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News & Clinical Insights

Product updates, procurement guides and clinical perspectives on brachytherapy.

Cervical Brachytherapy: Staging, Target Delineation & Dose Constraints

Cervical Brachytherapy: Staging, Target Delineation & Dose Constraints

Master cervical brachytherapy: FIGO staging, HRCTV/IRCTV target delineation, OAR contouring, and GEC-ESTRO dose constraints (D90, D2cc, EQD2) from Rongli Electronics.

3D Image-Guided Interstitial Brachytherapy: Clinical Case Walkthrough with Video

3D Image-Guided Interstitial Brachytherapy: Clinical Case Walkthrough with Video

Watch a complete cervical cancer interstitial brachytherapy procedure — from 3D anatomical modeling and patented implant template design through CT-guided needle placement, treatment planning, and afterloader delivery.

Brachytherapy Procedure: 3D Image-Guided Clinical Workflow

Brachytherapy Procedure: 3D Image-Guided Clinical Workflow

Learn the complete 3D image-guided brachytherapy procedure — from 2D Point A/B to GEC-ESTRO 3D workflow, including applicator implantation, CT localization, target contouring, and dose evaluation.

HDR Brachytherapy: Source Physics, Dose Rates & Clinical Advantages

HDR Brachytherapy: Source Physics, Dose Rates & Clinical Advantages

Explore HDR brachytherapy physics, Ir-192 vs Co-60 source comparison, dose rate classification (LDR/MDR/HDR/PDR), and equipment specifications from Rongli Electronics.

Brachytherapy: A Technical Overview for Radiation Oncology Professionals

Brachytherapy: A Technical Overview for Radiation Oncology Professionals

Discover brachytherapy fundamentals, clinical applications, and technical considerations from Rongli Electronics, a leading manufacturer with 30+ years of expertise in HDR afterloader systems.

Offline Adaptive Planning for HDR Brachytherapy in Cervical Cancer

Offline Adaptive Planning for HDR Brachytherapy in Cervical Cancer

A 2025 study in Clinical and Translational Radiation Oncology proposes an offline adaptive brachytherapy planning method based on accumulated delivered dose — reducing bladder and rectum D2cc while preserving HR-CTV coverage.

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