目的研究脑白质病变与动脉粥样硬化的关系。
Objective To investigate the correlation between leukoencephalopathy and atherosclerosis.
片示轻度的非特异性的室周白质病变和弥漫性的脑萎缩。
There is mild nonspecific periventricular white matter disease and diffuse cerebral atrophy.
WMH是脑mri扫描中经常看到的老年人脑白质病变区域。
WMH are diseased areas of the white matter seen commonly in brain MRI scans in the elderly.
舒张期颈动脉壁剪切应力与脑梗死和脑室周围白质病变有关。
Coronary Artery Wall Shear Stress is Associated With Progression and Transformation of Atherosclerotic Plaque and Arterial Remodeling in Patients With Coronary Artery Disease.
家系中带有突变基因的无症状低龄患者显示双侧对称的前颞叶白质病变。
The youngest asymptomatic patient in the family showed symmetric lesions of the white matter in anterior temporal lobe.
在白种人中,IL 6基因的共同单倍型与白质病变或大脑梗塞具有明显的相关性。
In Whites, common haplotypes of the IL6 gene were significantly associated with WML and BI.
在斑片状的白质病变内出血出血提示急性出血性脑脊髓炎的诊断,这可以与ADEM和ANE相鉴别。
The presence of hemorrhage in patchy cerebral white matter lesions instead suggests the diagnosis of Acute Hemorrhagic Encephalomyelitis, which is distinct from ANE and ADEM.
结果——血浆中c反应蛋白和IL - 6水平与两种人种中出现的白质病变或大脑梗塞之间具有相关性。
Results - Plasma IL6 and CRP levels were associated with presence of WML and BI in both RACES.
即使是在患者表现出精神认知障碍这一类症状之前,患者脑部就已近发生了变化,比如脑部的粘性病变或者神经内部的蛋白质无规则缠绕都会在患者表现出症状之前提前发生。
Even before this mild cognitive impairment shows up, brain changes such as a buildup of sticky plaque or protein tangles inside nerves can suggest trouble ahead.
上述的这种能力使RNAi具有一种针对包括癌症在内的许多疾病的潜在修复能力,而这些疾病常常是由病变细胞产生过量的日常蛋白质所致。
That ability makes RNAi a potential fix for many diseases, including cancer, that arise when abnormal cells produce excessive amounts of everyday proteins.
目的探讨磁化传递成像(MTI)方法及其在判断脑部多发性硬化患者正常表现脑白质内微观病变中的价值。
Objective To explore the value of magnetization transfer imaging (MTI) in judging microscopic lesions in normal appearing white matter of multiple sclerosis (MS).
在多发性硬化小鼠模型的身上,他们用药物阻断这些蛋白质中的两种蛋白,病变小鼠得到显著改善。
When they tested drugs that block two of these proteins in a mouse model of multiple sclerosis, the mice improved dramatically.
PM L病变见于脑和小脑的白质和皮质-白质交界处。
PML lesions are found in white matter and at the corticomedullary junction of cerebral and cerebellar cortex.
小动脉病变导致的白质纤维脱髓鞘是发生白质疏松的主要原因之一。
Demyelination of white matter fibers caused by arteriopathy is one of the major causes of leukoaraiosis.
其它改变,伴桥脑梗塞5例,小脑梗塞3例,大脑半球及底节梗塞8例,额顶叶脑白质脱髓鞘病变6例。
Others, Pons infarction in 5 cases, cerebellar infarction in 3 cases, cerebral hemisphere or base ganglion infarction in 8 cases, and leukoencephalopathy in 6 cases.
蛋白质组学技术为研究视网膜生理活动规律和疾病病变机制提供了一个新的研究平台。
Proteomics techniques have paved the way for the studies of the physiological regularity of retinal cells and the mechanisms of retinal diseases.
图1:轴位的平扫ct显示对称性的低密度影在颞枕叶脑白质区,需要注意的是病变累及胼胝体的压部。
Figure 1: Axial non contrast CT demonstrates symmetric low attenuation in the temporal-parietal white matter. Note involvement of the splenium of the corpus callosum (red arrows).
结果(1)CT和MRI显示病变位于双侧小脑、内囊后肢、枕顶叶深部等部位白质,病灶广泛且对称;
Results 1. CT and MRI showed extensive and symmetric lesions in white matters of bilateral cerebellum, posterior crus of internal capsule and parieto occipital region;
影像学特点为双侧、对称性后部脑白质较大范围的病变。
The imaging findings are bilateral symmetry cortical and subcortical edema in the posterior areas of the brain.
如果你有糖尿病,医生就会警告你不要摄入过多的蛋白质,因为它会使肾脏产生病变。
Some doctors warn against consuming too much protein if you have diabetes because of the strain it puts on the kidneys (many people with diabetes are at high risk for kidney disease).
PMD中不会有异常的强化,相反其他的脱髓鞘病变如肾上腺脑白质营养不良症其外周活动性的脱髓鞘病变可以强化。
Abnormal enhancement is not seen in PMD as opposed to some demyelinating disorders such as adrenal leukodystrophy in which enhancement is seen at the periphery of the active demyelination.
MR影像显示双侧大脑半球多发、散在的病变,Flair序列上高信号,主要累及深部白质、右侧小脑中脚、脑桥。
MR imaging showed multiple, scattered, FLAIR hyperintense foci in bilateral cerebral hemispheres involving deep white matter, right middle cerebellar peduncle, and pons.
MR影像显示双侧大脑半球多发、散在的病变,Flair序列上高信号,主要累及深部白质、右侧小脑中脚、脑桥。
MR imaging showed multiple, scattered, FLAIR hyperintense foci in bilateral cerebral hemispheres involving deep white matter, right middle cerebellar peduncle, and pons.
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