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      Registration of human skull computed tomography data to an ultrasound treatment space using a sparse high frequency ultrasound hemispherical array

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          Abstract

          Purpose:

          Transcranial focused ultrasound (FUS) shows great promise for a range of therapeutic applications in the brain. Current clinical investigations rely on the use of magnetic resonance imaging (MRI) to monitor treatments and for the registration of preoperative computed tomography (CT)-data to the MR images at the time of treatment to correct the sound aberrations caused by the skull. For some applications, MRI is not an appropriate choice for therapy monitoring and its cost may limit the accessibility of these treatments. An alternative approach, using high frequency ultrasound measurements to localize the skull surface and register CT data to the ultrasound treatment space, for the purposes of skull-related phase aberration correction and treatment targeting, has been developed.

          Methods:

          A prototype high frequency, hemispherical sparse array was fabricated. Pulse-echo measurements of the surface of five ex vivo human skulls were made, and the CT datasets of each skull were obtained. The acoustic data were used to rigidly register the CT-derived skull surface to the treatment space. The ultrasound-based registrations of the CT datasets were compared to the gold-standard landmark-based registrations.

          Results:

          The results show on an average sub-millimeter (0.9 ± 0.2 mm) displacement and subdegree (0.8° ± 0.4°) rotation registration errors. Numerical simulations predict that registration errors on this scale will result in a mean targeting error of 1.0 ± 0.2 mm and reduction in focal pressure of 1.0% ± 0.6% when targeting a midbrain structure (e.g., hippocampus) using a commercially available low-frequency brain prototype device (InSightec, 230 kHz brain system).

          Conclusions:

          If combined with ultrasound-based treatment monitoring techniques, this registration method could allow for the development of a low-cost transcranial FUS treatment platform to make this technology more widely available.

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          Author and article information

          Journal
          Med Phys
          Med Phys
          MPHYA6
          Medical Physics
          American Association of Physicists in Medicine
          0094-2405
          September 2016
          12 August 2016
          : 43
          : 9
          : 5063-5071
          Affiliations
          Physical Sciences Platform, Sunnybrook Research Institute , Toronto, Ontario M4N 3M5, Canada and Department of Medical Biophysics, University of Toronto , Toronto, Ontario M5G 1L7, Canada
          Physical Sciences Platform, Sunnybrook Research Institute , Toronto, Ontario M4N 3M5, Canada
          Physical Sciences Platform, Sunnybrook Research Institute , Toronto, Ontario M4N 3M5, Canada; Department of Medical Biophysics, University of Toronto , Toronto, Ontario M5G 1L7, Canada; and Institute of Biomaterials and Biomedical Engineering, University of Toronto , Toronto, Ontario M5S 3G9, Canada
          Author notes
          [a)]

          Author to whom correspondence should be addressed. Electronic mail: moreilly@ 123456sri.utoronto.ca ; Telephone: +1 416 480 5043; Fax: +1 416 480 4696.

          Article
          PMC4982873 PMC4982873 4982873 007609MPH 1.4960362 16-560R
          10.1118/1.4960362
          4982873
          27587036
          fc0c5cb5-2614-4974-92ab-ad0ae9a92346
          © 2016 American Association of Physicists in Medicine.

          0094-2405/2016/43(9)/5063/9/ $30.00

          History
          : 14 April 2016
          : 23 June 2016
          : 19 July 2016
          Page count
          Pages: 9
          Funding
          Funded by: W. Garfield Weston Foundation http://dx.doi.org/10.13039/501100000243
          Funded by: Canada Research Chairs (Chaires de recherche du Canada) http://dx.doi.org/10.13039/501100001804
          Funded by: Office of Extramural Research, National Institutes of Health (OER) http://dx.doi.org/10.13039/100006955
          Award ID: R01-EB003268
          Categories
          THERAPEUTIC INTERVENTIONS
          Research Articles
          Custom metadata

          focused ultrasound,transcranial therapy,blood–brain barrier,image registration

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