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61.
Lithium Doping to Enhance Thermoelectric Performance of MgAgSb with Weak Electron–Phonon Coupling 下载免费PDF全文
Zihang Liu Yumei Wang Jun Mao Huiyuan Geng Jing Shuai Yuanxu Wang Ran He Wei Cai Jiehe Sui Zhifeng Ren 《Liver Transplantation》2016,6(7)
Despite the unfavorable band structure with twofold degeneracy at the valence band maximum, MgAgSb is still an excellent p‐type thermoelectric material for applications near room temperature. The intrinsically weak electron–phonon coupling, reflected by the low deformation potential Edef ≈ 6.3 eV, plays a crucial role in the relatively high power factor of MgAgSb. More importantly, Li is successfully doped into Mg site to tune the carrier concentration, leading to the resistivity reduction by a factor of 3 and a consequent increase in power factor by ≈30% at 300 K. Low lattice thermal conductivity can be simultaneously achieved by all‐scale hierarchical phonon scattering architecture including high density of dislocations and nanoscale stacking faults, nanoinclusions, and multiscale grain boundaries. Collectively, much higher average power factor ≈25 μW cm?1 K?2 with a high average ZT ≈ 1.1 from 300 to 548 K is achieved for 0.01 Li doping, which would result in a high output power density ≈1.56 W cm?2 and leg efficiency ≈9.2% by calculations assuming cold‐side temperature Tc = 323 K, hot‐side temperature Th = 548 K, and leg length = 2 mm. 相似文献
62.
Valentin Magidson Jie He Jeffrey G. Ault Christopher B. O’Connell Nachen Yang Irina Tikhonenko Bruce F. McEwen Haixin Sui Alexey Khodjakov 《The Journal of cell biology》2016,212(3):307-319
Kinetochores attach chromosomes to the spindle microtubules and signal the spindle assembly checkpoint to delay mitotic exit until all chromosomes are attached. Light microscopy approaches aimed to indirectly determine distances between various proteins within the kinetochore (termed Delta) suggest that kinetochores become stretched by spindle forces and compact elastically when the force is suppressed. Low Delta is believed to arrest mitotic progression in taxol-treated cells. However, the structural basis of Delta remains unknown. By integrating same-kinetochore light microscopy and electron microscopy, we demonstrate that the value of Delta is affected by the variability in the shape and size of outer kinetochore domains. The outer kinetochore compacts when spindle forces are maximal during metaphase. When the forces are weakened by taxol treatment, the outer kinetochore expands radially and some kinetochores completely lose microtubule attachment, a condition known to arrest mitotic progression. These observations offer an alternative interpretation of intrakinetochore tension and question whether Delta plays a direct role in the control of mitotic progression. 相似文献
63.
An Yun Guo Kwok Sui Leung Parco Ming Fai Siu Jiang Hui Qin Simon Kwoon Ho Chow Ling Qin Chi Yu Li Wing Hoi Cheung 《Experimental Animals》2015,64(4):425-433
Sarcopenia is an age-related systemic syndrome with progressive deterioration in skeletal
muscle functions and loss in mass. Although the senescence-accelerated mouse P8 (SAMP8)
was reported valid for muscular ageing research, there was no report on the details such
as sarcopenia onset time. Therefore, this study was to investigate the change of muscle
mass, structure and functions during the development of sarcopenia. Besides the average
life span, muscle mass, structural and functional measurements were also studied. Male
SAMP8 animals were examined at month 6, 7, 8, 9, and 10, in which the right gastrocnemius
was isolated and tested for ex vivo contractile properties and fatigability while the
contralateral one was harvested for muscle fiber cross-sectional area (FCSA) and typing
assessments. Results showed that the peak of muscle mass appeared at month 7 and the onset
of contractility decline was observed from month 8. Compared with month 8, most of the
functional parameters at month 10 decreased significantly. Structurally, muscle fiber type
IIA made up the largest proportion of the gastrocnemius, and the fiber size was found to
peak at month 8. Based on the altered muscle mass, structural and functional outcomes, it
was concluded that the onset of sarcopenia in SAMP8 animals was at month 8. SAMP8 animals
at month 8 should be at pre-sarcopenia stage while month 10 at sarcopenia stage. It is
confirmed that SAMP8 mouse can be used in sarcopenia research with established time line
in this study. 相似文献
64.
