Introduction: The availability of short-stay beds for brief admission (less than 72hours) of crisis patients presenting to the emergency room is a model that has gained a growing interest because it allows time for developing alternatives to psychiatric hospitalization and favors a maintained functioning in the community. Still, the determinants influencing the disposition decision at discharge after crisis intervention remain largely unexplored.
Objective: The primary objective of this study was to determine the factors predicting aftercare dispositions at crisis unit discharge: transfer for further hospitalization or return to the community.
Biofabrication of living structures with desired topology and functionality requires the interdisciplinary effort of practitioners of the physical, life and engineering sciences. Such efforts are being undertaken in many laboratories around the world. Numerous approaches are pursued, such as those based on the use of natural or artificial scaffolds, decellularized cadaveric extracellular matrices and, most lately, bioprinting.
View Article and Find Full Text PDFCurrent limitations of exogenous scaffolds or extracellular matrix based materials have underlined the need for alternative tissue-engineering solutions. Scaffolds may elicit adverse host responses and interfere with direct cell-cell interaction, as well as assembly and alignment of cell-produced ECM. Thus, fabrication techniques for production of scaffold-free engineered tissue constructs have recently emerged.
View Article and Find Full Text PDFMesenchymal stem cells (MSCs), the archetypal multipotent progenitor cells derived in cultures of developed organs, are of unknown identity and native distribution. We have prospectively identified perivascular cells, principally pericytes, in multiple human organs including skeletal muscle, pancreas, adipose tissue, and placenta, on CD146, NG2, and PDGF-Rbeta expression and absence of hematopoietic, endothelial, and myogenic cell markers. Perivascular cells purified from skeletal muscle or nonmuscle tissues were myogenic in culture and in vivo.
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