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A New Device for Fine-Needle Aspiration Cytology Consisting of a Vibrating Linear Resonant Actuator

机译:一种用于细针抽吸细胞学的新装置,包括振动线性谐振致动器

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Objective To evaluate the efficacy of a new device for fine-needle aspiration cytology (FNAC) consisting of a vibrating linear resonant actuator (LRA). Study Design Prospective clinical study. Methods The LRA frequency was optimized by visualization of the needle motion using a high-speed camera. The FNAC device consists of a vibrating motor fixed to the stopper of a 5-ml syringe and piston. Upon insertion of the syringe needle into a thyroid nodule (with the stopper attached to the syringe piston), sufficient negative pressure with 1-ml suction was maintained. Subsequently, samples were obtained using vibration generated by an LRA or an eccentric rotating mass (ERM). Surgically resected thyroid specimens from 10 patients were evaluated. The number of follicular groups required for adequate diagnosis and the number of larger follicular groups were counted. Next, 254 thyroid nodules from 187 patients were also evaluated by FNAC. The inadequacy rate was determined, and final cytology was classified according to thyroid Bethesda categories. Results The optimized LRA frequency was 155 Hz. Both the LRA and ERM devices resulted in sufficient amounts of diagnostic material and achieved low inadequacy rates. The number of large follicular groups obtained was significantly greater with the LRA device compared with the ERM device. Conclusions The vibrating device using an LRA for thyroid FNAC resulted in sufficient amounts of thyroid follicular groups and achieved low inadequacy rates. In addition, the LRA device allowed for collection of larger follicular groups sufficient to diagnose appropriate thyroid Bethesda categories. Level of Evidence 2Laryngoscope, 2020
机译:目的评价由振动线性谐振驱动器(LRA)组成的新型细针吸取细胞学(FNAC)装置的疗效。研究设计:前瞻性临床研究。方法通过高速摄像机观察针头运动,优化LRA频率。FNAC装置由一个固定在5毫升注射器塞子和活塞上的振动电机组成。将注射器针头插入甲状腺结节(塞子连接在注射器活塞上)后,保持足够的负压和1毫升的吸力。随后,使用LRA或偏心旋转质量(ERM)产生的振动获得样品。对10例患者手术切除的甲状腺标本进行评估。对充分诊断所需的卵泡群数量和较大卵泡群的数量进行计数。接下来,187名患者的254个甲状腺结节也接受了FNAC评估。确定不足率,并根据甲状腺Bethesda分类对最终细胞学进行分类。结果优化的LRA频率为155hz。LRA和ERM设备都产生了足够的诊断材料,并实现了较低的不足率。与ERM装置相比,LRA装置获得的大卵泡群数量显著增加。结论使用LRA进行甲状腺FNAC的振动装置可产生足够数量的甲状腺滤泡群,且不足率较低。此外,LRA设备允许收集更大的卵泡群,足以诊断适当的甲状腺贝塞斯达分类。2020年拉林戈内窥镜的证据水平

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