Mahapatra Smruti, Balamurugan Manish, Chung Kathryn, Kuppoor Venkat, Curry Eli, Aghabaglau Fariba, Kaovasia Tarana Parvez, Acord Molly, Ainechi Ana, Kim Jeong Hun, Tshey Yohannes, Ghinda Christina Diana, Son Jennifer K, Pustavoitau Aliaksei, Tyler Betty, Robinson Shenandoah D, Theodore Nicholas, Brem Henry, Huang Judy, Manbachi Amir
Dept. of Neurosurgery - Johns Hopkins University School of Medicine, Baltimore, MD, United States.
University of Virginia, Charlottesville, VA, United States.
Proc SPIE Int Soc Opt Eng. 2021 Feb;11602. doi: 10.1117/12.2580887. Epub 2021 Feb 26.
Cotton balls are a versatile and efficient tool commonly used in neurosurgical procedures to absorb fluids and manipulate delicate tissues. However, the use of cotton balls is accompanied by the risk of accidental retention in the brain after surgery. Retained cotton balls can lead to dangerous immune responses and potential complications, such as adhesions and textilomas. In a previous study, we showed that ultrasound can be safely used to detect cotton balls in the operating area due to the distinct acoustic properties of cotton compared with the acoustic properties of surrounding tissue. In this study, we enhance the experimental setup using a 3D-printed custom depth box and a Butterfly IQ handheld ultrasound probe. Cotton balls were placed in variety of positions to evaluate size and depth detectability limits. Recorded images were then analyzed using a novel algorithm that implements recently released YOLOv4, a state-of-the-art, real-time object recognition system. As per the radiologists' opinion, the algorithm was able to detect the cotton ball correctly of the time, at approximately 32 FPS. The algorithm could accurately detect cotton balls up to 5mm in diameter, which corresponds to the size of surgical balls used by neurosurgeons, making the algorithm a promising candidate for regular intraoperative use.
棉球是神经外科手术中常用的一种多功能且高效的工具,用于吸收液体和操作精细组织。然而,使用棉球伴随着术后意外遗留在大脑中的风险。残留的棉球会引发危险的免疫反应和潜在并发症,如粘连和纺织瘤。在先前的一项研究中,我们表明,由于棉球与周围组织的声学特性不同,超声可以安全地用于检测手术区域中的棉球。在本研究中,我们使用3D打印的定制深度箱和Butterfly IQ手持式超声探头改进了实验装置。将棉球放置在各种位置,以评估尺寸和深度检测极限。然后使用一种新颖的算法对记录的图像进行分析,该算法采用了最近发布的YOLOv4,这是一种最先进的实时目标识别系统。根据放射科医生的意见,该算法能够以大约32帧每秒的速度正确检测出 的棉球。该算法能够准确检测直径达5毫米的棉球,这与神经外科医生使用的手术棉球大小相对应,使得该算法有望在常规术中使用。