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Characterization and Experimental Results of a Novel Sensor for Measuring the Contact Force From Myenteric Contractions

机译:一种新型的用于测量肌层间收缩接触力的传感器的表征和实验结果

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The intraluminal pressures and traction forces associated with the migrating motor complex are well understood; however, the contact forces directly exerted by the bowel wall on a solid, or near solid, bolus have not previously been measured. Quantifying contact forces is an important component to understanding the net force experienced by an in vivo robotic capsule endoscope. In this paper, we develop a novel sensor, the migrating motor complex force sensor (MFS), for measuring the contact force generated by the contracting myenteron of the small intestine. The MFS consists of a perfused manometer connected to four torus-shaped balloons custom formed of natural latex rubber and embedded with temperature and pressure sensors. Force exerted on the balloon causes sensor pressure change. In vivo, the MFS measures the magnitude and axial location of contact pressure exerted by the myenteron. The device is tested in vivo in a live porcine model on the middle small bowel. The mean total force per centimeter of axial length of intestine that occurred over a 16-min interval in vivo was 1.04 N·cm$^{-1}$ in the middle region of the small intestine; the measured force is in the range of theoretical values.
机译:与迁移的电动机复合体相关的腔内压力和牵引力已广为人知。然而,之前尚未测量过肠壁直接在固体或接近固体推注上施加的接触力。量化接触力是了解体内机器人胶囊型内窥镜所承受的净力的重要组成部分。在本文中,我们开发了一种新颖的传感器,即迁移电机复数力传感器(MFS),用于测量由小肠收缩性肌层产生的接触力。 MFS由一个灌注压力表组成,该压力表连接到四个由天然乳胶制成的圆环形气球,并由温度和压力传感器定制而成。施加在气球上的力会引起传感器压力变化。在体内,MFS可以测量由髓鞘施加的接触压力的大小和轴向位置。该设备在中小肠的活猪模型中进行了体内测试。在小肠的中部区域,在体内经过16分钟的时间间隔,每厘米肠轴长度的平均总力为1.04 N·cm $ ^ {-1} $;测得的力在理论值范围内。

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