Glud Andreas Nørgaard, Bech Johannes, Tvilling Laura, Zaer Hamed, Orlowski Dariusz, Fitting Lise Moberg, Ziedler Dora, Geneser Michael, Sangill Ryan, Alstrup Aage Kristian Olsen, Bjarkam Carsten Reidies, Sørensen Jens Christian Hedemann
CENSE Group, Department of Clinical Medicine, Aarhus University, Department of Neurosurgery, Aarhus University Hospital, Denmark.
CENSE Group, Department of Clinical Medicine, Aarhus University, Department of Neurosurgery, Aarhus University Hospital, Denmark.
J Neurosci Methods. 2017 Jun 15;285:45-48. doi: 10.1016/j.jneumeth.2017.04.017. Epub 2017 May 1.
Stereotaxic neurosurgery in large animals is used widely in different sophisticated models, where precision is becoming more crucial as desired anatomical target regions are becoming smaller. Individually calculated coordinates are necessary in large animal models with cortical and subcortical anatomical differences.
We present a convenient method to make an MRI-visible skull fiducial for 3D MRI-based stereotaxic procedures in larger experimental animals. Plastic screws were filled with either copper-sulfate solution or MRI-visible paste from a commercially available cranial head marker. The screw fiducials were inserted in the animal skulls and T1 weighted MRI was performed allowing identification of the inserted skull marker.
Both types of fiducial markers were clearly visible on the MRÍs. This allows high precision in the stereotaxic space.
The use of skull bone based fiducial markers gives high precision for both targeting and evaluation of stereotaxic systems. There are no metal artifacts and the fiducial is easily removed after surgery.
The fiducial marker can be used as a very precise reference point, either for direct targeting or in evaluation of other stereotaxic systems.
大型动物的立体定向神经外科手术广泛应用于不同的复杂模型中,随着所需解剖目标区域越来越小,精度变得愈发关键。在具有皮质和皮质下解剖差异的大型动物模型中,需要单独计算坐标。
我们提出了一种简便方法,可为较大实验动物基于三维磁共振成像(MRI)的立体定向手术制作MRI可见的颅骨基准点。塑料螺钉填充硫酸铜溶液或市售颅部标记物的MRI可见糊剂。将螺钉基准点插入动物颅骨,然后进行T1加权MRI,以便识别插入的颅骨标记物。
两种类型的基准标记物在MRI上均清晰可见。这使得在立体定向空间中具有高精度。
使用基于颅骨的基准标记物可为立体定向系统的靶向和评估提供高精度。不存在金属伪影,且术后基准点易于移除。
该基准标记物可作为非常精确的参考点,用于直接靶向或评估其他立体定向系统。