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Nonfunctioning adenomas are discovered incidentally or present with mass effect such as bitemporal hemianopsia with compression of the optic chiasm, headache with hydrocephalus, hypopituitarism, and cranial nerve palsies secondary to invasion of the cavernous sinus.

无功能性的垂体腺瘤偶尔发现,或者出现肿瘤占位效应所致的临床症状,如压迫视交叉所致双颞侧偏盲,脑积水所致的头痛,垂体功能减退,以及海绵窦受侵所致的颅神经病。

The raw data was processed by using axial, coronal and double oblique multi-planar reformation; Images obtained were graded in terms of quality with a 5-point scale(5=excellent, 4=good, 3=fair, 2=poor, and 1=nondiagnostic). In grading image quality at axial MPR, The radiologic specialists focused on the subarcuate fossa, tendon of tensor tympani, facial recess, vestibular aqueduct and pyramidal eminence, In grading image quality at coronal MPR, attention was given to the scute, crista transversa, fenestra cochleae, lateral malleal ligament and snake eyes signature of cranial nerve, In the grading of the image quality at double oblique MPR, the radiologic specialists concentrated on the malleus, incus, stirrup bone, upper bony semicircular and aquaeductus fallopii, and then to implement statistical analysis. In order to choose the minimum tube current values and the maximum pitch that can satisfy the diagnosis request, image quality of axial, coronal and double oblique reformation images was compared with different tube current groups. 15 ears of volunteers were used to test the validity with the scanning parameter. Subsequently noise, MTF and dose length product were measured by phantoms in different tube current and pitch, the parameters obtained were compared and taken into statistics analysis.

扫描模式使用临床常用的颞骨螺旋扫描方式:管电压120 kV,准直宽度20×0.6 mm,视野200 mm,重建矩阵512×512,旋转时间1 s/r,重建层厚0.6 mm,重建间隔0.3 mm,分别改变管电流(380、300、200、160、120和80 mA)和螺距(0.8、1.0和1.2)进行扫描和重建,然后对颞骨进行横断面、冠状面和双斜面多平面重组,于重组后的横断层面图像上选取弓形下窝、鼓膜张肌腱、面神经隐窝、前庭导水管和锥隆起5个解剖结构,冠状面重组图像上选取盾板、横嵴、蜗窗、面神经的蛇眼征和锤骨外侧韧带5个解剖结构,双斜面重组图像上选取锤骨、砧骨、镫骨、上骨半规管和面神经管5个解剖结构,在双盲的情况下由放射学专家分别对各管电流和螺距下扫描的重组图像进行评分,随后进行统计学处理,从中筛选出满足诊断要求的最低管电流值和最大的螺距,分别采用患者25例(15耳)用该管电流值和螺距验证其可行性;然后利用模体分别测试各管电流和螺距下的图像的空间分辨率、噪声及其剂量长度积,并对测试所得参数数值进行比较和统计学处理。

It seemed thatthere was no significant difference between these two conditions.The brainmechanism of translation was investigated in Experiment 4.It was found that thecommon brain areas activated by the conversion from Chinese to English and thatfrom English to Chinese were the left gyrus frontalis medius and the gyrus fusiformis.

实验4考察了双语词汇的知觉表征之间进行转换的脑机制,发现中→英转换和英→中转换在脑区激活模式上存在差异,前者最大的激活区在额叶,包括双侧的额中回和左侧额下回,而后者最大的激活区在颞叶的颞中回中后部。

We didn\'t find activated points in cerebellum and deeper brain.3.Acupuncture of sham point can significantly activated BA2,6,8,13,21,37,40,44,45,47,putamen and other areas.Both the left and right side of the brain have activated points,but points on the right side are more than those on the left.Both sides of middle temporal gyms,parietal lobule,supramarginal gyms and the lentiform nucleus have obvious activated points.The activated points mainly concentrated in the cerebral cortex,the deep-activated are mainly in the putamen.4. Sham needling in sham point can significantly activate BA6, 8,9,10,18,21,37,40,43,44.The activated points are mainly distributed in the right side of the brain.The left side also has some activated points;5.In the comparasion of Acupunture and sham-needling in S J5,we find that BA8 and cerebellum have distinct regional activated points;6.In the comparasion of acupuncture in SJ5 and sham point,we find BA2 and left cerebellar regions have activated points;7.Sham needling in S J5 compared with sham point,we find BA7,8,9,18 and other areas have activated points,the main activated points are at the left brain.It is not difficult to find that the distribution of activated points are mainly in the middle brain,no obvious activated points at the temporal lobe.

