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| 1 | Lamguage-association cortex asymmetry in autism and specific language impairment显示文摘 | De Fossé | | 0,,06: | 1 |
| 2 | Borrowing constraints, human capital accumulation, and growth显示文摘 | José De Gregorio | 1996 | Journal of Monetary Economics1996,,1: | 1 |
| 3 | Maple syrup urine disease: membrane amino acid transport in non-brain tissues revisited显示文摘 | de Céspedes C | 2013 | Mol Genet Metab2013,108,3: | 1 |
| 4 | Non-nucleoside reverse transcriptase inhibitors (NNRTIs), their discovery, development, and use in the treatment of HIV-1 infection: A review of the last 20 years (1989–2009)显示文摘 | Marie-Pierre de Béthune | 2009 | Antiviral Research2009,,1: | 2 |
| 5 | Diversity and stability of understorey communities following disturbance in the southem boreal forest显示文摘 | De Grandpré L Bergeron Y | | 0,,: | 1 |
| 6 | Cell Cycle Regulation in Plant Development <sup>1</sup>显示文摘 | Dirk Inzé Lieven De Veylder | 2006 | Annual Review of Genetics2006,,: | 1 |
| 7 | Affinity Solvents for Intensified Organics Extraction: Development Challenges and Prospects显示文摘In most organics extraction processes, the commonly used solvents employ solely physical inter-actions. Therefore, for the recovery and purification of products from complex mixtures, the selectivity and/or capacity of classical solvents towards the desired solutes is usually insufficient, enforcing the need for com-plex and thus expensive separation schemes. Significant simplification and cost-reduction can be achieved when affinity solvents would be available that are able to recognize the solutes of interest by their molecular structure. The main development challenges to establish such affinity solvents are: Selection and incorpora-tion of molecular recognition and complexation capabilities; Evaluation of extraction capabilities; Efficient re-covery and recycling of the affinity solvents; Implementation in industrial extraction equipment. This paper presents how these development challenges are addressed at the University of Twente, going all the way from affinity solvent design and synthesis, via high throughput screening and characterization up to pilot plant evaluation. Essential in the successful development of affinity solvents are structural cooperations with molecular chemists and custom synthesis companies for their design and synthesis. The various aspects are illustrated by several examples where newly developed environmentally benign affinity solvents ap-peared able to create major breakthroughs. The applications addressed involve oxygenates, sugars, and pharmaceutical ingredients, such as optical isomers and biomolecules. | André B. de Haan | 2006 | Tsinghua Science and Technology2006,11,2: | 1 |
| 8 | Acute promyelocytic leukaemia:novel insights into the mechanisms of cure显示文摘 | De Thé H Chen Z | | 0,,11: | 1 |
| 9 | Renal giant cytoplasmic inclusions in Chédiak-Higashi syndrome:first ultrastructural demonstration in a human biopsy显示文摘 | De Chadarévian JP | | 0,,04: | 1 |
| 10 | Chapter 1:Human papillomavirus and cervical cancer--burden and assessment of causality显示文摘 | Bosch FX de Sanjosé S | | 0,,02: | 1 |
| 11 | Neuroscience for Architecture:How Building Design Can Influence Behaviors and Performance显示文摘The purpose of this paper is to discuss recent findings in neuroscience that can be useful to architecture.Knowing the working patterns of the brain and how space affects cerebral functions can help architects design buildings that improve the user’s behavior,performance and well-being.The built environment has a direct impact on the human brain.Social relations,focus,cognition,creativity,memory and well-being can be influenced by the surrounding physical space.Although it is not possible to create the perfect room,the space can be used in a strategic way,depending on the task that individuals are supposed to do there and depending on the people(age,gender,culture)who will make use of the space.Schools can be designed in a way to improve cognition,learning and memorization;hospital buildings can help improving recovery;workspaces can improve performance,creativity and collaboration.Above all,all spaces of long occupation should be designed in a way to improve well-being.How can architecture change automatic behaviors and nudge people to behave in a healthier way?Can architects create buildings and cities that improve socialization and happiness?Can criminality levels drop due to changes on the way the environments are designed?These are some of the questions that will be discussed in this paper. | Andréa de Paiva | 2018 | Journal of Civil Engineering and Architecture2018,12,2: | 1 |
| 12 | The small RNA world of plants显示文摘 | EricBonnet YvesVan de Peer PierreRouzé | 2006 | New Phytologist2006,,3: | 1 |
| 13 | Human papillomavirus and cervical cancer:burden and assessment of causality显示文摘 | Bosch FX de Sanjosé S | | 0,,31: | 1 |
| 14 | Correcting occiput posterior position during labor:The role of maternal positions显示文摘 | Hauteécole de Santé | 2013 | Diabetes Res Clin Pract2013,78,2: | 1 |
| 15 | Regulation in the automobile industry显示文摘 | André de Palma Moez Kilani | 2006 | International Journal of Industrial Organization2006,,1: | 1 |
| 16 | Sur l' approximation des fonctions d' une variable réele et de leurs dérivées par des polynomes et des suites limitées de Fourier显示文摘 | Vallée-Poussin de la | 1908 | Acad Roy Belg Bull Cl Sci1908,3,: | 1 |
| 17 | Les Origines de l'Astronomie Chinoise显示文摘 | Léopold de Saussure | 1909 | T''oung Pao1909,10,2: | 1 |
| 18 | Les Origines de l'Astronomie Chinoise(Suite)显示文摘 | Léopold de Saussure | 1909 | T''oung Pao1909,10,3: | 1 |
| 19 | Gravitational waves from compact objects显示文摘Large ground-based laser beam interferometers are presently in operation both in the USA(LIGO) and in Europe(VIRGO) and potential sources that might be detected by these instruments are revisited.The present generation of detectors does not have a sensitivity high enough to probe a significant volume of the universe and,consequently,predicted event rates are very low.The planned advanced generation of interferometers will probably be able to detect,for the first time,a gravitational signal.Advanced LIGO and EGO instruments are expected to detect few(some):binary coalescences consisting of either two neutron stars,two black holes or a neutron star and a black hole.In space,the sensitivity of the planned LISA spacecraft constellation will allow the detection of the gravitational signals,even within a 'pessimistic' range of possible signals,produced during the capture of compact objects by supermassive black holes,at a rate of a few tens per year. | José Antonio de Freitas Pacheco | 2010 | Research in Astronomy and Astrophysics2010,10,11: | 1 |
| 20 | Fundamental steps in experimental design for animal studies显示文摘 | José Eduardo de Aguilar-Nascimento | 2005 | Acta Cirárgica Brasileira2005,20,1: | 1 |