Nieuwenhuis Eliane R, Kolenaar Barry, Hof Jurrit J, van Baarlen Joop, van Bemmel Alexander J M, Christenhusz Anke, Scheenen Tom W J, Ten Haken Bernard, de Bree Remco, Alic Lejla
Magnetic Detection and Imaging Group, Technical Medical Centre, University of Twente, 7522 NB Enschede, The Netherlands.
Department of Maxillofacial Surgery-Head and Neck Surgical Oncology, Medisch Spectrum Twente, 7512 KZ Enschede, The Netherlands.
Cancers (Basel). 2022 Jan 28;14(3):678. doi: 10.3390/cancers14030678.
A magnetic sentinel lymph node biopsy ((SLN)B) procedure has recently been shown feasible in oral cancer patients. However, a grading system is absent for proper identification and classification, and thus for clinical reporting. Based on data from eight complete magnetic SLNB procedures, we propose a provisional grading system. This grading system includes: (1) a qualitative five-point grading scale for MRI evaluation to describe iron uptake by LNs; (2) an ex vivo count of resected SLN with a magnetic probe to quantify iron amount; and (3) a qualitative five-point grading scale for histopathologic examination of excised magnetic SLNs. Most SLNs with iron uptake were identified and detected in level II. In this level, most variance in grading was seen for MRI and histopathology; MRI and medullar sinus were especially highly graded, and cortical sinus was mainly low graded. On average 82 ± 58 µg iron accumulated in harvested SLNs, and there were no significant differences in injected tracer dose (22.4 mg or 11.2 mg iron). In conclusion, a first step was taken in defining a comprehensive grading system to gain more insight into the lymphatic draining system during a magnetic SLNB procedure.
一种磁性前哨淋巴结活检((SLN)B)程序最近已被证明在口腔癌患者中是可行的。然而,目前缺乏用于正确识别和分类,以及临床报告的分级系统。基于8例完整的磁性SLNB程序的数据,我们提出了一个临时分级系统。该分级系统包括:(1)用于MRI评估的定性五点分级量表,以描述淋巴结对铁的摄取;(2)使用磁性探针进行切除的前哨淋巴结的体外计数,以量化铁含量;(3)对切除的磁性前哨淋巴结进行组织病理学检查的定性五点分级量表。大多数摄取铁的前哨淋巴结在Ⅱ区被识别和检测到。在该区域,MRI和组织病理学分级的差异最大;MRI和髓窦分级特别高,皮质窦主要为低分级。收获的前哨淋巴结平均累积铁82±58μg,注射示踪剂剂量(22.4mg或11.2mg铁)无显著差异。总之,在定义一个综合分级系统方面迈出了第一步,以便在磁性SLNB程序中更深入地了解淋巴引流系统。