预测经皮微压缩球囊形状:对 Meckel 氏腔成像和球囊形态的观察性对比分析。
Predicting balloon shape in percutaneous microcompression : an observational comparative analysis of Meckel's cave imaging and balloon morphology.
机构信息
Department of Neurosurgery, The Second Hospital of Hebei Medical University, 215# Heping Road, Shijiazhuang City, 050000, Hebei Province, China.
Department of Neurosurgery, Hebei General Hospital, Shijiazhuang City, Hebei Province, China.
出版信息
Neurosurg Rev. 2024 May 9;47(1):198. doi: 10.1007/s10143-024-02382-4.
Achieving a pear-shaped balloon holds pivotal significance in the context of successful percutaneous microcompression procedures for trigeminal neuralgia. However, inflated balloons may assume various configurations, whether it is inserted into Meckel's cave or not. The absence of an objective evaluation metric has become apparent. To investigate the relationship between the morphology of Meckel's Cave and the balloon used in percutaneous microcompression for trigeminal neuralgia and establish objective criteria for assessing balloon shape in percutaneous microcompression procedures. This retrospective study included 58 consecutive patients with primary trigeminal neuralgia. Data included demographic, clinical outcomes, and morphological features of Meckel's cave and the balloon obtained from MRI and Dyna-CT imaging. MRI of Meckel's cave and Dyna-CT of intraoperative balloon were modeled, and the morphological characteristics and correlation were analyzed. The reconstructed balloon presented a fuller morphology expanding outward and upward on the basis of Meckel's cave. The projected area of balloon was strongly positively correlated with the projected area of Meckel's cave. The Pearson correlation coefficients were 0.812 (P<0.001) for axial view, 0.898 (P<0.001) for sagittal view and 0.813 (P<0.001) for coronal view. Similarity analysis showed that the sagittal projection image of Meckel's cave and that of the balloon had good similarity. This study reveals that the balloon in percutaneous microcompression essentially represents an expanded morphology of Meckel's cave, extending outward and upward. There is a strong positive correlation between the volume and projected area of the balloon and that of Meckel's cave. Notably, the sagittal projection image of Meckel's cave serves as a reliable predictor of the intraoperative balloon shape. This method has a certain generalizability and can help providing objective criteria for judging balloon shape during percutaneous microcompression procedures.
实现梨形球囊在三叉神经痛经皮微压缩治疗中至关重要。然而,膨胀的球囊可能呈现出不同的形态,无论其是否插入 Meckel 氏腔。目前缺乏客观的评估指标已经变得很明显。研究目的在于探讨三叉神经痛经皮微压缩术中 Meckel 氏腔与球囊形态之间的关系,并建立评估经皮微压缩术中球囊形态的客观标准。本回顾性研究纳入了 58 例原发性三叉神经痛患者。数据包括人口统计学、临床结果以及 MRI 和 Dyna-CT 影像学检查的 Meckel 氏腔和球囊形态特征。对 Meckel 氏腔 MRI 和术中球囊 Dyna-CT 进行了建模,并对形态特征及其相关性进行了分析。重建的球囊在 Meckel 氏腔的基础上向外和向上扩张,呈现出更加饱满的形态。球囊的投影面积与 Meckel 氏腔的投影面积呈强烈的正相关。轴向视图的 Pearson 相关系数为 0.812(P<0.001),矢状视图为 0.898(P<0.001),冠状视图为 0.813(P<0.001)。相似性分析表明, Meckel 氏腔的矢状投影图像与球囊的矢状投影图像具有良好的相似性。本研究揭示了经皮微压缩术中球囊实质上代表了 Meckel 氏腔的向外和向上扩展的形态。球囊的体积和投影面积与 Meckel 氏腔的体积和投影面积之间存在强烈的正相关。值得注意的是, Meckel 氏腔的矢状投影图像可以作为术中球囊形态的可靠预测指标。这种方法具有一定的泛化能力,可以帮助提供经皮微压缩术中球囊形态判断的客观标准。