Dep of Radiology, CEDIMAT, Plaza de la Salud, Santo Domingo, Republica Dominicana.
Clin Neuroradiol. 2013 Mar;23(1):11-5. doi: 10.1007/s00062-011-0127-9. Epub 2012 Jan 19.
To quantify involvement of globus pallidus and two midbrain nuclei (substantia nigra and red nucleus) in Pantothenate Kinase-Associated Neurodegeneration (PKAN).
We performed T2 and T2* weighted imaging with calculation of the corresponding relaxation times on a subset of 5 patients from a larger group of 20 patients with PKAN from the southwest part of the Dominican Republic. Examinations were carried out on a 3T scanner and included a multi-echo spin-echo as well as a multi-echo gradient echo sequence. Results were compared to a control group of 19 volunteers.
T2 and T2* weighted sequences showed abnormal signal reduction in the globus pallidus of all patients. On T2* weighted imaging, abnormal signal in the substantia nigra could reliably be detected in 75% of cases, but differentiation from normal was less reliable in T2 weighted scans. Correspondingly, relaxation times differed from normal with very high significance (p < 0.0001) in the globus pallidus, but with with less significance in the substantia nigra (p ≤ 0.03). The red nucleus was not affected.
Signal reduction in the globus pallidus, which probably is due to abnormal accumulation of iron, is severe in PKAN and can be differentiated from normal with high reliability. The substantia nigra is affected to a lesser degree, and the red nucleus is not involved. The reason for this selective susceptibility of normally iron-rich brain structures for pathological accumulation of iron remains speculative. Our quantitative results might be helpful to assess the value of an iron chelation approach to therapy.
定量研究苍白球和两个中脑核(黑质和红核)在泛酸激酶相关神经变性(PKAN)中的受累情况。
我们对来自多米尼加共和国西南部的 20 名 PKAN 患者的一个较大组的 5 名患者进行了 T2 和 T2*加权成像,并计算了相应的弛豫时间。检查在 3T 扫描仪上进行,包括多回波自旋回波和多回波梯度回波序列。结果与 19 名志愿者对照组进行了比较。
T2 和 T2加权序列显示所有患者的苍白球信号异常减少。在 T2加权成像上,75%的病例可以可靠地检测到黑质的异常信号,但在 T2 加权扫描中,与正常的区分不太可靠。相应地,弛豫时间在苍白球中与正常有非常显著的差异(p<0.0001),但在黑质中差异较小(p≤0.03)。红核不受影响。
苍白球的信号减少,可能是由于铁的异常积累,在 PKAN 中很严重,并且可以高度可靠地与正常区分开来。黑质受影响较小,红核不受影响。对于正常富含铁的脑结构对病理性铁积累的这种选择性易感性的原因仍在推测之中。我们的定量结果可能有助于评估铁螯合治疗方法的价值。