Literature DB >> 20437048

Optimizing the protocol for pulmonary cryoablation: a comparison of a dual- and triple-freeze protocol.

J Louis Hinshaw1, Peter J Littrup, Nathan Durick, Winnie Leung, Fred T Lee, Lisa Sampson, Christopher L Brace.   

Abstract

The purpose of this study was to compare a double freeze-thaw protocol to a triple freeze-thaw protocol for pulmonary cryoablation utilizing an in vivo porcine lung model. A total of 18 cryoablations were performed in normal porcine lung utilizing percutaneous technique with 9 each in a double- (10-5-10) and triple-freeze (3-3-7-7-5) protocol. Serial noncontrast CT images were obtained during the ablation. CT imaging findings and pathology were reviewed. No imaging changes were identified during the initial freeze cycle with either protocol. However, during the first thaw cycle, a region of ground glass opacity developed around the probe with both protocols. Because the initial freeze was shorter with the triple freeze-thaw protocol, the imaging findings were apparent sooner with this protocol (6 vs. 13 min). Also, despite a shorter total freeze time (15 vs. 20 min), the ablation zone identified with the triple freeze-thaw protocol was not significantly different from the double freeze-thaw protocol (mean diameter: 1.67 ± 0.41 cm vs. 1.66 ± 0.21 cm, P = 0.77; area: 2.1 ± 0.48 cm(2) vs. 1.99 ± 0.62 cm(2), P = 0.7; and circularity: 0.95 ± 0.04 vs. 0.96 ± 0.03, P = 0.62, respectively). This study suggests that there may be several advantages of a triple freeze-thaw protocol for pulmonary cryoablation, including earlier identification of the imaging findings associated with the ablation, the promise of a shorter procedure time or larger zones of ablation, and theoretically, more effective cytotoxicity related to the additional freeze-thaw cycle.

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Year:  2010        PMID: 20437048      PMCID: PMC3155994          DOI: 10.1007/s00270-010-9868-0

Source DB:  PubMed          Journal:  Cardiovasc Intervent Radiol        ISSN: 0174-1551            Impact factor:   2.740


  10 in total

1.  A model for the time dependent three-dimensional thermal distribution within iceballs surrounding multiple cryoprobes.

Authors:  J C Rewcastle; G A Sandison; K Muldrew; J C Saliken; B J Donnelly
Journal:  Med Phys       Date:  2001-06       Impact factor: 4.071

2.  Characterization of the RF ablation-induced 'oven effect': the importance of background tissue thermal conductivity on tissue heating.

Authors:  Zhengjun Liu; Muneeb Ahmed; Yehuda Weinstein; Ming Yi; Roop L Mahajan; S Nahum Goldberg
Journal:  Int J Hyperthermia       Date:  2006-06       Impact factor: 3.914

3.  Percutaneous cryotherapy of the thorax: safety considerations for complex cases.

Authors:  Abraham Ahmed; Peter Littrup
Journal:  AJR Am J Roentgenol       Date:  2006-06       Impact factor: 3.959

4.  Differences in ablation size in porcine kidney, liver, and lung after cryoablation using the same ablation protocol.

Authors:  Sompol Permpongkosol; Theresa L Nicol; Richard E Link; Ioannis Varkarakis; Hema Khurana; Qihui Jim Zhai; Louis R Kavoussi; Stephen B Solomon
Journal:  AJR Am J Roentgenol       Date:  2007-04       Impact factor: 3.959

Review 5.  Mechanisms of tissue injury in cryosurgery.

