"Endovascular brain intervention and mapping in a dog experimental model using magnetically-guided micro-catheter technology"@en . . "Endovascular brain intervention and mapping in a dog experimental model using magnetically-guided micro-catheter technology"@en . . "1213-8118" . . "000338628200010" . "Endovascular brain intervention and mapping in a dog experimental model using magnetically-guided micro-catheter technology" . . "Nov\u00E1k, Miroslav" . "Endovascular brain intervention and mapping in a dog experimental model using magnetically-guided micro-catheter technology" . . "10.5507/bp.2012.076" . "Vlasin, Michal" . "Biomedical Papers of the Faculty of Medicine of Palack\u00FD University, Olomouc, Czech Republic" . . . . . . "Leinveber, Pavel" . "[7EB84A4E3C31]" . "158" . "RIV/00216224:14110/14:00079021!RIV15-MSM-14110___" . "Chrastina, Jan" . "Kara, Tomas" . "Belehrad, Milos" . . "6"^^ . . "14540" . "central nervous system; magnetically-guided endovascular interventions; mapping; NIOBE"@en . . "Aim. Despite the substantial progress that has been achieved in interventional cardiology and cardiac electrophysiology, endovascular intervention for the diagnosis and treatment of central nervous system (CNS) disorders such as stroke, epilepsy and CNS malignancy is still limited, particularly due to highly tortuous nature of the cerebral arterial and venous system. Existing interventional devices and techniques enable only limited and complicated access especially into intra-cerebral vessels. The aim of this study was to develop a micro-catheter magnetically-guided technology specifically designed for endovascular intervention and mapping in deep CNS vascular structures. Methods. Mapping of electrical brain activity was performed via the venous system on an animal dog model with the support of the NIOBE II system. Results."@en . "2"^^ . . "Nov\u00E1k, Zden\u011Bk" . "CZ - \u010Cesk\u00E1 republika" . . . . . "14110" . "I, P(ED1.100/02/0123), P(NS10099)" . "10"^^ . "Jurak, Pavel" . "RIV/00216224:14110/14:00079021" . "Asirvatham, Samuel J." . "Aim. Despite the substantial progress that has been achieved in interventional cardiology and cardiac electrophysiology, endovascular intervention for the diagnosis and treatment of central nervous system (CNS) disorders such as stroke, epilepsy and CNS malignancy is still limited, particularly due to highly tortuous nature of the cerebral arterial and venous system. Existing interventional devices and techniques enable only limited and complicated access especially into intra-cerebral vessels. The aim of this study was to develop a micro-catheter magnetically-guided technology specifically designed for endovascular intervention and mapping in deep CNS vascular structures. Methods. Mapping of electrical brain activity was performed via the venous system on an animal dog model with the support of the NIOBE II system. Results." . "Czechowicz, Krzysztof" . "2" . .