Literature DB >> 14612313

Technical developments for cerebral thermal treatment: water-cooled diffusing laser fibre tips and temperature-sensitive MRI using intersecting image planes.

R J McNichols1, M Kangasniemi, A Gowda, J A Bankson, R E Price, J D Hazle.   

Abstract

The aim was to determine if water-cooled diffusing tips could produce larger and safer (better controlled) thermal lesions than non-cooled diffusing tips at 980 nm. Thermal lesions were induced in beef myocardium in vitro with and without water cooling using a 980 nm diode laser at various power levels. Seven intracerebral treatments were performed in six canines using water-cooled diffusing tips with four animals having intracerebral transmissible venereal tumours grown from inoculate. Magnetic resonance thermal imaging (MRTI)-based feedback software using a fast, radio frequency-spoiled gradient echo acquisition with two intersecting image planes was used for on-line monitoring and control of treatment and for the evaluation of in vivo laser lesion production. In cases where two-plane MRTI was employed, the maximum calculated temperature was compared in each plane. Using water-cooled tips and 400 micro m core diameter laser diffusing fibres in in vitro beef myocardium, power of up to 9.5 W was applied for 8 min without tip failure. Without cooling, tip failure occurred in under 4 min at 6 W, in under 2 min at 7 W and instantaneously at 8 W. Additionally, char accompanied lesions made with uncooled tips while cooled application resulted in only minimal char at only the highest thermal dose. Achieved lesion cross-sectional diameters in in vitro samples were up to 26.5 x 23.3 mm when water cooling was used. In canine brain and transmissible venereal tumours, up to 18.1 x 21.4 mm lesions were achieved. It is concluded that water cooling allows safe application of higher power to small core diameter diffusing tip fibres, which results in larger thermal lesions than can be achieved without cooling. Two-plane MRTI enhances on-line monitoring and feedback of thermal treatment.

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Year:  2004        PMID: 14612313     DOI: 10.1080/02656730310001611035

Source DB:  PubMed          Journal:  Int J Hyperthermia        ISSN: 0265-6736            Impact factor:   3.914


  18 in total

1.  Adaptive Real-Time Closed-Loop Temperature Control for Ultrasound Hyperthermia Using Magnetic Resonance Thermometry.

Authors:  L Sun; C M Collins; J L Schiano; M B Smith; N B Smith
Journal:  Concepts Magn Reson Part B Magn Reson Eng       Date:  2005-10-28       Impact factor: 1.176

Review 2.  Laser induced thermal therapy (LITT) for pediatric brain tumors: case-based review.

Authors:  Margaret Riordan; Zulma Tovar-Spinoza
Journal:  Transl Pediatr       Date:  2014-07

3.  Magnetic resonance temperature imaging validation of a bioheat transfer model for laser-induced thermal therapy.

Authors:  D Fuentes; C Walker; A Elliott; A Shetty; J D Hazle; R J Stafford
Journal:  Int J Hyperthermia       Date:  2011       Impact factor: 3.914

4.  Design and initial evaluation of a treatment planning software system for MRI-guided laser ablation in the brain.

Authors:  E Yeniaras; D T Fuentes; S J Fahrenholtz; J S Weinberg; F Maier; J D Hazle; R J Stafford
Journal:  Int J Comput Assist Radiol Surg       Date:  2013-10-05       Impact factor: 2.924

Review 5.  Recent advances in imaging-guided interventions for prostate cancers.

Authors:  Xia Wu; Feng Zhang; Ran Chen; Weiliang Zheng; Xiaoming Yang
Journal:  Cancer Lett       Date:  2014-04-24       Impact factor: 8.679

6.  Mild hyperthermia with magnetic resonance-guided high-intensity focused ultrasound for applications in drug delivery.

Authors:  Ari Partanen; Pavel S Yarmolenko; Antti Viitala; Sunil Appanaboyina; Dieter Haemmerich; Ashish Ranjan; Genevieve Jacobs; David Woods; Julia Enholm; Bradford J Wood; Matthew R Dreher
Journal:  Int J Hyperthermia       Date:  2012       Impact factor: 3.914

Review 7.  Magnetic Resonance-Guided Drug Delivery.

Authors:  Andrew S Mikhail; Ari Partanen; Pavel Yarmolenko; Aradhana M Venkatesan; Bradford J Wood
Journal:  Magn Reson Imaging Clin N Am       Date:  2015-07-09       Impact factor: 2.266

8.  Stereotactic laser induced thermotherapy (LITT): a novel treatment for brain lesions regrowing after radiosurgery.

Authors:  Juan Torres-Reveron; Hilarie C Tomasiewicz; Anil Shetty; Nduka M Amankulor; Veronica L Chiang
Journal:  J Neurooncol       Date:  2013-05-16       Impact factor: 4.130

9.  Thermochromic tissue-mimicking phantom for optimisation of thermal tumour ablation.

Authors:  Ayele H Negussie; Ari Partanen; Andrew S Mikhail; Sheng Xu; Nadine Abi-Jaoudeh; Subha Maruvada; Bradford J Wood
Journal:  Int J Hyperthermia       Date:  2016-04-20       Impact factor: 3.914

10.  An inverse problem approach to recovery of in vivo nanoparticle concentrations from thermal image monitoring of MR-guided laser induced thermal therapy.

Authors:  D Fuentes; A Elliott; J S Weinberg; A Shetty; J D Hazle; R J Stafford
Journal:  Ann Biomed Eng       Date:  2012-08-24       Impact factor: 3.934

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