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Titlebook: Cell Therapy; Current Status and F Dwaine F. Emerich,Gorka Orive Book 2017 Springer International Publishing AG 2017 cell transplant imagin

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Lecture Notes in Computer Scienceactory to medical treatment, and, therefore, it is important to search for alternative treatments. One of these alternative approaches could be cell therapy. In this chapter, we provide an overview of the results obtained by the direct grafting of cells in various animal models of drug-resistant epi
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J. F. M. Burg,R. P. van de Rietnding cell-based therapies has resulted in more than 14,560 clinical trials recorded by the NIH over the last decade; however, these trials have not resulted in consistent clinical benefit. These disappointing results could stem from both biological and engineering challenges. While supporting the s
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https://doi.org/10.1007/BFb0020710slational sciences. The motivation for this increased effort is the lack of treatment options for patients with debilitating and permanent loss of vision. The intricate anatomy and complex physiology of the eye pose unique challenges for potential ophthalmic therapeutics. These challenges are exacer
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Scheduling pipelined parallelism,er futuristic technologies, exotic therapies need to be more medically effective than current treatments, sufficiently robust to be scaled reproducibly, and economically viable as a commercial product. This chapter is a primer on what an academic cell biologist/inventor may expect when seeking fundi
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https://doi.org/10.1007/BFb0020710d cons in the use of stem cells in clinical trials and the set of problems linked to the fine-tuning of protocols finalized to the generation of large numbers of transplantable cells. We will describe the experimental studies focused on the analysis of survival and functional efficacy of the grafted
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