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61.
《Electromagnetic biology and medicine》2013,32(4):370-375
AbstractThere is an ongoing question regarding the structure forming capabilities of water at ambient temperatures. To probe for different structures, we studied effects in pure water following magnetic field exposures corresponding to the ion cyclotron resonance of H3O+. Included were measurements of conductivity and pH. We find that under ion cyclotron resonance (ICR) stimulation, water undergoes a transition to a form that is hydroxonium-like, with the subsequent emission of a transient 48.5?Hz magnetic signal, in the absence of any other measurable field. Our results indicate that hydronium resonance stimulation alters the structure of water, enhancing the concentration of EZ-water. These results are not only consistent with Del Giudice's model of electromagnetically coherent domains, but they can also be interpreted to show that these domains exist in quantized spin states. 相似文献
62.
Thomas R. Jackson Kristine Salmina Anda Huna Inna Inashkina Eriks Jankevics Una Riekstina Zane Kalnina Andrey Ivanov Paul A. Townsend Mark S. Cragg Jekaterina Erenpreisa 《Cell cycle (Georgetown, Tex.)》2013,12(3):430-431
Comment on: Wu R, et al. Clin Cancer Res 2011; 17:7359–72 相似文献
63.
Both the clinical diagnosis and fundamental investigation of major ocular diseases greatly benefit from various non-invasive ophthalmic imaging technologies. Existing retinal imaging modalities, such as fundus photography1, confocal scanning laser ophthalmoscopy (cSLO)2, and optical coherence tomography (OCT)3, have significant contributions in monitoring disease onsets and progressions, and developing new therapeutic strategies. However, they predominantly rely on the back-reflected photons from the retina. As a consequence, the optical absorption properties of the retina, which are usually strongly associated with retinal pathophysiology status, are inaccessible by the traditional imaging technologies.Photoacoustic ophthalmoscopy (PAOM) is an emerging retinal imaging modality that permits the detection of the optical absorption contrasts in the eye with a high sensitivity4-7 . In PAOM nanosecond laser pulses are delivered through the pupil and scanned across the posterior eye to induce photoacoustic (PA) signals, which are detected by an unfocused ultrasonic transducer attached to the eyelid. Because of the strong optical absorption of hemoglobin and melanin, PAOM is capable of non-invasively imaging the retinal and choroidal vasculatures, and the retinal pigment epithelium (RPE) melanin at high contrasts 6,7. More importantly, based on the well-developed spectroscopic photoacoustic imaging5,8 , PAOM has the potential to map the hemoglobin oxygen saturation in retinal vessels, which can be critical in studying the physiology and pathology of several blinding diseases 9 such as diabetic retinopathy and neovascular age-related macular degeneration.Moreover, being the only existing optical-absorption-based ophthalmic imaging modality, PAOM can be integrated with well-established clinical ophthalmic imaging techniques to achieve more comprehensive anatomic and functional evaluations of the eye based on multiple optical contrasts6,10 . In this work, we integrate PAOM and spectral-domain OCT (SD-OCT) for simultaneously in vivo retinal imaging of rat, where both optical absorption and scattering properties of the retina are revealed. The system configuration, system alignment and imaging acquisition are presented. 相似文献
64.
A planetary interior is under high-pressure and high-temperature conditions and it has a layered structure. There are two important processes that led to that layered structure, (1) percolation of liquid metal in a solid silicate matrix by planet differentiation, and (2) inner core crystallization by subsequent planet cooling. We conduct high-pressure and high-temperature experiments to simulate both processes in the laboratory. Formation of percolative planetary core depends on the efficiency of melt percolation, which is controlled by the dihedral (wetting) angle. The percolation simulation includes heating the sample at high pressure to a target temperature at which iron-sulfur alloy is molten while the silicate remains solid, and then determining the true dihedral angle to evaluate the style of liquid migration in a crystalline matrix by 3D visualization. The 3D volume rendering is achieved by slicing the recovered sample with a focused ion beam (FIB) and taking SEM image of each slice with a FIB/SEM crossbeam instrument. The second set of experiments is designed to understand the inner core crystallization and element distribution between the liquid outer core and solid inner core by determining the melting temperature and element partitioning at high pressure. The melting experiments are conducted in the multi-anvil apparatus up to 27 GPa and extended to higher pressure in the diamond-anvil cell with laser-heating. We have developed techniques to recover small heated samples by precision FIB milling and obtain high-resolution images of the laser-heated spot that show melting texture at high pressure. By analyzing the chemical compositions of the coexisting liquid and solid phases, we precisely determine the liquidus curve, providing necessary data to understand the inner core crystallization process. 相似文献
65.