结果:通过对数据的处理和分析,我们初步发现:1、外关穴真针刺能显著激活Brodmann area45、37、44、40、22、13、37、47区、海马、杏仁核、黑质等区域,小脑左侧更明显,左侧颞叶皮层激活点多于右侧,且脑部左侧深层激活点多于右侧;2、外关穴假针刺能显著激活BA46、44、41、13、40、37、19区等区域,激活点主要集中表现在大脑皮层,以颞叶为主,小脑及深部未发现明显激活点;3、非穴真针刺组结果分析初步表明,BA2、6、8、13、21、37、40、44、45、47区以及壳核等区域有激活点,大脑左、右侧均有激活点,但右侧更多,双侧颞中回、顶叶下小叶、缘上回及豆状核有明显激活点,激活点主要集中在大脑皮层,深部激活点主要在壳核;4、非穴假针刺能显著激活BA6、8、9、10、18、21、37、40、43、44区等区域有激活点,主要分布在大脑的右侧,左侧也有不少激活点,就其具体分布主要在颞叶和额叶,少部分分布在顶叶和枕叶;5、外关穴真针刺与假针刺对比发现,BA8区和小脑等区域有明显的激活点;6、外关穴真针刺与非穴真针刺对比发现BA2区、左侧小脑等区域有激活点;7、外关穴假针刺与非穴假针刺对比发现,BA7、8、9、18等区有激活点,主要反应点在左侧大脑的枕叶中回、楔叶,顶叶楔前叶及额上回、中回,就其分布不难看出主要在大脑中部,颞叶未见明显激活点。

As revealed by the voltage topographic maps and the tomographic mapping, the source location of the distinct N1 is in the occipitotemporal areas.

并且,与单纯形状知觉任务相比,图形形状和空间位置知觉任务表现枕颞区N2波幅的显著减弱,P3潜伏期的王著缩短,额区的P2波幅的显著减弱;(3)脑电地形图与高分辨率断层成象显示,两种任务的特征波N1成分均来源于双侧的枕颞皮层,表明两种任务均涉及到与物体形状识别相关的视皮层腹侧通路,而差别波dN2成分来源于左侧枕颞区,暗示特征加工的差异主要发生在左侧枕颞区。

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。

3D MDD patients showed significantly lower gray matter density than controls in right medial frontal gyrus, right temporal pole, bilateral putamen and globus pallidus, bilateral cerebellum. After treatment, gray matter density in right superior frontal gyrus, bilateral precentral gyrus, temporal pole, putamen and globus pallidus, and cerebellum in patients were still significantly lower than controls.

发作期抑郁症患者右侧额内侧回和同侧颞极、双侧壳核/苍白球和双侧小脑的灰质密度较正常人低;治疗后右侧额上回、双侧中央前回、双侧颞极、双侧壳核/苍白球和双侧小脑的灰质密度仍较正常人低。

Results During Chinese reading, the activated areas included bilateral motor area, subfrontal gyri, superior temporal gyri, and superior parietal lobule; during English reading, the activated areas were left motor area, left subfrontal gyrus, left supra temporal gyrus, left insula and bilateral cerebellum; and the Nepali task demonstrated the activation of left anterior central gyms, superior frontal gyms, superior temporal gyms.

结果:除负责视觉活动的枕叶为双侧激活,汉语任务主要激活了双侧额上回、额中回、中央前回、顶上小叶、颞上回及颞中回;英语任务主要激活了左侧额上回、中央前回、顶上小叶、颞上回、颞下回及小脑;尼泊尔语任务主要激活了左侧中央前回、额上回及颞上回。

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。

Methods: 60 patients with good temporal window and 25 patients with poor temporal window (bilateral: 8 cases, unilateral: 17 cases) were examined by TCD. Systolic velocity, mean velocity, diastolic velocity, and pulsatility index in MCA were evaluated. 6 cases out of 60 patients with good temporal window were measured in transoptical and transtemporal detecting angle by MRI.

对颞、眶窗检测信号良好的60例患者分别在2个部位测定MCA的峰值流速、平均流速、舒张末期流速和脉动指数,对其中6例行MRI检查者测量了经颞及经眶的检测角度;另对25例颞窗双侧或一侧缺如者行眶窗检测MCA。

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