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Maryrose Gerardi Judith Cukor JoAnn Difede Albert Rizzo Barbara Olasov Rothbaum 《Current psychiatry reports》2010,12(4):298-305
Anxiety disorders, including phobias and post-traumatic stress disorder, are common and disabling disorders that often involve
avoidance behavior. Cognitive-behavioral treatments, specifically imaginal and in vivo forms of exposure therapy, have been
accepted and successful forms of treatment for these disorders. Virtual reality exposure therapy, an alternative to more traditional
exposure-based therapies, involves immersion in a computer-generated virtual environment that minimizes avoidance and facilitates
emotional processing. In this article, we review evidence on the application of virtual reality exposure therapy to the treatment
of specific phobias and post-traumatic stress disorder and discuss its advantages and cautions. 相似文献
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Daniela Woide Veronika Mayer Thorsten Wachtmeister Norbert Hoehn Albert Zink Udo Koehler Stefan Thalhammer 《Biomedical microdevices》2009,11(3):609-614
Here we present a novel approach for horizontal transfer of single particles after laser microdissection. The developed technique
is a single particle adsorbing system for highly selective and gentle horizontal transfer of microdissected fixed and living
material. As mediated via low-pressure technology, the transfer process can be precisely controlled, thus facilitating horizontal
particle transfer of any isolated material, e.g. tissue material, single cells or chromosomes, in addition to precise positioning
for sample release. This collection method allows one to predefine target positions and enables material transfer without
contamination to any planar microchip device. This contamination free transfer is indispensable for novel lab-on-a-chip systems
performing nanoscale polymerase chain reaction analyses. Using virtual reaction chamber microdevices, small amounts of microdissected material—as little as one single cell—can be directly transmitted
and immediately used for single cell analysis.
Daniela Woide and Veronika Mayer contributed equally to this paper. 相似文献
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Isabella Kardys Claudia M. van Tiel Carlie J.M. de Vries Hans Pannekoek André G. Uitterlinden Albert Hofman Jacqueline C.M. Witteman Moniek P.M. de Maat 《Human mutation》2009,30(3):417-423
Nuclear receptor subfamily 4, group A, member 2 (NR4A2, also called Nurr1) has lately become of interest with regard to atherogenesis. We examined the association between common variation in the NR4A2 gene and cardiovascular disease in the Rotterdam Study, a prospective population‐based study among persons aged ≥55 years. Three SNPs that tag common haplotypes across a 36‐kb region surrounding the NR4A2 gene were determined. Four haplotypes with frequencies >1% covered 96% of the genetic variation. In 5,650 participants without history of coronary heart disease, 729 coronary heart disease events occurred during a median follow‐up time of 11.9 years. NR4A2 haplotypes were neither associated with coronary events nor with intima‐media thickness (IMT), carotid plaques, or ankle‐arm index (AAI). NR4A2 haplotypes showed a tendency toward associations with aortic and coronary calcification (haplo.score global simulation P values 0.076 and 0.075, respectively), which seemed to be based on haplotype 2 (individual P values were both P=0.015). Furthermore, NR4A2 haplotype 3 was associated with higher high‐density lipoprotein (HDL) cholesterol and haplotype 4 with lower systolic blood pressure. In conclusion, NR4A2/NURR1 haplotypes were not associated with coronary events, carotid IMT, carotid plaques, or AAI. There was a tendency toward associations with aortic calcification and coronary calcification. Associations for NR4A2 were found with both HDL levels and blood pressure. It remains to be investigated which pathophysiological mechanisms pertain to NR4A2 function in cardiovascular disease. Hum Mutat 0, 1–7, 2009. © 2009 Wiley‐Liss, Inc. 相似文献
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Christopher Hrabchak Jessica Rouleau Isaac Moss Kimberly Woodhouse Margarete Akens Catherine Bellingham Fred Keeley Madison Dennis Albert Yee 《Acta biomaterialia》2010,6(6):2108-2115
Polypeptides based on the alternating hydrophobic and cross-linking domain structure of human elastin are capable of undergoing self-assembly to produce polymeric matrices with unique biological and mechanical properties. Here, we test the initial feasibility of using a genipin cross-linked elastin-based material as an acellular plug in the treatment of an osteochondral defect in the rabbit knee. Full-thickness defects in the weight-bearing surface of the medial femoral condyle in 18 New Zealand White rabbits were surgically produced and press fitted with cylindrical pads composed of genipin cross-linked elastin-like polypeptides, with identical wounds in the opposite knee left untreated as controls. The biocompatibility of the material, overall wound healing and regeneration of subchondral tissue was assessed at 2, 4 and 6 weeks by histological evaluation, synovial fluid analysis and microcomputerized tomography scanning. Histological analysis revealed the regeneration of subchondral bone at the periphery of the material, with evidence of hyaline-like overgrowth across the apical surface in 11/16 cases. Pads developed tight contacts with host tissue and appeared completely biocompatible, with no evidence of localized immune response or increased inflammation compared to controls. The material was stable to 6 weeks, with an aggregate elastic modulus calculated at ~470 kPa when tested under confined compression. Further studies are required to assess material degradation over time and long-term replacement with repair tissue. 相似文献