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Improving estimation accuracy of nasogastric tube tip position using pre data

机译:使用预数据提高鼻胃管尖端位置的估计精度

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Summary form only given. Early and chronic stroke patients tend to have trouble swallowing. To ensure that they are able to receive the required nutrition, a nasogastric tube is usually used to pour nutrients into the stomach. However, when the tube is inserted through the patient's nostril into their stomach, it may be accidentally inserted into the lungs, and this may be fatal if the nutrients are released into the lungs. To prevent this, a method to estimate the position of the tip of the tube has previously been proposed. This method involves attaching a permanent magnet to the nasogastric tube and arranging several magneto impedance (MI) sensors outside the body. We reported that when using the system shown, there is an error of less than 1 cm in the position of the permanent magnet when the distance between the MI sensor plane and the permanent magnet is less than or equal to 11 cm. However, the estimation error exceeds 1 cm when the distance exceeds 11 cm. This is believed to be due to errors in the calculation of the lead-field matrix. In other words, there is an array mismatch because of the existence of ferromagnetic materials surrounding the measurement system, e.g., beds and steel frames inside the building. In a hospital setting, because of the variety of human body sizes, the error in the estimated magnet position must be less than or equal to 1 cm even when the distance approaches 15 cm. To meet this requirement, we use pre data that are obtained by placing a permanent magnet at each position and in each direction to improve the accuracy with which the position of the permanent magnet is estimated. In this study, we apply the pre data to the minimum variance beamformer (MVBF), which is used for the MI sensor system.
机译:摘要表格仅给出。早期和慢性卒中患者往往吞咽困难。为了确保他们能够获得所需的营养,通常用于将营养物倒入胃中的鼻子管。然而,当管通过患者的鼻孔插入胃中时,它可能会意外插入肺部,如果营养物释放到肺中,这可能是致命的。为了防止这种情况,已经提出了一种估计管尖的位置的方法。该方法涉及将永磁体附接到鼻子管,并在主体外部布置几个磁阻(MI)传感器。我们报道,当使用所示系统时,当MI传感器平面和永磁体之间的距离小于或等于11cm时,在永磁体的位置时出现小于1cm的误差。但是,当距离超过11厘米时,估计误差超过1cm。这被认为是由于误差在计算铅域矩阵中。换句话说,由于围绕测量系统的围绕围绕的铁磁材料,例如,建筑物内的床和钢框架存在阵列不匹配。在医院设置,由于人体尺寸的各种尺寸,即使距离接近15厘米,估计的磁体位置中的误差也必须小于或等于1cm。为了满足该要求,我们使用通过在每个位置和每个方向上置于每个位置的永磁体而获得的预数据来提高估计永磁体的位置的精度。在这项研究中,我们将预数据应用于MI传感器系统的最小方差波束形成器(MVBF)。

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