By Jin Woo Chang, Yoichi Katayama, Takamitsu Yamamoto
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Extra resources for Advances in Functional and Reparative Neurosurgery (Acta Neurochirurgica Supplementum)
2-fold showed the clearest change in MSD between the STN and the pars reticulata of substantia nigra. MSD analysis by semimicroelectrode recording represents the most practical means of identifying the boundaries of STN. Keywords: Parkinson’s disease; deep brain stimulation; subthalamic nucleus; substantia nigra, microelectrode; semimicroelectrode. boundary of the STN and entered the pars reticulata of substantia nigra (SNr). We have been employing semimicroelectrode recording [4, 6, 11, 12] for many years to reﬁne anatomical targeting.
The improvement rates in score on the BMFDRS of various types of dystonia including primary or secondary as well as generalized or focal varieties reported in the literature have a wide range. An excellent effect was reported especially in DYT1 . Eltahawy HA and his colleagues  indicated that primary dystonia responds much better than secondary dystonia to pallidal procedure. Also, they mentioned that the presence of basal ganglia abnormalities demonstrated by preoperative MRI is an indicator of a poor response to pallidal intervention for dystonia.
25 mm increment was averaged in each structure, and used for the comparison between the IC or ZI, the STN, and the SNr. The data are expressed as the mean Æ standard deviation. For statistical analysis, Mann-Whitney’s U test was used for comparison of MSD. 05, the difference was considered to be signiﬁcant. This study was approved by the institutional committee for clinical research on humans. 0-fold the level in the IC or ZI, T. Kano et al. Fig. 2. Representative example of changes in the MSD at STN.
Advances in Functional and Reparative Neurosurgery (Acta Neurochirurgica Supplementum) by Jin Woo Chang, Yoichi Katayama, Takamitsu Yamamoto