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temporal lobe相关的网络例句

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与 temporal lobe 相关的网络例句 [注:此内容来源于网络,仅供参考]

One view, that episodic memory and semantic memory are both dependent on the integrity of medial temporal lobe and midline diencephalic structures, predicts that amnesic patients with medial temporal lobe/diencephalic damage should be proportionately impaired in both episodic and semantic memory.

一种观点认为,情节记忆和语义记忆都依赖颞叶内部和间脑中线结构,预言颞叶内部、间脑损伤的健忘症病人的情节和语义记忆会相应比例地被削弱。

One view, that episodic memory and semantic memory are both dependent on the integrity of medial temporal lobe and midline diencephalic structures, predicts that amnesic patients with medial temporal lobe/diencephalic damage should be proportionately impaired in both episodic and semantic memory.

一种观点认为,情节记忆和语义记忆都依赖颞叶内部和间脑中线结构,预言颞叶内部、间脑损伤的失忆症病人的情节和语义记忆会相应比例地被削弱。

Compared to normal controls, it was found that the hippocampus, temporal pole, frontal lobe, temporal lobe, putamen and precuneus exhibited more significant functional connectivity with posterior cingulate cortex in TLE.

研究发现,与正常对照相比,TLE静息时海马、颞极、额叶、颞叶、壳核及楔前叶等脑区与后扣带回的功能连接增强。

One-sample t test was used in profoundly congenital hearing loss infants and control group,the activated brain areas were:bilateral transverse temporal gyri, superior temporal gyrus,middle temporal gyrus,bilateral insular lobe,bilateral precentral gyrus,postcentral gyrus,bilateral cingulate gyrus,bilateral inferior parietal lobule,bilateral superior parietal lobule,bilateral superior frontal gyrus.

在对极重度感音神经性耳聋患儿和对照组进行组间比较发现,病人组数据减去对照组数据时可见激活的脑区主要有:双侧颞横回、双侧颞上回、双侧颞中回、双侧岛叶、双侧中央前、后回、双侧扣带回、双侧顶下小叶、双侧顶上小叶、双侧额上回等,提示极重度感音神经性耳聋患儿在接受刺激后动用了更多的脑区而且激活强度明显增加。

Right postcentral gyrus of frontal lobe(BA2,BA1),left inferior frontal gyrus(BA47),postcentral gyrus(BA43),right inferior parietal lobule(BA40),left superior temporal gyrus(BA22) and right insular(BA13) were evoked by twisting Shenmen point;Left inferior parietal lobule(BA40),right inferior frontal gyrus(BA45,BA46),left medial temporal gyrus and medial temporal gyrus(BA37) and left superior frontal gyrus(BA10) were evoked by twisting Yanglao point.

神门穴主要激活了右侧额叶的中央后回BA2、BA1,左侧额下回BA47和中央后回BA43,其次为右侧顶叶的顶下小叶BA40,左侧颞叶的颞上回BA22,右侧脑岛BA40;养老穴主要激活了左顶叶的顶下小叶BA40,右侧额叶的额下回BA45、BA46,其次为左侧颞中回、颞下回BA37,左额上回BA10。

Uncertain temporal relations can be represented and reasoned by IA. IA has strong expressive ability in tense, and it can represent all natural temporal relations. At the same time, temporal relation represented by IA is highly visual and comprehensive. In additional, IA has been extended from one-dimension temporal area to two-dimension spatial area, that is to say, interval algebra can be developed to rectangle algebra for two-dimension reasoning.

用区间代数能表示不确定的时态关系,可以很方便地用于时态推理,表达能力强;时态关系的区间表示比较直观,可理解性强;同时区间代数可以进一步扩展到二维空间领域,即将区间代数拓展为矩阵代数,实现二维空间推理。

Results reveal that the spatial correlation properties of MIMO channel are dependent on the PAS, the antenna pattern and the geometric configuration of the array. When the PASs at the base station and the mobile station are independent, the spatial correlation matrix of the MIMO channel is the Kronecker product of the spatial correlation matrix at the BS and the MS. The temporal correlation properties of the MIMO channel are determined by the PAS at the MS, antenna pattern and the traveling speed of the MS. Based on the analysis of the physical essence, the temporal correlation properties are equivalent to the spatial correlation properties at the MS. The joint spatio-temporal correlation properties at the BS and the MS are quite different. When the PASs at the BS and the MS are independent, the spatial correlation at the BS is independent on the temporal correlation, but this is not true for the spatial correlation at the MS.

