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Teresa L Bruno

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Articles 31
Citations 143
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Recent Articles
1.
Wang L, Ding Y, Bruno T, Stafford R, Lin E, Bathala T, et al.
Cancers (Basel) . 2024 May; 16(10). PMID: 38792000
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...
2.
Sanders J, Tang C, Kudchadker R, Venkatesan A, Mok H, Hanania A, et al.
Brachytherapy . 2023 Sep; 22(6):822-832. PMID: 37716820
Purpose: Uncertainties in postimplant quality assessment (QA) for low-dose-rate prostate brachytherapy (LDRPBT) are introduced at two steps: seed localization and contouring. We quantified how interobserver variability (IoV) introduced in both...
3.
Sanders J, Mok H, Hanania A, Venkatesan A, Tang C, Bruno T, et al.
Radiother Oncol . 2022 Jan; 169:132-139. PMID: 34979213
Background And Purpose: Comparing deep learning (DL) algorithms to human interobserver variability, one of the largest sources of noise in human-performed annotations, is necessary to inform the clinical application, use,...
4.
Sanders J, Mok H, Hanania A, Venkatesan A, Tang C, Bruno T, et al.
Radiother Oncol . 2021 Dec; 169:124-131. PMID: 34921895
Background And Purpose: Quantifying the interobserver variability (IoV) of prostate and periprostatic anatomy delineation on prostate MRI is necessary to inform its use for treatment planning, treatment delivery, and treatment...
5.
Sanders J, Venkatesan A, Levitt C, Bathala T, Kudchadker R, Tang C, et al.
Int J Radiat Oncol Biol Phys . 2020 Sep; 109(2):614-625. PMID: 32980498
Purpose: To investigate fully balanced steady-state free precession (bSSFP) with optimized acquisition protocols for magnetic resonance imaging (MRI)-based postimplant quality assessment of low-dose-rate (LDR) prostate brachytherapy without an endorectal coil...
6.
Mesko S, Chapman B, Tang C, Kudchadker R, Bruno T, Sanders J, et al.
Brachytherapy . 2020 Sep; 19(6):738-745. PMID: 32952054
Purpose: Despite a preponderance of data demonstrating strong clinical outcomes and cost-effectiveness, prostate brachytherapy use and competency continue to decline. Enhanced resident education may help reverse this trend. We therefore...
7.
Sanders J, Lewis G, Thames H, Kudchadker R, Venkatesan A, Bruno T, et al.
Int J Radiat Oncol Biol Phys . 2020 Jul; 108(5):1292-1303. PMID: 32634543
Purpose: To investigate machine segmentation of pelvic anatomy in magnetic resonance imaging (MRI)-assisted radiosurgery (MARS) for prostate cancer using prostate brachytherapy MRIs acquired with different pulse sequences and image contrasts....
8.
Bathala T, Venkatesan A, Ma J, Bhosale P, Wei W, Kudchadker R, et al.
Brachytherapy . 2020 May; 19(4):484-490. PMID: 32402544
Purpose: The purpose of this study was to compare an isotropic three-dimensional (3D) T2-weighted sequence sampling perfection with application-optimized contrasts by using flip angle evolution (SPACE) with an axial two-dimensional...
9.
Ning M, Vedam S, Ma J, Stafford R, Bruno T, Cunningham M, et al.
Brachytherapy . 2020 Apr; 19(3):305-315. PMID: 32265119
Purpose: The purpose of this study was to investigate the utility of a novel MRI-positive line marker, composed of C4:S (cobalt chloride-based contrast agent) encapsulated in high-density polyethylene tubing, in...
10.
Hanania A, Kudchadker R, Bruno T, Tang C, Anscher M, Frank S
Brachytherapy . 2019 Dec; 19(1):38-42. PMID: 31812590
Purpose: We sought to develop an activity nomogram for magnetic resonance (MR)-planned permanent seed prostate brachytherapy to improve quality assurance through a secondary dosimetric check. Methods And Materials: Patients undergoing...