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11.
Acid hydrolases of the coccidian Eimeria tenella 总被引:1,自引:0,他引:1
Activities of acid hydrolases were higher in sporozoites of Eimeria tenella than in unsporulated and sporulated oocysts. These enzymes along with proteinases may be involved in the penetration of epithelial cells of chicken cecum by sporozoites. 相似文献
12.
谭汉松 《中南大学学报(自然科学版)》1999,(4)
提出了一种新的大型软件开发方法———同步稳定法.它汲取了生命周期法和快速原型法的优点,克服了它们的不足之处,既能充分发挥软件开发人员个人的创造力,又能很好地协作开发队伍,从而保证软件的整体性能,确为一种开发大型软件的优秀方法. 相似文献
13.
The hyh (hydrocephalus with hop gait) mouse shows a markedly small cerebral cortex at birth and dies postnatally from progressive enlargement of the ventricular system. Here we show that the small hyh cortex reflects altered cell fate. Neural progenitor cells withdraw prematurely from the cell cycle, producing more early-born, deep-layer cerebral cortical neurons but depleting the cortical progenitor pool, such that late-born, upper-layer cortical neurons are underproduced, creating a small cortex. hyh mice carry a hypomorphic missense mutation in the gene Napa encoding soluble N-ethylmaleimide-sensitive factor (NSF) attachment protein alpha (alpha Snap), involved in SNAP receptor (SNARE)-mediated vesicle fusion in many cellular contexts. A targeted null Napa mutation is embryonically lethal. Altered neural cell fate is accompanied by abnormal localization of many apical proteins implicated in regulation of neural cell fate, including E-cadherin, beta-catenin, atypical protein kinase C (aPKC) and INADL (inactivation-no-afterpotential D-like, also known as protein associated with Lin7, or Pals1). Apical localization of the SNARE Vamp7 is also disrupted. Thus, alpha Snap is essential for apical protein localization and cell fate determination in neuroepithelial cells. 相似文献
14.
Elzerman JM Hanson R Willems Van Beveren LH Witkamp B Vandersypen LM Kouwenhoven LP 《Nature》2004,430(6998):431-435
Spin is a fundamental property of all elementary particles. Classically it can be viewed as a tiny magnetic moment, but a measurement of an electron spin along the direction of an external magnetic field can have only two outcomes: parallel or anti-parallel to the field. This discreteness reflects the quantum mechanical nature of spin. Ensembles of many spins have found diverse applications ranging from magnetic resonance imaging to magneto-electronic devices, while individual spins are considered as carriers for quantum information. Read-out of single spin states has been achieved using optical techniques, and is within reach of magnetic resonance force microscopy. However, electrical read-out of single spins has so far remained elusive. Here we demonstrate electrical single-shot measurement of the state of an individual electron spin in a semiconductor quantum dot. We use spin-to-charge conversion of a single electron confined in the dot, and detect the single-electron charge using a quantum point contact; the spin measurement visibility is approximately 65%. Furthermore, we observe very long single-spin energy relaxation times (up to approximately 0.85 ms at a magnetic field of 8 T), which are encouraging for the use of electron spins as carriers of quantum information. 相似文献
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16.
Genetic determinants of ulcerative colitis include the ECM1 locus and five loci implicated in Crohn's disease 总被引:1,自引:0,他引:1
Fisher SA Tremelling M Anderson CA Gwilliam R Bumpstead S Prescott NJ Nimmo ER Massey D Berzuini C Johnson C Barrett JC Cummings FR Drummond H Lees CW Onnie CM Hanson CE Blaszczyk K Inouye M Ewels P Ravindrarajah R Keniry A Hunt S Carter M Watkins N Ouwehand W Lewis CM Cardon L;Wellcome Trust Case Control Consortium Lobo A Forbes A Sanderson J Jewell DP Mansfield JC Deloukas P Mathew CG Parkes M Satsangi J 《Nature genetics》2008,40(6):710-712
We report results of a nonsynonymous SNP scan for ulcerative colitis and identify a previously unknown susceptibility locus at ECM1. We also show that several risk loci are common to ulcerative colitis and Crohn's disease (IL23R, IL12B, HLA, NKX2-3 and MST1), whereas autophagy genes ATG16L1 and IRGM, along with NOD2 (also known as CARD15), are specific for Crohn's disease. These data provide the first detailed illustration of the genetic relationship between these common inflammatory bowel diseases. 相似文献
17.
Promoter regions of many neural- and nutrition-related genes have experienced positive selection during human evolution 总被引:6,自引:0,他引:6
Surveys of protein-coding sequences for evidence of positive selection in humans or chimpanzees have flagged only a few genes known to function in neural or nutritional processes, despite pronounced differences between humans and chimpanzees in behavior, cognition and diet. It may be that most such differences are due to changes in gene regulation rather than protein structure. Here, we present the first survey of promoter (5'-flanking) regions, which are rich in cis-regulatory sequences, for evidence of positive selection in humans. Our results indicate that positive selection has targeted the regulation of many genes known to be involved in neural development and function, both in the brain and elsewhere in the nervous system, and in nutrition, particularly in glucose metabolism. 相似文献
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19.
Résumé L'activité de l'uricase et des tyrosinases d'origine végétale et animale est diminuée par irradiation UV (2537 Å). Il existe une relation exponentielle entre l'activité enzymatique relative et la quantité de rayonnement. Il n'a pas été possible de mettre en évidence une relation entre la perte d'activité de la tyrosinase végétale des échantillons irradiés et la teneur en cuivre de ces derniers. 相似文献
20.
van der Sar T Wang ZH Blok MS Bernien H Taminiau TH Toyli DM Lidar DA Awschalom DD Hanson R Dobrovitski VV 《Nature》2012,484(7392):82-86
Protecting the dynamics of coupled quantum systems from decoherence by the environment is a key challenge for solid-state quantum information processing. An idle quantum bit (qubit) can be efficiently insulated from the outside world by dynamical decoupling, as has recently been demonstrated for individual solid-state qubits. However, protecting qubit coherence during a multi-qubit gate is a non-trivial problem: in general, the decoupling disrupts the interqubit dynamics and hence conflicts with gate operation. This problem is particularly salient for hybrid systems, in which different types of qubit evolve and decohere at very different rates. Here we present the integration of dynamical decoupling into quantum gates for a standard hybrid system, the electron-nuclear spin register. Our design harnesses the internal resonance in the coupled-spin system to resolve the conflict between gate operation and decoupling. We experimentally demonstrate these gates using a two-qubit register in diamond operating at room temperature. Quantum tomography reveals that the qubits involved in the gate operation are protected as accurately as idle qubits. We also perform Grover's quantum search algorithm, and achieve fidelities of more than 90% even though the algorithm run-time exceeds the electron spin dephasing time by two orders of magnitude. Our results directly allow decoherence-protected interface gates between different types of solid-state qubit. Ultimately, quantum gates with integrated decoupling may reach the accuracy threshold for fault-tolerant quantum information processing with solid-state devices. 相似文献