A Novel Positive-Contrast Magnetic Resonance Imaging Line Marker for High-Dose-Rate (HDR) MRI-Assisted Radiosurgery (MARS)

Author:

Wang Li1,Ding Yao2,Bruno Teresa L.3,Stafford R. Jason4,Lin Eric1,Bathala Tharakeswara K.5,Sanders Jeremiah W.6ORCID,Ning Matthew S.3,Ma Jingfei4ORCID,Klopp Ann H.3ORCID,Venkatesan Aradhana5,Wang Jihong2,Martirosyan Karen S.7ORCID,Frank Steven J.3

Affiliation:

1. Department of Experimental Radiation Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA

2. Department of Radiation Physics, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA

3. Department of Radiation Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA

4. Department of Imaging Physics, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA

5. Department of Diagnostic Radiology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA

6. Department of Radiology, Mayo Clinic, Phoenix, AZ 85054, USA

7. Department of Physics, The University of Texas Rio Grande Valley, Brownsville, TX 78500, USA

Abstract

Magnetic resonance imaging (MRI) can facilitate accurate organ delineation and optimal dose distributions in high-dose-rate (HDR) MRI-Assisted Radiosurgery (MARS). Its use for this purpose has been limited by the lack of positive-contrast MRI markers that can clearly delineate the lumen of the HDR applicator and precisely show the path of the HDR source on T1- and T2-weighted MRI sequences. We investigated a novel MRI positive-contrast HDR brachytherapy or interventional radiotherapy line marker, C4:S, consisting of C4 (visible on T1-weighted images) complexed with saline. Longitudinal relaxation time (T1) and transverse relaxation time (T2) for C4:S were measured on a 1.5 T MRI scanner. High-density polyethylene (HDPE) tubing filled with C4:S as an HDR brachytherapy line marker was tested for visibility on T1- and T2-weighted MRI sequences in a tissue-equivalent female ultrasound training pelvis phantom. Relaxivity measurements indicated that C4:S solution had good T1-weighted contrast (relative to oil [fat] signal intensity) and good T2-weighted contrast (relative to water signal intensity) at both room temperature (relaxivity ratio > 1; r2/r1 = 1.43) and body temperature (relaxivity ratio > 1; r2/r1 = 1.38). These measurements were verified by the positive visualization of the C4:S (C4/saline 50:50) HDPE tube HDR brachytherapy line marker on both T1- and T2-weighted MRI sequences. Orientation did not affect the relaxivity of the C4:S contrast solution. C4:S encapsulated in HDPE tubing can be visualized as a positive line marker on both T1- and T2-weighted MRI sequences. MRI-guided HDR planning may be possible with these novel line markers for HDR MARS for several types of cancer.

Funder

National Institutes of Health Small Business Innovation Research

Cancer Center Support

Publisher

MDPI AG

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