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 4:Changes of the luminal diameter
% Axial Diameter of Control % Axial Diameter of Shaped Catheters at Angled Portion Small size Excelsior 1018 100.7 95.5 Tracker Excel-14 100.1 99.2 Excelsior SL-10 99.3 99.5 Progreat 2.0F 99.4 99.1 Rebar 14 100.3 97.3 FasTracker-10 100.3 97.3 Large size Rapid Transit 99.3 93.1 Prowler Plus 99.8 98.8 Renegade 98.9 90.5 Progreat 2.4F 100.0 95.4 Microferret 99.4 88.3
Note.—% axial diameter = (axial diameter at 5-mm proximal portion/axial diameter at 2-mm proximal portion) × 100.