Literature DB >> 20346883

Preclinical assessment of a 980-nm diode laser ablation system in a large animal tumor model.

Kamran Ahrar1, Ashok Gowda, Sanaz Javadi, Agatha Borne, Matthew Fox, Roger McNichols, Judy U Ahrar, Clifton Stephens, R Jason Stafford.   

Abstract

PURPOSE: To characterize the performance of a 980-nm diode laser ablation system in an in vivo tumor model.
MATERIALS AND METHODS: This study was approved by the institutional animal care and use committee. The ablation system consisted of a 15-W, 980-nm diode laser, flexible diffusing-tipped fiber optic, and 17-gauge internally cooled catheter. Ten immunosuppressed dogs were inoculated subcutaneously with canine-transmissible venereal tumor fragments in eight dorsal locations. Laser ablations were performed at 79 sites where inoculations were successful (99%) at powers of 10 W, 12.5 W, and 15 W, with exposure times between 60 and 180 seconds. In 20 cases, multiple overlapping ablations were performed. After the dogs were euthanized, the tumors were harvested, sectioned along the applicator tract, measured, and photographed. Measurements of ablation zone were performed on gross specimen. Histopathology and viability staining was performed with hematoxylin and eosin and nicotinamide adenine dinucleotide hydrogen staining.
RESULTS: Gross pathologic examination confirmed a well circumscribed ablation zone with sharp boundaries between thermally ablated tumor in the center surrounded by viable tumor tissue. When a single applicator was used, the greatest ablation diameters ranged from 12 mm at the lowest dose (10 W, 60 seconds) to 26 mm at the highest dose (15 W, 180 seconds). Multiple applicators created ablation zones as large as 42 mm in greatest diameter (with the lasers operating at 15 W for 120 seconds).
CONCLUSIONS: The new 980-nm diode laser and internally cooled applicator effectively create large ellipsoid thermal ablations in less than 3 minutes. Copyright 2010 SIR. Published by Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20346883      PMCID: PMC2847585          DOI: 10.1016/j.jvir.2010.01.002

Source DB:  PubMed          Journal:  J Vasc Interv Radiol        ISSN: 1051-0443            Impact factor:   3.464


  23 in total

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Authors:  A H Dachman; P M MacEneaney; A Adedipe; M Carlin; L P Schumm
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3.  Malignant liver tumors treated with MR imaging-guided laser-induced thermotherapy: experience with complications in 899 patients (2,520 lesions).

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4.  Laser thermal ablation in the treatment of small hepatocellular carcinoma: results in 74 patients.

Authors:  C M Pacella; G Bizzarri; F Magnolfi; P Cecconi; B Caspani; V Anelli; A Bianchini; D Valle; S Pacella; G Manenti; Z Rossi
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5.  Dynamic intrahepatic flow and cellular alterations during radiofrequency ablation of liver tissue in mice.

Authors:  J B Kruskal; B Oliver; J C Huertas; S N Goldberg
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6.  Colorectal carcinoma metastases in liver: laser-induced interstitial thermotherapy--local tumor control rate and survival data.

Authors:  Thomas J Vogl; Ralf Straub; Katrin Eichler; Oliver Söllner; Martin G Mack
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7.  Malignant liver tumors treated with MR imaging-guided laser-induced thermotherapy: technique and prospective results.

Authors:  T J Vogl; P K Müller; R Hammerstingl; N Weinhold; M G Mack; C Philipp; M Deimling; J Beuthan; W Pegios; H Riess
Journal:  Radiology       Date:  1995-07       Impact factor: 11.105

8.  Volumetric evaluation of liver metastases after thermal ablation: long-term results following MR-guided laser-induced thermotherapy.

Authors:  Thomas J Vogl; Nagy N N Naguib; Katrin Eichler; Thomas Lehnert; Hanns Ackermann; Martin G Mack
Journal:  Radiology       Date:  2008-09-23       Impact factor: 11.105

9.  Laser ablation of liver metastases from colorectal cancer with MR thermometry: 5-year survival.

Authors:  Ralf Puls; Soenke Langner; Christian Rosenberg; Katrin Hegenscheid; Jens Peter Kuehn; Kai Noeckler; Norbert Hosten
Journal:  J Vasc Interv Radiol       Date:  2008-12-24       Impact factor: 3.464

10.  Improved coagulation with saline solution pretreatment during radiofrequency tumor ablation in a canine model.

Authors:  Muneeb Ahmed; S Melvyn Lobo; Joseph Weinstein; Jonathan B Kruskal; G Scott Gazelle; Elkan F Halpern; S Karim Afzal; Robert E Lenkinski; S Nahum Goldberg
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3.  Early MRI Characteristics after MRI-Guided Laser-Assisted Cingulotomy for Intractable Pain Control.

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Review 4.  Laser Interstitial Thermal Therapy for Epilepsy.

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Review 5.  Shedding light on neurons: optical approaches for neuromodulation.

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Review 6.  Image-guided percutaneous ablation therapies for local recurrences of thyroid tumors.

Authors:  C M Pacella; E Papini
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7.  Laser ablation for small hepatocellular carcinoma.

Authors:  Claudio Maurizio Pacella; Giampiero Francica; Giovanni Giuseppe Di Costanzo
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8.  Temperature feedback-controlled photothermal treatment with diffusing applicator: theoretical and experimental evaluations.

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9.  Endoscopic ultrasound-guided inoculation of transmissible venereal tumor in the colon: A large animal model for colon neoplasia.

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Review 10.  Laser application in neurosurgery.

Authors:  Evgenii Belykh; Kaan Yagmurlu; Nikolay L Martirosyan; Ting Lei; Mohammadhassan Izadyyazdanabadi; Kashif M Malik; Vadim A Byvaltsev; Peter Nakaji; Mark C Preul
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