分析与计算的结果表明,MIMO信道的空间相关特性由角度谱、阵元的方向图、阵元间距以及阵列几何结构决定,并且当发射端与接收端的空间统计特性相互独立时,MIMO信道的空间相关矩阵可以表示为发射阵列空间相关矩阵与接收阵列空间相关矩阵的Kronecker乘积:信道的时间相关仅与MS端的角度谱、阵元方向图以及MS的运动速度有关,通过对信道时间相关的物理本质的研究,说明了时间相关与MS端空间相关的等价性;MIMO信道的空-时联合相关特性在BS端和MS端具有不同的特点,当发射端与接收端的空间统计特性相互独立时,BS端的空间相关与时间相关是独立的,而由于信道的时间相关与MS端的空间相关具有相同的物理本质,MS端的空间相关与时间相关不是独立的。

Taking Changling County, Zhenlai County and Da'an City of Jilin Province as researchareas, based on remote sensing data, graphics operation and spatial analysis are carried out indifferent points of views, including temporal, spatial, scale and landscapeetc; all aspects analysis of this dissertation are abstractively expressed by digital graphics andseries of curves which are not stick to one pattern to discussing multi-dimension andcomplicated attributes of the salinized process. Linking up temporal-spatial characteristicswith landscape indices while combining mathematics model and Geo-informatic TUPUmodel, this dissertation puts forward the fundamental frame: temporal-spatial evolvementpattern, spatial extension process analysis and landscape characteristics analysis of salinizedland. Temporal-spatial evolvement pattern analysis extracts the essential quantity features andtransformation modes of salinized land, and also analyzes patches spatial geometricalparameters scale feature; spatial extending process analysis discusses the change rate andecological modes; landscape feature analysis utilizes landscape graphics indices to describesalinized land microcosmic graphics features and changes.

信息图谱模型为土地盐碱化研究提供了一种谱系化、定量化与定位化相结合的研究方法,本文选取吉林省西部盐碱化典型区域长岭县、镇赉县、大安市作为研究区,以遥感影像为基础数据,在GIS技术支持下,从时空变化、尺度效应、景观特征等多个角度对盐碱化土地进行图形运算、空间分析,通过不拘一格的数字化图形、曲线系列抽象表达出不同维度上的特征与规律,探讨土地盐碱化过程的多维性与复杂性,将盐碱化土地时空特征与景观特征衔接、数学模型与图谱模型结合,以盐碱化土地时空演变基本模式、空间扩展过程和景观特征分析为框架构建盐碱化土地信息图谱模型研究体系,发挥图谱模型数据挖掘、知识发现的特长,将宏观动态变化与微观特征相联系,进一步挖掘土地盐碱化过程与人类活动影响的关系,为探索研究区盐碱化土地成因、过程,预测其未来发展变化趋势及其对环境影响提供相关科学依据。

Methods Twelve patients with open maxillary or frontal sinus defects have been repaired with this type of flap. The homolateral superficial temporal vessels were used as nutritional vein to form the temporal fascia island flap of the top superficial temporal artery and the island skin flap of the frontal superficial temporal artery.

对上颌窦、额窦开放性缺损12例患者,利用同侧颞浅动脉、静脉作为供养血管,形成颞浅动脉顶支颞筋膜岛状组织瓣和额支额部岛状皮瓣,通过皮下组织隧道将组织块移植到缺损的副鼻窦区,进行副鼻窦窦腔的充填和皮肤缺损的修复。

We found late magnetic reaction waves in two hemisphere of these volunteers by hearing animal's names and plant's names and the left hemisphere waves were much differentiate than that of right hemisphere. The results showed that Sensory's area is located at middle temporal gyrus, superior temporal gyrus and supramarginal gyrus.Conclusions: Sensory's area of Chinese people coincidence with the classic language center, that is, Sensory's area of Chinese people is located at middle temporal gyrus,superior temporal gyrus and supramarginal gyrus.

结果:所有受试者听动脉名称、植物名称均在双侧大脑半球诱发出明显的晚发磁反应波,其中左侧大脑半球磁反应波分化较右侧大脑半球好,听觉性语言中枢定位于左侧颞中回、颞上回、缘上回,结论:母语为汉语的正常人听觉性语言中枢与经典的语言中枢基本相符,即听觉性语言中枢定位于左侧颞中回、颞上回、缘上回。

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