Anna U. Eriksson Christoffer Svensson Andreas H?rnblad Abbas Cheddad Elena Kostromina Maria Eriksson Nils Norlin Antonello Pileggi James Sharpe Fredrik Georgsson Tomas Alanentalo Ulf Ahlgren 《Journal of visualized experiments : JoVE》2013,(71)
By adapting OPT to include the capability of imaging in the near infrared (NIR) spectrum, we here illustrate the possibility to image larger bodies of pancreatic tissue, such as the rat pancreas, and to increase the number of channels (cell types) that may be studied in a single specimen. We further describe the implementation of a number of computational tools that provide: 1/ accurate positioning of a specimen''s (in our case the pancreas) centre of mass (COM) at the axis of rotation (AR)2; 2/ improved algorithms for post-alignment tuning which prevents geometric distortions during the tomographic reconstruction2 and 3/ a protocol for intensity equalization to increase signal to noise ratios in OPT-based BCM determinations3. In addition, we describe a sample holder that minimizes the risk for unintentional movements of the specimen during image acquisition. Together, these protocols enable assessments of BCM distribution and other features, to be performed throughout the volume of intact pancreata or other organs (e.g. in studies of islet transplantation), with a resolution down to the level of individual islets of Langerhans. 相似文献
66.
目的:探索SITSSICH风险评分预测中国急性脑梗死患者rt.PA静脉溶栓(时间窗为4.5h,rt.PA剂量0.9mg/kg体重)治疗后症状性颅内出血(SICH)风险的效果,为使用SITSSICH风险评分指导溶栓治疗积累临床经验。方法:对86名进行rt-PA静脉溶栓(剂量0.9mg/kg体重)的急性脑梗死患者,进行SITSSICH风险评分,并记录总分及风险水平分层结果,按总分0、1、2、3、4、5、6、7、8、≥9分,分为10组,再按风险水平低危、平均、中危、高危分为4组,记录各组患者溶栓后有颅内出血(包括SICH)的比例,各组间进行比较。结果:SITSSICH风险评分0.5分、6分、7分、8分、≥9分各组SICH的比例分别为0.0%、8.3%、10.0%、25%和50.0%,卡方检验得x2=64.38,P〈0.001(线性趋势检验),提示随着SITSSICH风险评分值的增加SICH的比例也在增加,存在统计学上的差异。SITSSICH风险评分风险水平低危及平均组的SICH比率为0%,中危、高危组的SICH比率分别11.5%,50%,卡方检验得xZ=-59.52,P〈0.001(线性趋势检验),提示SITSSICH风险水平越高,SICH的比例也越高,存在统计学上的差异。另外,将SITSSICH风险评分风险水平分层和出血类型做spearman等级相关分析,得到spearman相关系数0.422,P〈0.001;说明SITSSICH风险评分风险水平分层和S1CH呈正相关。结论:对于经标准的rt—PA静脉溶栓方案(时间窗为4.5h,rt-PA剂量0.9mg/kg体重)治疗中国急性脑梗死患者,SITSSICH风险评分分值的增加与SICH风险的增加呈正相关,SITSSICH风险评分是一个能够预测rt-PA静脉溶栓后sICH风险的简单易行的实用的I临床工具。 相似文献
67.
