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1.
J Chem Phys ; 133(4): 044311, 2010 Jul 28.
Article in English | MEDLINE | ID: mdl-20687654

ABSTRACT

We quantitatively determine cross sections for rotational decoherence from the decay of nonadiabatic laser-induced alignment in nitrogen and nitrogen-foreign gas mixtures in a temperature range between 80 K and room temperature. The cross section for rotational decoherence in pure nitrogen decreases from 102 A(2) at 80 K to 48 A(2) at 295 K, leading to long-lived coherences even at high temperatures. Comparison with the broadening of the transition lines of the Raman Q-branch reported in the literature shows that the decay of rotational coherence proceeds at the same rate as rotational depopulation. This is verified also for mixtures of nitrogen with hydrogen, helium, argon, and krypton. We discuss limits posed by a possible J-dependence of the cross sections and strategies for state resolved determination from the time-dependent alignment signal.

2.
Nature ; 408(6815): 958-61, 2000.
Article in English | MEDLINE | ID: mdl-11140679

ABSTRACT

The Central Andes are the Earth's highest mountain belt formed by ocean-continent collision. Most of this uplift is thought to have occurred in the past 20 Myr, owing mainly to thickening of the continental crust, dominated by tectonic shortening. Here we use P-to-S (compressional-to-shear) converted teleseismic waves observed on several temporary networks in the Central Andes to image the deep structure associated with these tectonic processes. We find that the Moho (the Mohorovicic discontinuity--generally thought to separate crust from mantle) ranges from a depth of 75 km under the Altiplano plateau to 50 km beneath the 4-km-high Puna plateau. This relatively thin crust below such a high-elevation region indicates that thinning of the lithospheric mantle may have contributed to the uplift of the Puna plateau. We have also imaged the subducted crust of the Nazca oceanic plate down to 120 km depth, where it becomes invisible to converted teleseismic waves, probably owing to completion of the gabbro-eclogite transformation; this is direct evidence for the presence of kinetically delayed metamorphic reactions in subducting plates. Most of the intermediate-depth seismicity in the subducting plate stops at 120 km depth as well, suggesting a relation with this transformation. We see an intracrustal low-velocity zone, 10-20 km thick, below the entire Altiplano and Puna plateaux, which we interpret as a zone of continuing metamorphism and partial melting that decouples upper-crustal imbrication from lower-crustal thickening.

3.
DNA Cell Biol ; 13(9): 891-900, 1994 Sep.
Article in English | MEDLINE | ID: mdl-7917011

ABSTRACT

The neural cell adhesion molecule L1, a member of the immunoglobulin superfamily, mediates cell interactions in the developing and regenerating nervous system of mammals and is also detectable in the immune system and in the epithelia of intestine, skin, lung, and kidney. This diverse pattern of expression begs the question as to the regulatory mechanisms underlying transcription of the L1 gene. We demonstrate here that the paired domain and homeodomain containing Pax-6 protein binds to three different sites in the promoter region of the L1 gene. The promoter proximal binding site is also recognized by Hoxa-1 and lies approximately 60 bp upstream from the transcription start site only few base pairs upstream of a putative binding site for the TFII-I transcription initiation factor. On the basis of this sequence, we have characterized the binding of Pax-6 and explored two modes of its DNA binding activities.


Subject(s)
Cell Adhesion Molecules, Neuronal/genetics , DNA-Binding Proteins/metabolism , Homeodomain Proteins/metabolism , Promoter Regions, Genetic , Base Sequence , Binding Sites , DNA/metabolism , DNA-Binding Proteins/genetics , Eye Proteins , Homeodomain Proteins/genetics , Leukocyte L1 Antigen Complex , Models, Genetic , Molecular Sequence Data , Mutation/genetics , PAX6 Transcription Factor , Paired Box Transcription Factors , Polydeoxyribonucleotides/metabolism , Recombinant Fusion Proteins/biosynthesis , Repressor Proteins
5.
Behav Sci ; 12(5): 391-5, 1967 Sep.
Article in English | MEDLINE | ID: mdl-6059771
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