65.
Jinbo Huang Meili Ge Shihong Lu Jun Shi Wei Yu Xingxin Li Min Wang Jizhou Zhang Sizhou Feng Shuxu Dong Xuelian Cheng Yizhou Zheng 《PloS one》2016,11(3)
Aplastic anemia (AA) is a bone marrow failure syndrome that is caused largely by profound quantitative and qualitative defects of hematopoietic stem and progenitor cells. However, the mechanisms underlying these defects remain unclear. Under conditions of stress, autophagy acts as a protective mechanism for cells. We therefore postulated that autophagy in CD34+ hematopoietic progenitor cells (HPCs) from AA patients might be impaired and play a role in the pathogenesis of AA. To test this hypothesis, we tested autophagy in CD34+ cells from AA samples and healthy controls and investigated the effect of autophagy on the survival of adult human bone marrow CD34+ cells. We found that the level of autophagy in CD34+ cells from AA patients was significantly lower than in age/sex-matched healthy controls, and lower in cases of severe AA than in those with non-severe AA. Autophagy in CD34+ cells improved upon amelioration of AA but, compared to healthy controls, was still significantly reduced even in AA patients who had achieved a complete, long-term response. We also showed that although the basal autophagy in CD34+ cells was low, the autophagic response of CD34+ cells to “adversity” was rapid. Finally, impaired autophagy resulted in reduced differentiation and proliferation of CD34+ cells and sensitized them to death and apoptosis. Thus, our results confirm that autophagy in CD34+ cells from AA patients is impaired, that autophagy is required for the survival of CD34+ cells, and that impaired autophagy in CD34+ HPCs may play an important role in the pathogenesis of AA. 相似文献
66.
红穗醋栗色素理化性质的研究 总被引:1,自引:0,他引:1
本试验研究了红穗醋栗色素的理化性质,结果表明:红穗醋栗色素热稳定性很好,而光照对其有一定的降解作用。pH值对该色素影响明显,宜在酸性食品中应用。几种金属离子Na~ 、Ca~(2 )、Al~(3 )、Zn~(2 )。Cu~(2 )对该色素的色泽没有影响;而Fe~(3 )、Sn~(2 )则有不良影响。食品中常含的几种添加物葡萄糖、蔗糖、淀粉和抗坏血酸对该色素无不良影响。红穗醋栗色素对Na_2SO_3的还原性耐性较强,对H_2O_2的耐氧化性很差。防腐剂苯甲酸钠对该色素也有一定的不良影响。 相似文献
67.
Jianping Zhou Yan Cheng Meiqi Yin Ennian Yang Wenping Gong Cheng Liu Xuelian Zheng Kejun Deng Zhenglong Ren Yong Zhang 《PloS one》2015,10(2)
MicroRNAs (miRNAs) play essential roles in a vast array of biological processes, including growth and development, defense against viral infection, and responses to environmental changes in plant. Wheat hybrid necrosis is an interesting genetic phenomenon observed frequency and it is lethal or semi lethal, resulting in gradual death or loss of productivity. However, the molecular basis and mechanisms associated with hybrid necrosis in wheat are still not well understood. Here, we report the population and expression profiles of miRNAs in wheat hybrid necrosis. We identified a total of 57 conserved miRNA families as well as 182 putative novel miRNAs. Expression profiling revealed that expression of 49 known miRNAs and 165 novel miRNAs was changed in hybrid necrosis. And the expression levels of some miRNAs and their predicated targets have been confirmed by qRT-PCR. These results indicate that these miRNAs, especially miR159, miR166, miR167 and miR5072 could be involved in the extensive regulation of gene expression in response to hybrid necrosis. 相似文献
68.
