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Interfacial failure mechanisms and design principles in solid-state sodium batteries. [PDF]
Wang M +5 more
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Research on the Current Development Status of Redox Flow Batteries. [PDF]
Li R +5 more
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Intrinsically flexible multimode reconfigurable transistors for polymorphic circuits and neuromorphic devices. [PDF]
Wang W +12 more
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Single-Crystalline Borate Covalent Organic Frameworks for Solid-State Lithium Metal Batteries. [PDF]
Tian Y +12 more
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An Investigation of the Highly Stable Interface in Zn<sup>2+</sup>/Mn<sup>2+</sup>-EG-Based Deep Eutectic Electrolytes for Zinc-Ion Batteries. [PDF]
Hou J, Yan X, Mao X, Yao K, Xin X, Li M.
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Tumori Journal, 2002
Dendritic cells (DC) are the most effective or ‘professional’ of the antigen‐presenting cells (APC) that initiate primary immune responses. They are located at surveillance sites where they capture and process antigens. They then initiate and regulate T‐ and B‐cell responses by expressing lymphocyte costimulatory molecules, migrating to lymphoid organs
Massimo, Di Nicola, A, Massimo Gianni
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Dendritic cells (DC) are the most effective or ‘professional’ of the antigen‐presenting cells (APC) that initiate primary immune responses. They are located at surveillance sites where they capture and process antigens. They then initiate and regulate T‐ and B‐cell responses by expressing lymphocyte costimulatory molecules, migrating to lymphoid organs
Massimo, Di Nicola, A, Massimo Gianni
openaire +4 more sources
Dendritic Subunits Determined by Dendritic Morphology
Neural Computation, 2001A theoretical framework is presented in which arbitrarily branched dendritic structures with nonhomogeneous membrane properties and nonuniform geometry can be transformed into an equivalent unbranched structure (equivalent cable). Rall's equivalent cylinder is seen to be one part of the equivalent cable in the special case of dendrites satisfying the ...
Lindsay, K. A. +2 more
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