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Squamous cell carcinoma of lung stage 4 icd
Squamous cell carcinoma of lung stage 4 icd

... Cutaneous squamous cell carcinoma (cSCC) is the second most common skin cancer, after basal cell carcinoma. Other significant skin lesions are actinic. Approximate Synonyms . Adenocarcinoma, lung; Adenocarcinoma, lung stage 1; Adenocarcinoma, lung stage 2; Adenocarcinoma, lung stage 3; Adenocarcinom ...
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Sunil Ram Kamble
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... D.Y. Patil Inst. of Biotech and Bioinformatics, Akurdi,Pune. Project Title: :“Effect on alcohol production by increase in carbohydrate sources and other parameters in yeast fermentation” . Project Profile:  Modifying the microorganism by different methods.  Optimizing the parameters of fermentatio ...
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... need for alternative therapies in nervous system disorders. By definition, stem cells have the capacity for self-renewal (i.e. they divide indefinitely) and they are pluripotent (i.e. they have the capacity to differentiate into many different types of body tissue, including nervous system cells). T ...
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part b: inquiry and communication - 52 marks

... 12. A major function of the cell membrane is to: a. produce RNA for the ribosomes. b. control what enters and leaves the cell. c. hold adjacent cells together. d. manufacture ribosomes. 13. A freshwater plant is put into a concentrated salt solution. The cells of the plant probably will: a. take in ...
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Organ-on-a-chip

An organ-on-a-chip (OC) is a multi-channel 3-D microfluidic cell culture chip that simulates the activities, mechanics and physiological response of entire organs and organ systems. It constitutes the subject matter of significant biomedical engineering research, more precisely in bio-MEMS. The convergence of labs-on-chips (LOCs) and cell biology has permitted the study of human physiology in an organ-specific context, introducing a novel model of in vitro multicellular human organisms. One day, they will perhaps abolish the need for animals in drug development and toxin testing.Although multiple publications claim to have translated organ functions onto this interface, the movement towards this microfluidic application is still in its infancy. Organs-on-chips will vary in design and approach between different researchers. As such, validation and optimization of these systems will likely be a long process. Organs that have been simulated by microfluidic devices include the heart, the lung, kidney, artery, bone, cartilage, skin and more.Nevertheless, building valid artificial organs requires not only a precise cellular manipulation, but a detailed understanding of the human body’s fundamental intricate response to any event. A common concern with organs-on-chips lies in the isolation of organs during testing. ""If you don’t use as close to the total physiological system that you can, you’re likely to run into troubles"" says William Haseltine, founder of Rockville, Maryland. Microfabrication, microelectronics and microfluidics offer the prospect of modeling sophisticated in vitro physiological responses under accurately simulated conditions.
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