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11.
We aimed to evaluate the potential of the cerebrospinal fluid (CSF) axonal damage biomarker NfH(SMI35) in the laboratory-supported differential diagnosis of parkinsonian syndromes. Patients with idiopathic Parkinson's disease (PD; n = 22), multiple-system atrophy (MSA; n = 21), progressive supranuclear palsy (PSP; n = 21), corticobasal degeneration (CBD; n = 6), and age-matched controls (n = 45) were included. CSF levels of NfH(SMI35) were measured using ELISA. Levels of CSF NfH(SMI35) were elevated in PSP compared to PD and controls (P < 0.05 each). They were also significantly higher in MSA than in PD and controls (P < 0.05 each). NfH(SMI35) differentiated PD from PSP with a sensitivity of 76.5% and a specificity of 94.4%. Axonal damage as measured by CSF NfH(SMI35) is most prominent in the more rapidly progressive syndromes PSP and MSA as compared to PD or CBD. CSF NfH(SMI35) may therefore be of some value for the laboratory-supported differential diagnosis of atypical parkinsonian syndromes.  相似文献   
12.
研究了栀子萃取的最佳工艺条件及其挥发油中的化学成分。以L9(3^4)正交设计对超临界萃取条件进行优化,GC-MS联用技术对挥发性成分进行定性及半定量分析。结果显示:55℃,35MPa,120min的萃取条件下挥发性成分的收率最高,超临界萃取产物的主要成分为亚油酸,棕榈酸,反,反-2,4-癸二烯醛,而传统水蒸汽蒸馏工艺下主要成分为反,反-2,4-癸二烯醛。与水蒸汽蒸馏工艺相比较。超临界流体萃取工艺且有革取率高。生产周期短的优点.  相似文献   
13.
创伤性休克的液体超负荷分析   总被引:1,自引:0,他引:1  
目的 探讨创伤性休克患者发生液体超负荷的原因和治疗方法。方法 总结存活时间超过24h的286例创伤性休克患者,对休克纠正后出现全身性水肿患者进行分析,比较存活与死亡患者在伤后第1~8天的液体出入量。结果 286例创伤性休克患者中,出现水肿者262例(91.6%),存活232例(88.5%),死亡30例(11.5%)。死亡组的液体入量明显多于存活组(P〈0.05),液体出量则显著少于存活组(P〈0.05或P〈0.01)。存活组在伤后第4、5天出现液体负平衡即液体出量大于液体入量600~700mL(P〈0.05),而死亡组未出现液体负平衡现象。结论 创伤性休克的抢救过程中容易造成液体超负荷,液体出量增加甚至出现液体负平衡现象,预示着病情好转,此时只要生命体征稳定即可,不宜过分强调出入量平衡而大量补充液体。  相似文献   
14.
The presence of free immunoglobulin light chains (FLCs) in the cerebrospinal fluid (CSF) and sera of patients with human immunodeficiency virus-1 (HIV-1) infection, multiple sclerosis (MS), and neurologically healthy control individuals was investigated by paying special attention to ensure that only truly free light chains would be detected. The FLCs were extracted by specifically binding them to Sepharose-coupled anti-FLC monoclonal antibodies, and thereafter they were electrophoresed and immunoblotted with monoclonal antibodies to both light chain (LC) isotypes. A frequent occurrence of kappa and lambda FLCs was found in both CSF and sera of HIV-1 infected patients. In HIV-1 infection and in MS, the frequency of FLCs of the CSF was equal. In healthy controls, only occasional weak FLCs were observed in either CSF or serum. FLC bands of the CSF from patients with HIV-1 infection tended to be more intensive than those of the appropriately diluted sera. Both intrathecal synthesis of FLCs and their transudation from sera through the impaired blood-brain barrier (BBB) may contribute to this. Increasing severity of general HIV-1 infection was accompanied by an increase of FLC intensity in sera. A qualitative demonstration of FLC in the CSF may be meaningful only in the absence of altered BBB function.  相似文献   
15.
Eight lymphatic fluid collections were drained percutaneously. There were no immediate or late complications. Seven patients had follow-up; 1 required surgical drainage of a residual or recurrent lymphocele, and another had reaccumulated fluid in a lymphocele which was detected on autopsy. The remaining lymphatic collections responded to percutaneous drainage. Percutaneous drainage is safe and can be an effective tool in the management of lymphatic collections.  相似文献   
16.
利用电化学方法研究医用钛合金在0.9%NaCl生理盐水,模拟人工唾液,模拟人工体液中的腐蚀情况,分析腐蚀电位和腐蚀电流密度,扫面电镜观察腐蚀表面形貌,CA-A型接触角测试仪测试钛合金表面被腐蚀后接触角的变化。实验表明:钛合金在三种生理电解液中的腐蚀情况依次是:模拟人工唾液〉模拟人工体液〉0.9%NaCl生理盐水。扫面电镜观察表明,医用钛合金在0.9% NaCl生理盐水腐蚀后,表面出现了许多腐蚀孔,经模拟人体体液腐蚀后,表面变得粗糙不平整,腐蚀孔数目变化不大,钛合金经人工唾液腐蚀后,腐蚀孔数目增多,部分腐蚀孔孔径明显增大。经三种生理电解液腐蚀后,钛合金表面接触角都减小。结论:医用钛合金在人工唾液中的腐蚀最严重,在临床应用中应给予相应的防范措施。  相似文献   
17.
18.
Follicular fluids from eight patients with one ovary and from ten patients with two ovaries were investigated for bioactive inhibin, total renin, oestradiol (E2) and progesterone (P4) concentrations. Four follicular fluids were pooled per patient before assessment. All women had been stimulated similarly using a protocol including a GnRH agonist, HMG and HCG. Renin levels were significantly lower and P4 significantly higher in pools of follicular fluid from patients with one ovary, whereas inhibin and E2 concentrations were similar in both patient groups. A significant negative correlation was found in the pools of follicular fluid between inhibin and E2 in both groups. These results suggest a role for inhibin and renin in the paracrine and autocrine control of stimulated follicular development.  相似文献   
19.
HPLC analysis of the embryo-toxic fraction of human uterinefluid, collected between the 22nd and 25th days of the menstrualcycle, revealed the presence of cholic acid at high concentrations.It is suggested that cholic acid could be responsible for theembryo-toxicity of the uterine environment, which follows thereceptive period for implantation.  相似文献   
20.
Objective This study aims to question the generally accepted cerebrospinal fluid (CSF) bulk flow theory suggesting that the CSF is exclusively absorbed by the arachnoid villi and that the cause of hydrocephalus is a CSF absorption deficit. In addition, this study aims to briefly describe the new hydrodynamic concept of hydrocephalus and the rationale for endoscopic third ventriculostomy (ETV) in communicating hydrocephalus. Critique The bulk flow theory has proven incapable of explaining the pivotal mechanisms behind communicating hydrocephalus. Thus, the theory is unable to explain why the ventricles enlarge, why the CSF pressure remains normal and why some patients improve after ETV. Hydrodynamic concept of hydrocephalus Communicating hydrocephalus is caused by decreased intracranial compliance increasing the systolic pressure transmission into the brain parenchyma. The increased systolic pressure in the brain distends the brain towards the skull and simultaneously compresses the periventricular region of the brain against the ventricles. The final result is the predominant enlargement of the ventricles and narrowing of the subarachnoid space. The ETV reduces the increased systolic pressure in the brain simply by venting ventricular CSF through the stoma. The patent aqueduct in communicating hydrocephalus is too narrow to vent the CSF sufficiently.  相似文献   
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