1naresh
Array ( [urn:ac.highwire.org:guest:identity] => Array ( [runtime-id] => urn:ac.highwire.org:guest:identity [type] => guest [service-id] => ajnr-ac.highwire.org [access-type] => Controlled [privilege] => Array ( [urn:ac.highwire.org:guest:privilege] => Array ( [runtime-id] => urn:ac.highwire.org:guest:privilege [type] => privilege-set [privilege-set] => GUEST ) ) [credentials] => Array ( [method] => guest ) ) ) 1nareshArray ( [urn:ac.highwire.org:guest:identity] => Array ( [runtime-id] => urn:ac.highwire.org:guest:identity [type] => guest [service-id] => ajnr-ac.highwire.org [access-type] => Controlled [privilege] => Array ( [urn:ac.highwire.org:guest:privilege] => Array ( [runtime-id] => urn:ac.highwire.org:guest:privilege [type] => privilege-set [privilege-set] => GUEST ) ) [credentials] => Array ( [method] => guest ) ) )Table 2:Flow alterations on rVE-ASL stratified by stenosis ratio
Stenosis Ratio With Flow Alterations, n (%) Without Flow Alterations, n (%) P Value Flow territory of MCA on the side of ICAD < 90% (n = 24) 2 (8.3) 22 (91.7) <.001 ≥ 90% (n = 16) 15 (93.8) 1 (6.2) Flow territory of ACA on the side of ICAD < 90% (n = 24) 0 (0.0) 24 (100.0) <.001 ≥ 90% (n = 16) 8 (50.0) 8 (50.0)