摘要目的:探讨CBL结合PBL及LBL的教学方法在胸外科临床实习中的应用效果。方法:选取我院胸外科临床实习学生共60人为研究对象,随机将其分为实验组及对照组,每组各30人。实验组采用CBL+PBL-4-LBL教学方法;对照组采用LBL教学方法。在学习结束时,采用闭卷考试的形式进行成绩考核;同时采用不记名问卷调查,进行两种教学效果和教学模式的评价。结果:两组学生在理论知识考试部分成绩水平持平,无统计学差异。但是实验组学生在病例分析、基本技能及总成绩等部分成绩明显高于对照组。PBL+CBL+LBL教学方法在激发学习兴趣、提高学习积极性、自学能力、建立独立思维模式等方面显著高于LBL组。结论:CBL+PBL+LBL教学方法优于传统教学,可以提高学习的积极性,有助于医学生临床思维和实践能力的培养。 相似文献
68.
目的:腋臭是美容整形外科的常见病,目前发病机制尚不明确,已证实人体大汗腺中的载脂蛋白D(ApoD)在腋臭患者大汗腺中高表达,并且与腋臭的发生密切相关。探明ApoD在大汗腺细胞中的信号转导通路,可以进一步明确其在腋臭发病过程中的作用机制。JNK信号转导通路与多种疾病的发生有关。课题组前期已经做了JNKl对ApoD调控作用的相关研究,证明了在腋臭发病过程中JNK1是通过调控ApoD的转录来上调ApoD的表达。本实验在课题组前期研究基础上,探讨JNKl下游转录因子AP-1是否在JNKl上调ApoD通路中发挥作用。方法:取腋臭志愿者腋区皮肤组织,进行汗腺细胞培养。把汗腺细胞分为5.二氢睾酮处理组、5-二氢睾酮联合姜黄素处理组和空白对照3个组,用姜黄素抑制AP-1的活性,通过Real.timePCR实验方法检测ApoD在姜黄素抑制下的表达变化。结果:在姜黄素的抑制下,ApoD表达明显降低。在体外培养汗腺细胞加入5.二氢睾酮联合姜黄素处理后,ApoD的表达量在mRNA水平低于单独的5-二氢睾酮处理组和正常对照组(P〈0.05)。结论:姜黄素抑制了AP.1的活化导致ApoD的表达降低。在腋臭的发病过程中,JNKl的下游转录因子AP-1对ApoD有明显的上调作用。AP-1可能在JNKl上调ApoD这条通路中扮演了很重要的角色,它可能是JNK1和ApoD的中间转录因子。 相似文献
69.
目的:研究PCI术后是否应用依诺肝素抗凝治疗对患者临床疗效的影响。方法:于2011年5月至2012年1月间,连续入选在我院行冠状动脉造影并置入了支架的患者158例,将符合标准的患者随机分为非抗凝组或抗凝组两组各79名。非抗凝组术后常规应用阿司匹林和氯吡格雷。抗凝组术后加用依诺肝素。对入选患者进行院内随访记录其主要心脏不良事件及出血事件。结果:支架植入成功率100%。术后抗凝组113处病变共置入支架135枚;非抗凝组109处病变置入支架115枚。院内随访:主要心脏不良事件和严重出血差异无统计学意义。小出血事件抗凝组多于非抗凝组(P=0.007)。结论:冠状动脉支架置入术后非抗凝治疗组缺血不良事件发生率较抗凝组无明显增加,小出血并发症明显减少。该研究结果表明,对PCI术无特殊并发症的患者术后无需常规抗凝治疗。 相似文献
70.
利用E.coli BL21/pCDFDuet-gdh—cr-X共表达全细胞催化6-氰基-(5R)-羟基-3-羰基己酸叔丁酯不对称还原合成6-氰基-(3R,5R)-二羟基已酸叔丁酯。结果表明:在菌体用量4.85g/L、葡萄糖与底物质量浓度比为1:1、温度28℃、pH7.0条件下,80.0g/L6-氰基-(5R)-羟基-3-羰基己酸叔丁酯生物还原2h后,底物转化率可达99.0%,产物d.e.值大于99.5%。在考察范围内,NADP^+用量对催化效率无显著作用。 相似文献