QQ登录

只需要一步,快速开始

 注册地址  找回密码
查看: 2942|回复: 0
打印 上一主题 下一主题

[其他资源] 脑肿瘤患者基于磁共振弥散成像的宏观和微观结构测量与皮质传递的联系

[复制链接]
字体大小: 正常 放大

395

主题

3

听众

5027

积分

  • TA的每日心情

    2021-3-28 15:16
  • 签到天数: 25 天

    [LV.4]偶尔看看III

    跳转到指定楼层
    1#
    发表于 2020-12-18 11:31 |只看该作者 |倒序浏览
    |招呼Ta 关注Ta
    Towards linking diffusion MRI based macro- and microstructure measures with cortico-cortical transmission in brain tumor patients(脑肿瘤患者基于磁共振弥散成像的宏观和微观结构测量与皮质传递的联系)
    % i8 D- W/ O+ B# |5 _% {5 V' Q

    0 f( f$ L  p' t! Q       We aimed to link macro- and microstructure measures of brain white matter obtained from diffusion MRI with effective connectivity measures based on a propagation of cortico-cortical evoked potentials induced with intrasurgical
    - C9 {7 a  N2 m6 |* _  ~6 vdirect electrical stimulation. For this, we compared streamline lengths and log-transformed ratios of streamlines computed from presurgical diffusion-weighted images, and the delays and amplitudes of N1 peaks recorded intrasurgically with electrocorticography electrodes in a pilot study of 9 brain tumor patients. Our results showed positive correlation between these two modalities in the vicinity of the stimulation sites (Pearson coefficient 0.54±0.13 for N1 delays, and 0.47±0.23 for N1 amplitudes), which could correspond to the neural propagation via U-fibers. In addition, we reached high sensitivities (0.78±0.07) and very high specificities (0.93±0.03) in a binary variant of our comparison. Finally, we used the structural connectivity measures to predict the effective connectivity using a multiple linear regression model, and showed a significant role of brain microstructure-related indices in this relation.5 j* k: w9 `+ I# g5 x
    : p9 S: z! i7 @# _: H8 _
    Keywords: structural connectivity, brain white matter microstrucure, effective connectivity, cortico-cortical evoked potentials, direct electrical stimulation, tractography
    ) o) e/ E' d$ p5 j, e  W
    * Q0 Y3 [$ Q" t! f
          我们的目的是将磁共振弥散成像获得的大脑白质的宏观和微观结构测量与基于术中诱导的皮质-皮质诱发电位传播的有效连通性测量联系起来直接电刺激。为此,我们对9例脑肿瘤患者进行了初步研究,比较了术前扩散加权图像计算的流线长度和对数变换率,以及术中皮质电极记录的N1峰的延迟和振幅。我们的结果显示,在刺激部位附近,这两种方式之间存在正相关(N1延迟的Pearson系数为0.54±0.13,N1振幅为0.47±0.23),这与通过U纤维进行神经传播相对应。此外,在我们比较的二元变量中,我们达到了高灵敏度(0.78±0.07)和非常高的特异性(0.93±0.03)。最后,我们利用结构连接性测度,运用多元线性回归模型预测有效连接性,并显示脑微结构相关指标在这一关系中的重要作用。
    5 W0 b% N1 H  _; W) V% a$ m
    ) h( C9 u" W7 K0 T; X关键词:结构连通性、脑白质微结构、有效连通性、皮质诱发电位、直接电刺激、纤维束描记术. a1 Z8 D+ S* ]% c% {1 o5 g" Q, C

    : G6 X& I4 D' V0 \1 }- O

    Towards linking diffusion MRI based macro- and microstructure measures with cort.pdf

    13.56 MB, 下载次数: 0, 下载积分: 体力 -2 点

    zan
    转播转播0 分享淘帖0 分享分享0 收藏收藏0 支持支持0 反对反对0 微信微信
    您需要登录后才可以回帖 登录 | 注册地址

    qq
    收缩
    • 电话咨询

    • 04714969085
    fastpost

    关于我们| 联系我们| 诚征英才| 对外合作| 产品服务| QQ

    手机版|Archiver| |繁體中文 手机客户端  

    蒙公网安备 15010502000194号

    Powered by Discuz! X2.5   © 2001-2013 数学建模网-数学中国 ( 蒙ICP备14002410号-3 蒙BBS备-0002号 )     论坛法律顾问:王兆丰

    GMT+8, 2026-6-13 16:12 , Processed in 0.398937 second(s), 53 queries .

    回顶部