyRectal NeoplasmsElectric StimulationAnode030220 oncology & carcinogenesisSacral nerve030211 gastroenterology & hepatologybusinessSpinal Nerve RootsOrgan Sparing TreatmentsBiomedical engineeringIEEE transactions on bio-medical engineering
researchProduct