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- W2000232820 abstract "Cinephotomicrographic analyses of the vigorous protoplasmic movements in slime mold plasmodia have demonstrated the following facts. Flow at any point reverses direction with an irregular periodicity. Reversals in flow direction spread upstream or downstream along channels of flow. Movements at two points only a few microns apart may be independent in direction and reversal timing. At least three structural states of protoplasm are consistent with viability; state I, liquid, flowing; state II, non-flowing, elastic, but showing same Brownian movement as I; state III, elastic and more rigid than II, showing no Brownian movement. These three states are rapidly interconvertible, but flow only occurs in state I plus state II. The movements cannot be explained in terms of contraction of a gel posterior to the flow. They require a motive force which is distributed through the plasmodium in a pattern similar to that of the movement itself. The diffusion drag-force model of Rashevsky supplies such a motive force, and is consistent with the above data, as well as with extensive results of Kamiya and co-workers." @default.
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- W2000232820 date "1959-04-01" @default.
- W2000232820 modified "2023-09-29" @default.
- W2000232820 title "Protoplasmic movement in slime mold plasmodia: The diffusion drag force hypothesis" @default.
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- W2000232820 doi "https://doi.org/10.1016/0014-4827(59)90151-x" @default.
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