Kumaraswami M
Use separate vials
It analyzes pathway-level variants (GLP1R, GIPR, FTO, and MC4R) that relate to the biology involved, offering context for a conversation with your provider rather than a prediction

Acknowledgements: CRAM: Research Ireland: 13/RC/2073_P2, SENSOME Disclosure of interest: All authors:nothing to disclose Poster session I - DIAGNOSIS / ETIOLOGY 04.00 - DIAGNOSIS / ETIOLOGY - 04.01 - DIAGNOSIS/INVESTIGATION OF STROKE ETIOLOGY P349 - ESOC25-2048 ELECTRICAL IMPEDANCE SIGNATURES OF RED BLOOD CELLS AND PLATELETS IN ACUTE ISCHEMIC STROKE (AIS) CLOTS OFFER INSIGHTS INTO ETIOLOGY AND FIRST-PASS EFFECT Cansu Sahin 1,2 , Alice Giraud 3 , Nazan Guner Sak 1,2 , Wenyi Liu 1 , Pierluca Messina 3 , Franz Bozsak 3 , Jean Darcourt 4,5 , Juega Jess 6 , Tsuyoshi Ohta 7 , Vanessa Chalumeau 8 , Ivan Vukasinovic 9 , Marc Ribo 6 , Nobuyuki Sakai 7 , Christophe Cognard 4 , Karen Doyle 1,2 1 Department of Physiology, University of Galway, Galway, Ireland, Galway, Ireland, 2 CRAM Research Ireland Centre for Medical Devices, University of Galway, Galway, Ireland, Galway, Ireland, 3 Sensome, Massy, France, Massy, France, 4 Department of Diagnostic and Therapeutic Neuroradiology, CHU de Toulouse, Toulouse, France, Toulouse, France, 5 Radiology department, Ramsay Sant Clinique des Cdres, Cornebarrieu, France, Cornebarrieu, France, 6 Department of Neurology, University Hospital Vall dHebron, Barcelona, Spain, Barcelona, Spain, 7 Department of Neurosurgery, Kobe City Medical Center General Hospital, Kobe, Japan, Kobe, Japan, 8 Bictre Hospital, Department of Interventional Neuroradiology, Le Kremlin-Bictre, France, Le Kremlin-Bictre, France, 9 Center for Radiology and MRI, Clinic for Neurosurgery, University Clinical Center of Serbia, Belgrade, Serbia, Belgrade, Serbia Background and Aims: Electrical impedance signatures may help characterize clot composition in AIS patients, providing neurointerventionalists with insights to inform AIS treatment
