Brain mapping in stereotactic surgery: A brief overview from the probabilistic targeting to the patient-based anatomic mapping

被引:45
作者
Lemaire, Jean-Jacques
Coste, Jerome
Ouchchane, Lemlih
Caire, Francois
Nuti, Christophe
Derost, Philippe
Cristini, Vittorio
Gabrillargues, Jean
Hemm, Simone
Durif, Franck
Chazal, Jean
机构
[1] CHU Clermont Ferrand, Hop Gabriel Montpied, Serv Neurochirurg, F-63003 Clermont Ferrand, France
[2] CHU Clermont Ferrand, Hop Gabriel Montpied, Serv Neurol, F-63003 Clermont Ferrand, France
[3] CHU Clermont Ferrand, Hop Gabriel Montpied, Serv Radiol, F-63003 Clermont Ferrand, France
[4] Univ Clermont Ferrand 1, UFR Med, Unit Biostat, F-63001 Clermont Ferrand, France
[5] CHU Liomoges, Hop Dupuytren, Serv Neurochirurg, F-87042 Limoges, France
[6] CHU St Etienne, Hop Bellevue, Serv Neurochirurg, F-42055 St Etienne, France
[7] Univ Texas Hlth Sci Ctr, Sch Hlth Informat Sci, Houston, TX USA
[8] INSERM, E216, F-63001 Clermont Ferrand, France
[9] INSERM, ERI 14, F-63001 Clermont Ferrand, France
关键词
stereotaxy; DBS; MRI; targeting; anatomy; computer-aided surgery;
D O I
10.1016/j.neuroimage.2007.05.055
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In this article, we briefly review the concept of brain mapping in stereotactic surgery taking into account recent advances in stereotactic imaging. The gold standard continues to rely on probabilistic and indirect targeting, relative to a stereotactic reference, i.e., mostly the anterior (AC) and the posterior (PC) commissures. The theoretical position of a target defined on an atlas is transposed into the stereotactic space of a patient's brain; final positioning depends on electrophysiological analysis. The method is also used to analyze final electrode or lesion position for a patient or group of patients, by projection on an atlas. Limitations are precision of definition of the AC-PC tine, probabilistic location and reliability of the electrophysiological guidance. Advances in MR imaging, as from 1.5-T machines, make stereotactic references no longer mandatory and allow an anatomic mapping based on an individual patient's brain. Direct targeting is enabled by high-quality images, an advanced anatomic knowledge and dedicated surgical software. Labeling associated with manual segmentation can help for the position analysis along non-conventional, interpolated planes. Analysis of final electrode or lesion position, for a patient or group of patients, could benefit from the concept of membership, the attribution of a weighted membership degree to a contact or a structure according to its level of involvement. In the future, more powerful MRI machines, diffusion tensor imaging, tractography and computational modeling will further the understanding of anatomy and deep brain stimulation effects. (c) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:S109 / S115
页数:7
相关论文
共 42 条
[1]  
ANDRADESOUZA YM, 2005, NEUROSURGERY, V52, P360
[2]  
ARFANKIS K, 2006, ONCOL REP, V15
[3]   Bilateral subthalamic stimulation for Parkinson's disease by using three-dimensional stereotactic magnetic resonance imaging and electrophysiological guidance [J].
Bejjani, BP ;
Dormont, D ;
Pidoux, B ;
Yelnik, J ;
Damier, P ;
Arnulf, I ;
Bonnet, AM ;
Marsault, C ;
Agid, Y ;
Philippon, J ;
Cornu, P .
JOURNAL OF NEUROSURGERY, 2000, 92 (04) :615-625
[4]   Imaging of subthalamic nucleus and ventralis intermedius of the thalamus [J].
Benabid, AL ;
Koudsie, A ;
Benazzouz, A ;
Le Bas, JF ;
Pollak, P .
MOVEMENT DISORDERS, 2002, 17 :S123-S129
[5]  
BREIT S, 2006, NEUROSURGERY S1, V58
[6]  
Caire F, 2006, NEUROCHIRURGIE, V52, P15
[7]   Deep brain stimulation for dystonia - Surgical technique [J].
Coubes, P ;
Vayssiere, N ;
El Fertit, H ;
Hemm, S ;
Cif, L ;
Kienlen, J ;
Bonafe, A ;
Frerebeau, P .
STEREOTACTIC AND FUNCTIONAL NEUROSURGERY, 2002, 78 (3-4) :183-191
[8]   Is DBS-STN appropriate to treat severe Parkinson disease in an elderly population? [J].
Derost, P.-P. ;
Ouchchane, L. ;
Morand, D. ;
Ulla, M. ;
Llorca, P.-M. ;
Barget, M. ;
Debilly, B. ;
Lemaire, J.-J. ;
Durif, F. .
NEUROLOGY, 2007, 68 (17) :1345-1355
[9]   Relevance of image fusion for target point determination in functional neurosurgery [J].
Duffner, F ;
Schiffbauer, H ;
Breit, S ;
Friese, S ;
Freudenstein, D .
ACTA NEUROCHIRURGICA, 2002, 144 (05) :445-451
[10]   An integrated computational/experimental model of tumor invasion [J].
Frieboes, HB ;
Zheng, X ;
Sun, CH ;
Tromberg, B ;
Gatenby, R ;
Cristini, V .
CANCER RESEARCH, 2006, 66 (03) :1597-1604