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首页> 外文期刊>Anesthesiology research and practice >Real-Time 3-Dimensional Ultrasound-Assisted Infraclavicular Brachial Plexus Catheter Placement: Implications of a New Technology
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Real-Time 3-Dimensional Ultrasound-Assisted Infraclavicular Brachial Plexus Catheter Placement: Implications of a New Technology

机译:实时三维超声辅助锁骨下臂丛臂导管置入术:一项新技术的意义

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摘要

Background. There are a variety of techniques for targeting placement of an infraclavicular blockade; these include eliciting paresthesias, nerve stimulation, and 2-dimensional (2D) ultrasound (US) guidance. Current 2D US allows direct visualization of a “flat” image of the advancing needle and neurovascular structures but without the ability to extensively analyze multidimensional data and allow for real-time manipulation. Three-dimensional (3D) ultrasonography has gained popularity and usefulness in many clinical specialties such as obstetrics and cardiology. We describe some of the potential clinical applications of 3D US in regional anesthesia.Methods. This case represents an infraclavicular catheter placement facilitated by 3D US, which demonstrates 360-degree spatial relationships of the entire anatomic region.Results. The block needle, peripheral nerve catheter, and local anesthetic diffusion were observed in multiple planes of view without manipulation of the US probe.Conclusion. Advantages of 3D US may include the ability to confirm correct needle and catheter placement prior to the injection of local anesthetic. The spread of local anesthetic along the length of the nerve can be easily observed while manipulating the 3D images in real-time by simply rotating the trackball on the US machine to provide additional information that cannot be identified with 2D US alone.
机译:背景。有多种技术可用于锁定锁骨下锁骨。这些措施包括引发感觉异常,神经刺激和二维(2D)超声(US)引导。当前的2D US可以直接可视化行进中的针和神经血管结构的“平面”图像,但不能广泛分析多维数据并进行实时处理。三维(3D)超声检查已在许多临床专业(如产科和心脏病学)中获得普及和实用。我们描述了3D US在区域麻醉中的一些潜在临床应用。该病例代表3D US促成的锁骨下导管置入,证实了整个解剖区域的360度空间关系。在没有操纵US探头的情况下,在多个视角观察到了阻滞针,周围神经导管和局部麻醉药扩散。 3D US的优势可能包括能够在注射局部麻醉剂之前确认正确的针头和导管位置。只需通过在US机器上旋转轨迹球以提供其他单独使用2D US无法识别的信息,就可以在实时操纵3D图像时轻松观察到局部麻醉剂沿神经长度的扩散。

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