Matches in SemOpenAlex for { <https://semopenalex.org/work/W2322205293> ?p ?o ?g. }
- W2322205293 endingPage "768" @default.
- W2322205293 startingPage "763" @default.
- W2322205293 abstract "To evaluate the feasibility of ex vivo ablation implementing a cryo-based internally cooled bipolar radiofrequency (RF) applicator and to determine the influence of power and gas pressure on the size and shape of the resulting ablation zones.Two hundred twenty-five ablations were performed using a custom-built internally CO2-cooled bipolar cryo RF applicator in ex vivo bovine livers. The active tip of the applicator was 55 mm long. RF power (32-50 watts) and gas pressure of cooling medium (500-600 psi) were varied independently. Power was applied in continuous mode. Control group experiments were carried out solely using the RF function at 32, 40, and 50 watts. Ablation duration was 15 minutes for all applications. Experiments were repeated 5 times for all parameter combinations. Short and long axes of the induced white ablation zone were macroscopically assessed. The ablation zone was referred to as homogeneous if complete ablation was observed without spots of untreated tissue. The short axis diameters for the simultaneous application of cryo and RF function were analyzed using a multiple linear regression analysis. An unpaired Mann-Whitney U test was used to analyze the differences between the short axes with RF alone and RF using cryo cooling.All ablation zones were homogeneous. Using simultaneous RF ablation function and gas cooling with a single applicator, the long axes of the ablation zones ranged between 42 +/- 2 mm (mean +/- SD) and 59 +/- 5 mm, the short axes between 24 +/- 1 and 44 +/- 1 mm, depending on the parameter combination. At a stable gas pressure level, short axes increased with rising power levels and decreased after reaching a maximum. The maxima of the short axis increased with higher gas pressure levels and were shifted to higher power values. Optimal parameter settings were 46 to 50 watts and 600 psi gas pressure, resulting in a short axis of 44 +/- 1 mm. Short axis weakly correlated with gas pressure (r2 = 0.10) and power (r2 = 0.34) alone, whereas the correlation was r2 = 0.76 for the combined factors. Without cooling, short axis diameters were significantly shorter (P < 0.05), ranging between 13 +/- 2 mm at 50 watts and 15 +/- 2 mm at 32 watts.The results of this initial ex vivo study show that the combined cryo RF ablation device allows for large ablation volumes using a single needle, which is superior to RF ablation alone." @default.
- W2322205293 created "2016-06-24" @default.
- W2322205293 creator A5010868391 @default.
- W2322205293 creator A5014832282 @default.
- W2322205293 creator A5015319137 @default.
- W2322205293 creator A5018266029 @default.
- W2322205293 creator A5023812050 @default.
- W2322205293 creator A5027641521 @default.
- W2322205293 creator A5038740193 @default.
- W2322205293 creator A5071774458 @default.
- W2322205293 creator A5072365037 @default.
- W2322205293 creator A5075249835 @default.
- W2322205293 creator A5076267119 @default.
- W2322205293 date "2009-12-01" @default.
- W2322205293 modified "2023-10-17" @default.
- W2322205293 title "Increased Ablation Zones Using a Cryo-Based Internally Cooled Bipolar RF Applicator in Ex Vivo Bovine Liver" @default.
- W2322205293 cites W1963711959 @default.
- W2322205293 cites W1970088878 @default.
- W2322205293 cites W1973828278 @default.
- W2322205293 cites W1995344361 @default.
- W2322205293 cites W1995587918 @default.
- W2322205293 cites W2002043652 @default.
- W2322205293 cites W2004673269 @default.
- W2322205293 cites W2019450956 @default.
- W2322205293 cites W2029622312 @default.
- W2322205293 cites W2031508271 @default.
- W2322205293 cites W2032454039 @default.
- W2322205293 cites W2034331715 @default.
- W2322205293 cites W2036672856 @default.
- W2322205293 cites W2040371658 @default.
- W2322205293 cites W2045122448 @default.
- W2322205293 cites W2056420216 @default.
- W2322205293 cites W2063229296 @default.
- W2322205293 cites W2064516382 @default.
- W2322205293 cites W2065132680 @default.
- W2322205293 cites W2066873543 @default.
- W2322205293 cites W2070846044 @default.
- W2322205293 cites W2075898053 @default.
- W2322205293 cites W2087147214 @default.
- W2322205293 cites W2088279470 @default.
- W2322205293 cites W2091175231 @default.
- W2322205293 cites W2092297286 @default.
- W2322205293 cites W2103880038 @default.
- W2322205293 cites W2126015150 @default.
- W2322205293 cites W2135392778 @default.
- W2322205293 cites W2144414942 @default.
- W2322205293 cites W2148045478 @default.
- W2322205293 cites W2155071390 @default.
- W2322205293 cites W2156320099 @default.
- W2322205293 cites W2163025138 @default.
- W2322205293 cites W2165268128 @default.
- W2322205293 cites W2168434023 @default.
- W2322205293 cites W2168987184 @default.
- W2322205293 doi "https://doi.org/10.1097/rli.0b013e3181b66d11" @default.
- W2322205293 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/19838120" @default.
- W2322205293 hasPublicationYear "2009" @default.
- W2322205293 type Work @default.
- W2322205293 sameAs 2322205293 @default.
- W2322205293 citedByCount "10" @default.
- W2322205293 countsByYear W23222052932012 @default.
- W2322205293 countsByYear W23222052932013 @default.
- W2322205293 countsByYear W23222052932014 @default.
- W2322205293 countsByYear W23222052932016 @default.
- W2322205293 countsByYear W23222052932017 @default.
- W2322205293 crossrefType "journal-article" @default.
- W2322205293 hasAuthorship W2322205293A5010868391 @default.
- W2322205293 hasAuthorship W2322205293A5014832282 @default.
- W2322205293 hasAuthorship W2322205293A5015319137 @default.
- W2322205293 hasAuthorship W2322205293A5018266029 @default.
- W2322205293 hasAuthorship W2322205293A5023812050 @default.
- W2322205293 hasAuthorship W2322205293A5027641521 @default.
- W2322205293 hasAuthorship W2322205293A5038740193 @default.
- W2322205293 hasAuthorship W2322205293A5071774458 @default.
- W2322205293 hasAuthorship W2322205293A5072365037 @default.
- W2322205293 hasAuthorship W2322205293A5075249835 @default.
- W2322205293 hasAuthorship W2322205293A5076267119 @default.
- W2322205293 hasConcept C114614502 @default.
- W2322205293 hasConcept C119599485 @default.
- W2322205293 hasConcept C126322002 @default.
- W2322205293 hasConcept C127413603 @default.
- W2322205293 hasConcept C136229726 @default.
- W2322205293 hasConcept C150903083 @default.
- W2322205293 hasConcept C192562407 @default.
- W2322205293 hasConcept C194257627 @default.
- W2322205293 hasConcept C196054291 @default.
- W2322205293 hasConcept C207001950 @default.
- W2322205293 hasConcept C26291073 @default.
- W2322205293 hasConcept C2777377203 @default.
- W2322205293 hasConcept C2778902805 @default.
- W2322205293 hasConcept C2989005 @default.
- W2322205293 hasConcept C3020661500 @default.
- W2322205293 hasConcept C33923547 @default.
- W2322205293 hasConcept C46362747 @default.
- W2322205293 hasConcept C49040817 @default.
- W2322205293 hasConcept C66882249 @default.
- W2322205293 hasConcept C71924100 @default.
- W2322205293 hasConcept C74064498 @default.
- W2322205293 hasConcept C76856502 @default.