Yan Wisnu Prajoko
Department of Surgery, Faculty of Medicine, Universitas Diponegoro, Semarang, Indonesia

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Sonoelastography Findings in Breast Cancer: Correlation with Molecular Subtypes and Ki-67 Expression Lydia Purna Kuntjoro; Ignatius Riwanto; Hermina Sukmaningtyas; Yan Wisnu Prajoko; Suhartono Suhartono; Lina Choridah; Endang Mahati; Clarissa Aulia Pravitha
Indonesian Journal of Cancer Vol. 20 No. 2 (2026): June
Publisher : http://dharmais.co.id/

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33371/ijoc.v20i2.1503

Abstract

Background: Strain elastography is increasingly used as a complementary imaging tool to assess suspicious breast lesions by evaluating tissue stiffness using the strain ratio and elastography score. Owing to the intertumor heterogeneity of breast cancer, this study aimed to investigate the association between elastography findings and tumor proliferation, as indicated by Ki-67 expression, across different molecular subtypes.Methods: This cross-sectional study prospectively collected data from three hospitals, including Dr. Kariadi Hospital, National Diponegoro Hospital, and Ken Saras Hospital. Patients with BI-RADS ultrasound category 4 or 5 lesions confirmed as malignant on histopathology were included. The elastography score was assessed using the Tsukuba elasticity score, while the strain ratio was calculated by comparing the strain elasticity within a lesion with that within the adjacent normal tissue. Independent t-tests and chi-square tests were employed to assess the correlation between elastography findings and gold standard tests, such as molecular subtype and immunohistochemical results. The most significant results were further evaluated for their diagnostic performance. Data were analyzed using SPSS version 25. Results: This study included 29 patients with a mean age of 52.06 ± 11.99 years. The associations between immunohistochemical markers and both the strain ratio and elastography score did not reach statistical significance, possibly due to the limited sample size. Among molecular subtypes, only luminal B demonstrated a significant association with the strain ratio (p = 0.025). Diagnostic evaluation for luminal B yielded a sensitivity of 61.1%, specificity of 81.8%, and an area under the curve (AUC) of 0.689 at a strain ratio cutoff of 4.27.Conclusions: Increased stiffness in the luminal B subtype suggests the potential of strain elastography as a noninvasive indicator of tumor behavior
Adaptive Radiotherapy (ART) versus Non-Adaptive IMRT for Locoregionally Advanced Nasopharyngeal Carcinoma: A Meta-Analysis of Dosimetric Advantages, Clinical Outcomes, and Organ-at-Risk Sparing Gina Amalia; Yan Wisnu Prajoko; Niken Puruhita
Bioscientia Medicina : Journal of Biomedicine and Translational Research Vol. 10 No. 1 (2026): Bioscientia Medicina: Journal of Biomedicine & Translational Research
Publisher : HM Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.37275/bsm.v10i1.1488

Abstract

Background: Intensity-modulated radiotherapy (IMRT) is the cornerstone of treatment for nasopharyngeal carcinoma (NPC), offering high dose conformity. However, anatomical variations during the multi-week therapy course can compromise dosimetric accuracy. Adaptive radiotherapy (ART), which adjusts the treatment plan based on intra-treatment imaging, aims to mitigate these effects. This meta-analysis synthesized contemporary comparative evidence (2014–2025) on the efficacy and safety of ART versus non-adaptive IMRT in locoregionally advanced NPC. Methods: Following PRISMA guidelines, PubMed, Embase, Scopus, and Cochrane Library were searched for studies comparing ART with non-adaptive IMRT (cohorts or hybrid/phantom plan comparisons) in locoregionally advanced NPC. Primary outcomes were locoregional recurrence-free survival (LRFS) and overall survival (OS); secondary outcomes included progression-free survival (PFS), distant metastasis-free survival (DMFS), and dosimetric metrics for targets (D98, Conformity Index [CI]) and organs-at-risk (OARs: parotid Dmean, spinal cord Dmax, brainstem Dmax). Hazard Ratios (HR) and Mean Differences (MD) were pooled using random-effects models. Data estimation methods (Tierney, Wan, Cochrane) were employed where necessary. Heterogeneity was assessed using I². Results: Nine studies (2 cohort, 7 dosimetric/anatomical) involving 362 patients (clinical) and 215 datasets (dosimetric) were included. ART significantly improved LRFS compared to non-adaptive IMRT (pooled HR = 0.53, 95% CI 0.32–0.88; I²=0%). No significant differences were found for OS (HR=0.98, 95% CI 0.64–1.50), PFS (HR=0.70, 95% CI 0.45–1.07), or DMFS (HR=0.88, 95% CI 0.48–1.62). Compared to hybrid/phantom plans, ART significantly enhanced target coverage (pooled PTV D98 MD = 2.15 Gy, 95% CI 1.10–3.20 Gy; I²=78%) and conformity (pooled CI MD = 0.05, 95% CI 0.02–0.08; I²=85%). ART significantly reduced OAR doses: parotid Dmean (pooled MD = -3.50 Gy, 95% CI -4.95 to -2.05 Gy; I²=90%), spinal cord Dmax (pooled MD = -3.95 Gy, 95% CI -5.80 to -2.10 Gy; I²=93%), and brainstem Dmax (pooled MD = -2.75 Gy, 95% CI -4.40 to -1.10 Gy; I²=91%). Dosimetric analyses exhibited high heterogeneity. Conclusion: ART significantly improves LRFS in locoregionally advanced NPC compared to non-adaptive IMRT. It provides substantial dosimetric advantages, enhancing target coverage and conformity while critically reducing doses to parotid glands, spinal cord, and brainstem. Despite high dosimetric heterogeneity and no demonstrated OS benefit, the improvements in LRFS and dose delivery support the thoughtful implementation of ART.