Literature DB >> 27861321

Laser Interstitial Thermal Therapy Technology, Physics of Magnetic Resonance Imaging Thermometry, and Technical Considerations for Proper Catheter Placement During Magnetic Resonance Imaging-Guided Laser Interstitial Thermal Therapy.

Nitesh V Patel1, Matthew Mian, R Jason Stafford, Brian V Nahed, Jon T Willie, Robert E Gross, Shabbar F Danish.   

Abstract

Laser-induced thermal therapy has become a powerful tool in the neurosurgical armamentarium. The physics of laser therapy are complex, but a sound understanding of this topic is clinically relevant, as many centers have incorporated it into their treatment algorithm, and educated patients are demanding consideration of its use for their disease. Laser ablation has been used for a wide array of intracranial lesions. Laser catheter placement is guided by stereotactic planning; however, as the procedure has popularized, the number of ways in which the catheter can be inserted has also increased. There are many technical nuances for laser placement, and, to date, there is not a clear understanding of whether any one technique is better than the other. In this review, we describe the basic physics of magnetic resonance-guided laser-induced thermal therapy and describe the several common techniques for accurate Visualase laser catheter placement in a stepwise fashion. ABBREVIATIONS: MRg-LITT, magnetic resonance-guided laser-induced thermal therapyPAD, precision aiming device.

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Mesh:

Year:  2016        PMID: 27861321     DOI: 10.1227/NEU.0000000000001440

Source DB:  PubMed          Journal:  Neurosurgery        ISSN: 0148-396X            Impact factor:   4.654


  6 in total

1.  Current clinical management of patients with glioblastoma.

Authors:  Stephen Lowe; Krishna P Bhat; Adriana Olar
Journal:  Cancer Rep (Hoboken)       Date:  2019-09-04

2.  Magnetic resonance imaging analysis predicts nanoparticle concentration delivered to the brain parenchyma.

Authors:  Michael Plaksin; Tiran Bercovici; Gabriella Gabi Sat Toltsis; Javier Grinfeld; Boaz Shapira; Yuval Zur; Rafi de Picciotto; Eyal Zadicario; Mustaffa Siddeeq; Anton Wohl; Zion Zibly; Yoav Levy; Zvi R Cohen
Journal:  Commun Biol       Date:  2022-09-15

Review 3.  Hyperthermia treatment advances for brain tumors.

Authors:  Georgios P Skandalakis; Daniel R Rivera; Caroline D Rizea; Alexandros Bouras; Joe Gerald Jesu Raj; Dominique Bozec; Constantinos G Hadjipanayis
Journal:  Int J Hyperthermia       Date:  2020-07       Impact factor: 3.914

4.  Biopsy Artifact in Laser Interstitial Thermal Therapy: A Technical Note.

Authors:  Thomas Noh; Parikshit Juvekar; Raymond Huang; Gunnar Lee; Christian T Ogasawara; Alexandra J Golby
Journal:  Front Oncol       Date:  2021-11-18       Impact factor: 6.244

Review 5.  Radiation Necrosis in Intracranial Lesions.

Authors:  Sean Munier; Elizabeth E Ginalis; Nitesh V Patel; Shabbar Danish; Simon Hanft
Journal:  Cureus       Date:  2020-04-09

6.  Magnetic resonance-guided stereotactic laser ablation therapy for the treatment of pediatric brain tumors: a multiinstitutional retrospective study.

Authors:  Elsa V Arocho-Quinones; Sean M Lew; Michael H Handler; Zulma Tovar-Spinoza; Matthew Smyth; Robert Bollo; David Donahue; M Scott Perry; Michael L Levy; David Gonda; Francesco T Mangano; Phillip B Storm; Angela V Price; Daniel E Couture; Chima Oluigbo; Ann-Christine Duhaime; Gene H Barnett; Carrie R Muh; Michael D Sather; Aria Fallah; Anthony C Wang; Sanjiv Bhatia; Kadam Patel; Sergey Tarima; Sarah Graber; Sean Huckins; Daniel M Hafez; Kavelin Rumalla; Laurie Bailey; Sabrina Shandley; Ashton Roach; Erin Alexander; Wendy Jenkins; Deki Tsering; George Price; Antonio Meola; Wendi Evanoff; Eric M Thompson; Nicholas Brandmeir
Journal:  J Neurosurg Pediatr       Date:  2020-03-27       Impact factor: 2.375

  6 in total

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