CLINICAL-APPLICATIONS - MRI, SPECT, AND PET

被引:91
作者
SPENCER, SS
THEODORE, WH
BERKOVIC, SF
机构
[1] Department of Neurology, Yale University School of Medicine, New Haven
[2] Clinical Epilepsy Section, Epilepsy Research Branch, National Institutes of Neurological Disorders and Stroke, Bethesda
[3] Department of Neurology, The Austin Hospital, Heidelberg, Vic.
关键词
EPILEPSY; IMAGING; LOCALIZATION; MRI; SPECT; PET;
D O I
10.1016/0730-725X(95)02021-K
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
MRI, PET,and SPECT are all used to image abnormalities in the epileptic brain. Comparison of the techniques is difficult because they measure different aspects of the epileptic process - structure, metabolism, and perfusion. SPECT is the only one that can be systematically applied during seizures, while all three are used to image interictal abnormalities. Literature review suggests that of interictal techniques, PET has the highest diagnostic sensitivity in temporal lobe epilepsy (TLE) (84% vs. 66% for SPECT, 55% for qualitative MRI, 71% for quantitative MRI) while SPECT has the highest sensitivity in extratemporal epilepsy (ETE) (60% vs. 43% for MRI and 33% for PET). The highest diagnostic sensitivity and specificity were achieved by ictal imaging with SPECT (90% in TLE, 81% in ETE). The techniques, however, were not always redundant. One reason for the wide discrepancy of results in TLE and ETE might be the differing pathologic substrates. A literature review of imaging findings associated with mesial temporal sclerosis(MTS), developmental lesion or tumor as the underlying abnormality associated with epilepsy supports this explanation. PET and MRI are much more sensitive to MTS than SPECT (100%, 95% vs. 70%). On the other hand,in developmental lesions the three techniques are equally sensitive (88-92%) and in tumors, MRI was most sensitive(96%) and SPECT least (82%). A study at NIH explains the differing sensitivities: using PET to measure both blood flow and metabolism revealed discrepant findings in the same patients. Preliminary evidence also indicates that the distribution of hyperperfusion on ictal SPECT can differentiate subtypes of TLE. Combining the results of refined imaging techniques holds great promise in epilepsy localization and diagnosis.
引用
收藏
页码:1119 / 1124
页数:6
相关论文
共 31 条
  • [1] Spencer, The relative contributions of MRI, SPECT, and PET imaging in epilepsy, Epilepsia, 35, pp. S72-S89, (1994)
  • [2] Hajek, Siegel, Haldemann, von Schulthess, Wieser, Value of HMPAO-SPECT in selective temporal lobe surgery for epilepsy, J. Epilepsy, 4, pp. 43-51, (1991)
  • [3] Markand, Shen, Park, Siddiqui, Wellman, Worth, Single photon imaging computed tomography (SPECT) for localization of epileptogenic focus in patients with intractable complex partial seizures, Epilepsy Res. (Suppl.), 5, pp. 121-126, (1992)
  • [4] Marks, Katz, Hoffer, Spencer, Localization of extratemporal epileptic foci during ictal single photon emission computed tomography, Ann. Neurol., 31, pp. 250-255, (1992)
  • [5] Newton, Berkovic, Austin, Reutens, McKay, Bladin, A postictal switch in blood flow distribution characterizes human temporal lobe seizures, J. Neurol. Neurosurg. Psychiatry, 55, (1992)
  • [6] Rowe, Berkovic, Sia, Austin, McKay, Kalnins, Bladin, Localization of epileptic foci with postictal single photon emission computed tomography, Ann. Neurol., 26, pp. 660-668, (1989)
  • [7] Shen, Lee, Park, Siddiqui, Wellmann, Worth, Markand, HIPDM-SPECT brain imaging in the presurgical evaluation of patients with intractable seizures, J. Nucl. Med., 31, pp. 1280-1284, (1990)
  • [8] Chugani, Shields, Shewmon, Olson, Phelps, Peacock, Infantile spasms: I. PET identifies focal cortical dysgenesis in cryptogenic cases for surgical treatment, Ann. Neurol., 24, pp. 406-413, (1990)
  • [9] Sackellares, Siegel, Abou-Khalil, Hood, Gilman, McKeever, Hichwa, Hutchins, Differences between lateral and mesial temporal metabolism interictally in epilepsy of mesial temporal origin, Neurology, 40, pp. 1420-1426, (1990)
  • [10] Stefan, Bauer, Feistel, Schulemann, Neubauer, Wenzel, Wolf, Neundorfer, Huk, Regional cerebral blood flow during focal seizures of temporal and frontocentral onset, Ann. Neurol., 27, pp. 162-166, (1990)