Social responsibility links personal behavior with societal expectations and plays a key role in affecting an agent’s emotional state following a decision. However, the neural basis of responsibility attribution remains unclear. In two previous event-related brain potential (ERP) studies we found that personal responsibility modulated outcome evaluation in gambling tasks. Here we conducted a functional magnetic resonance imaging (fMRI) study to identify particular brain regions that mediate responsibility attribution. In a context involving team cooperation, participants completed a task with their teammates and on each trial received feedback about team success and individual success sequentially. We found that brain activity differed between conditions involving team success vs. team failure. Further, different brain regions were associated with reinforcement of behavior by social praise vs. monetary reward. Specifically, right temporoparietal junction (RTPJ) was associated with social pride whereas dorsal striatum and dorsal anterior cingulate cortex (ACC) were related to reinforcement of behaviors leading to personal gain. The present study provides evidence that the RTPJ is an important region for determining whether self-generated behaviors are deserving of praise in a social context. 相似文献
69.
A deletion at the mouse Xist gene exposes trans-effects that alter the heterochromatin of the inactive X chromosome and the replication time and DNA stability of both X chromosomes 下载免费PDF全文
Diaz-Perez SV Ferguson DO Wang C Csankovszki G Wang C Tsai SC Dutta D Perez V Kim S Eller CD Salstrom J Ouyang Y Teitell MA Kaltenboeck B Chess A Huang S Marahrens Y 《Genetics》2006,174(3):1115-1133
The inactive X chromosome of female mammals displays several properties of heterochromatin including late replication, histone H4 hypoacetylation, histone H3 hypomethylation at lysine-4, and methylated CpG islands. We show that cre-Lox-mediated excision of 21 kb from both Xist alleles in female mouse fibroblasts led to the appearance of two histone modifications throughout the inactive X chromosome usually associated with euchromatin: histone H4 acetylation and histone H3 lysine-4 methylation. Despite these euchromatic properties, the inactive X chromosome was replicated even later in S phase than in wild-type female cells. Homozygosity for the deletion also caused regions of the active X chromosome that are associated with very high concentrations of LINE-1 elements to be replicated very late in S phase. Extreme late replication is a property of fragile sites and the 21-kb deletions destabilized the DNA of both X chromosomes, leading to deletions and translocations. This was accompanied by the phosphorylation of p53 at serine-15, an event that occurs in response to DNA damage, and the accumulation of gamma-H2AX, a histone involved in DNA repair, on the X chromosome. The Xist locus therefore maintains the DNA stability of both X chromosomes. 相似文献
70.
Numerical simulations of surface plasmon resonance system for monitoring DNA hybridization and detecting protein-lipid film interactions 总被引:1,自引:0,他引:1
This paper presents a simple method to extract information about thin organic films from surface plasmon resonance (SPR)
spectra. From numerical simulations it was found that a shift (Δθ
SPR) of an absorption peak in the SPR spectrum was directly proportional to the product of the thin organic film thickness and
the refractive index difference between the thin organic film and a buffer soaking the sample. It was also found that Δθ
SPR was not sensitive to the thin organic film support of a gold film and a glass cover slip. Relationships between Δθ
SPR and distributions of macromolecule structures, in the thin organic films were theoretically established. Formulae were derived
for a homemade SPR system to calculate length, transverse area, density and surface concentration of macromolecules in the
thin organic film. The validity of these treatments was checked by precisely measuring the size of a single distearoylphosphatidylcholine
molecule on a gold-supported phospholipid film; by quantitatively monitoring hybridization of synthesized oligonucleotides
strands based on a biotin/avidin system; and by quantitatively detecting the steric hindrance of rabbit C-reactive protein
specifically bound to phospholipid monolayers composed of synthesized lipids.
Received: 4 May 1998 / Revised version: 27 July 1998 / Accepted: 27 August 1998 相似文献