Authors:  A A Gage; J Baust
Journal:  Cryobiology       Date:  1998-11       Impact factor: 2.487

6.  Thoracic masses treated with percutaneous cryotherapy: initial experience with more than 200 procedures.

Authors:  Hongwu Wang; Peter J Littrup; Yunyou Duan; Yanqun Zhang; Huasong Feng; Zhoushan Nie
Journal:  Radiology       Date:  2005-04       Impact factor: 11.105

7.  CT-guided percutaneous cryotherapy of renal masses.

Authors:  Peter J Littrup; Abraham Ahmed; Hussein D Aoun; Daniel L Noujaim; Ted Harb; Sam Nakat; Khaled Abdallah; Barbara A Adam; Raghu Venkatramanamoorthy; Wael Sakr; J Edson Pontes; Lance K Heilbrun
Journal:  J Vasc Interv Radiol       Date:  2007-03       Impact factor: 3.464

8.  Cryotherapy for breast fibroadenomas.

Authors:  Peter J Littrup; Laurie Freeman-Gibb; Aleodor Andea; Michael White; Kathy Carolin Amerikia; David Bouwman; Ted Harb; Wael Sakr
Journal:  Radiology       Date:  2004-11-18       Impact factor: 11.105

9.  Unresectable pulmonary malignancies: CT-guided percutaneous radiofrequency ablation--preliminary results.

Authors:  Robert D Suh; Amanda B Wallace; Ramon E Sheehan; Stefan B Heinze; Jonathan G Goldin
Journal:  Radiology       Date:  2003-12       Impact factor: 11.105

10.  Pulmonary radiofrequency ablation: long-term safety and efficacy in 153 patients.

Authors:  Caroline J Simon; Damian E Dupuy; Thomas A DiPetrillo; Howard P Safran; C Alexander Grieco; Thomas Ng; William W Mayo-Smith
Journal:  Radiology       Date:  2007-04       Impact factor: 11.105

  10 in total
  18 in total

Review 1.  The role of percutaneous image-guided ablation for lung tumors.

Authors:  Elena N Petre; Stephen B Solomon; Constantinos T Sofocleous
Journal:  Radiol Med       Date:  2014-07-01       Impact factor: 3.469

Review 2.  Alternative to surgery in early stage NSCLC-interventional radiologic approaches.

Authors:  Kyungmouk Steve Lee; Bradley B Pua
Journal:  Transl Lung Cancer Res       Date:  2013-10

Review 3.  Lung Ablation: Indications and Techniques.

Authors:  Bashir Akhavan Tafti; Scott Genshaft; Robert Suh; Fereidoun Abtin
Journal:  Semin Intervent Radiol       Date:  2019-08-19       Impact factor: 1.513

4.  The cryoablation of lung tissue using liquid nitrogen in gel and in the ex vivo pig lung.

Authors:  Hiroaki Nomori; Ikuo Yamazaki; Toshiya Kondo; Masaya Kanno
Journal:  Surg Today       Date:  2016-06-04       Impact factor: 2.549

5.  [Cryoablation - back again?].

Authors:  P Isfort; T Penzkofer; A H Mahnken
Journal:  Radiologe       Date:  2012-01       Impact factor: 0.635

Review 6.  Cryoablation of Lung Metastases: Review of Recent Literature and Ablation Technique.

Authors:  Patrick W Eiken; Brian T Welch
Journal:  Semin Intervent Radiol       Date:  2019-10-31       Impact factor: 1.513

Review 7.  Thermal ablation of lung tumors.

Authors:  P David Sonntag; J Louis Hinshaw; Meghan G Lubner; Christopher L Brace; Fred T Lee
Journal:  Surg Oncol Clin N Am       Date:  2011-04       Impact factor: 3.495

Review 8.  Imaging Features following Thermal Ablation of Lung Malignancies.

Authors:  Sophie Chheang; Feredoin Abtin; Antonio Guteirrez; Scott Genshaft; Robert Suh
Journal:  Semin Intervent Radiol       Date:  2013-06       Impact factor: 1.513

9.  CT-guided percutaneous cryoablation of central lung tumors.

Authors:  Errol Colak; Servet Tatlı; Paul B Shyn; Kemal Tuncalı; Stuart G Silverman
Journal:  Diagn Interv Radiol       Date:  2014 Jul-Aug       Impact factor: 2.630

10.  Prevention of needle-tract seeding by two-step freezing after lung cancer biopsy.

Authors:  Feng Mu; Shu-Peng Liu; Xu-Long Zhou; Ji-Bing Chen; Hai-Bo Li; Jian-Sheng Zuo; Ke-Cheng Xu
Journal:  Pathol Oncol Res       Date:  2013-01-30       Impact factor: 3.201

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