Literature DB >> 17581900

Microwave ablation with multiple simultaneously powered small-gauge triaxial antennas: results from an in vivo swine liver model.

Christopher L Brace1, Paul F Laeseke, Lisa A Sampson, Tina M Frey, Daniel W van der Weide, Fred T Lee.   

Abstract

PURPOSE: To prospectively investigate the ability of a single generator to power multiple small-diameter antennas and create large zones of ablation in an in vivo swine liver model.
MATERIALS AND METHODS: Thirteen female domestic swine (mean weight, 70 kg) were used for the study as approved by the animal care and use committee. A single generator was used to simultaneously power three triaxial antennas at 55 W per antenna for 10 minutes in three groups: a control group where antennas were spaced to eliminate ablation zone overlap (n=6; 18 individual zones of ablation) and experimental groups where antennas were spaced 2.5 cm (n=7) or 3.0 cm (n=5) apart. Animals were euthanized after ablation, and ablation zones were sectioned and measured. A mixed linear model was used to test for differences in size and circularity among groups.
RESULTS: Mean (+/-standard deviation) cross-sectional areas of multiple-antenna zones of ablation at 2.5- and 3.0-cm spacing (26.6 cm(2) +/- 9.7 and 32.2 cm(2) +/- 8.1, respectively) were significantly larger than individual ablation zones created with single antennas (6.76 cm(2) +/- 2.8, P<.001) and were 31% (2.5-cm spacing group: multiple antenna mean area, 26.6 cm(2); 3 x single antenna mean area, 20.28 cm(2)) to 59% (3.0-cm spacing group: multiple antenna mean area, 32.2 cm(2); 3 x single antenna mean area, 20.28 cm(2)) larger than 3 times the mean area of the single-antenna zones. Zones of ablation were found to be very circular, and vessels as large as 1.1 cm were completely coagulated with multiple antennas.
CONCLUSION: A single generator may effectively deliver microwave power to multiple antennas. Large volumes of tissue may be ablated and large vessels coagulated with multiple-antenna ablation in the same time as single-antenna ablation. (c) RSNA, 2007.

Entities:  

Mesh:

Year:  2007        PMID: 17581900     DOI: 10.1148/radiol.2441052054

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  39 in total

1.  Creation of short microwave ablation zones: in vivo characterization of single and paired modified triaxial antennas.

Authors:  Meghan G Lubner; Tim J Ziemlewicz; J Louis Hinshaw; Fred T Lee; Lisa A Sampson; Christopher L Brace
Journal:  J Vasc Interv Radiol       Date:  2014-08-23       Impact factor: 3.464

2.  Pulmonary thermal ablation: comparison of radiofrequency and microwave devices by using gross pathologic and CT findings in a swine model.

Authors:  Christopher L Brace; J Louis Hinshaw; Paul F Laeseke; Lisa A Sampson; Fred T Lee
Journal:  Radiology       Date:  2009-03-31       Impact factor: 11.105

3.  Microwave ablation of lung tumours: single-centre preliminary experience.

Authors:  Gianpaolo Carrafiello; Monica Mangini; Federico Fontana; Anna Maria Ierardi; Giuseppe De Marchi; Nicola Rotolo; Claudio Chini; Salvatore Cuffari; Carlo Fugazzola
Journal:  Radiol Med       Date:  2013-11-15       Impact factor: 3.469

4.  Tumor boundary estimation through time-domain peaks monitoring: numerical predictions and experimental results in tissue-mimicking phantoms.

Authors:  Peng Wang; Christopher L Brace; Mark C Converse; John G Webster
Journal:  IEEE Trans Biomed Eng       Date:  2009-06-26       Impact factor: 4.538

5.  Switching bipolar hepatic radiofrequency ablation using internally cooled wet electrodes: comparison with consecutive monopolar and switching monopolar modes.

Authors:  J H Yoon; J M Lee; S Woo; E J Hwang; I Hwang; W Choi; J K Han; B I Choi
Journal:  Br J Radiol       Date:  2015-04-15       Impact factor: 3.039

6.  Microwave Ablation: Comparison of Simultaneous and Sequential Activation of Multiple Antennas in Liver Model Systems.

Authors:  Colin M Harari; Michelle Magagna; Mariajose Bedoya; Fred T Lee; Meghan G Lubner; J Louis Hinshaw; Timothy Ziemlewicz; Christopher L Brace
Journal:  Radiology       Date:  2015-07-02       Impact factor: 11.105

7.  High-powered microwave ablation of t1a renal cell carcinoma: safety and initial clinical evaluation.

Authors:  Anna J Moreland; Timothy J Ziemlewicz; Sara L Best; J Louis Hinshaw; Meghan G Lubner; Marci L Alexander; Christopher L Brace; Douglas R Kitchin; Sean P Hedican; Stephen Y Nakada; Fred T Lee; E Jason Abel
Journal:  J Endourol       Date:  2014-07-02       Impact factor: 2.942

Review 8.  Microwave ablation technology: what every user should know.

Authors:  Christopher L Brace
Journal:  Curr Probl Diagn Radiol       Date:  2009 Mar-Apr

Review 9.  Microwave ablation of hepatic malignancy.

Authors:  Meghan G Lubner; Christopher L Brace; Tim J Ziemlewicz; J Louis Hinshaw; Fred T Lee
Journal:  Semin Intervent Radiol       Date:  2013-03       Impact factor: 1.513

Review 10.  Radiofrequency and microwave ablation of the liver, lung, kidney, and bone: what are the differences?

Authors:  Christopher L Brace
Journal:  Curr Probl Diagn Radiol       Date:  2009 May-Jun
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