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Total Systems Intervention (TSI) is an approach to intervening in problem situations which has much to offer where complex
interacting issues need to be addressed by the complementary use of intervention methodologies. That such an approach has
much in common with Action Research (AR) has been recognized, with much recent effort being devoted to the relationship between
AR and Critical Systems Thinking (CST), the theoretical endeavor underpinning TSI. This paper further develops this line of
debate and relates AR or Human Inquiry (HI) more directly to TSI, using an information systems intervention to enhance the
study. The outcome is a demonstration of how TSI implicitly uses techniques informed from the field of Action Research, and
how a more thorough synthesis of HI with TSI might serve to improve the overall intervention process. 相似文献
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Induction of hemopoietic chimerism in the caprine fetus by intraperitoneal injection of fetal liver cells 总被引:1,自引:0,他引:1
R. D. Pearce D. Kiehm D. T. Armstrong P. B. Little J. W. Callahan L. R. Klunder J. T. R. Clarke 《Cellular and molecular life sciences : CMLS》1989,45(3):307-308
Summary Intraperitoneal injection of allogeneic liver cells from 43-day-old male fetuses into normal 60-day female goat fetuses resulted in persistent hemopoietic chimerism in surviving recipients without clinical evidence of graft-versus-host disease. Transplantation of normal fetal liver cells into preimmunocompetent goat fetuses affected with -D-mannosidosis may provide an alternative strategy for evaluating hemopoietic stem cell transplantation in the treatment of human lysosomal storage diseases. 相似文献
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Stem cells, cancer, and cancer stem cells. 总被引:312,自引:0,他引:312
Stem cell biology has come of age. Unequivocal proof that stem cells exist in the haematopoietic system has given way to the prospective isolation of several tissue-specific stem and progenitor cells, the initial delineation of their properties and expressed genetic programmes, and the beginnings of their utility in regenerative medicine. Perhaps the most important and useful property of stem cells is that of self-renewal. Through this property, striking parallels can be found between stem cells and cancer cells: tumours may often originate from the transformation of normal stem cells, similar signalling pathways may regulate self-renewal in stem cells and cancer cells, and cancer cells may include 'cancer stem cells' - rare cells with indefinite potential for self-renewal that drive tumorigenesis. 相似文献
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