Multi Unlocker Key V 56 ((FULL))
Multi Unlocker Key V 56 ((FULL))
Multi Unlocker Key V 56
the average values for propulsive force generated during linear swimming and turning from multi-flagellated propulsion of t. foetus are shown in table 2. the average propulsive force values for linear swimming and turning was similar to each other, and were approximately four times greater than that of the single flagellum in both organisms. a comparison between both organisms shows that t. foetus could generate 1.25 and 4.58 times the thrust of e. coli during linear swimming and turning, respectively.
the flagella-cell interface is the point of contact between the flagella and the cell body, and as previously discussed, its shape and orientation to the cell body has a strong impact on the resulting force generated by the flagellum. considering this, the maximum or minimum width of the flagella-cell interface in linear swimming was plotted against the maximum or minimum force generated during linear swimming (figure 8 ). it is evident that the flagella-cell interface has an impact on the force generated by the flagellum. a negative correlation existed between the flagellar-cell interface width and the propulsive force. however, the positive correlation was only significant for e. coli, but not for t. foetus.
a t. foetus is a flagellated protozoan parasite that lives in the genitourinary system of humans and other primates and is the causative agent of trichomoniasis. the parasite has distinct morphology and swimming characteristics, particularly during host infection, compared to other trichomonads. the outer structure of t. foetus is a rigid outer sheath, which modifies the shape of the parasite and has also been reported to provide protection from environmental stresses such as ph, high-temperature and osmotic shock. within the parasite, there are 2 flagella, and each consists of 9 tubular microtubules in 2 flagellar bundles. the anterior flagellum is relatively more straight and tapers down, whereas the posterior flagellum is curved and is thicker. the flagella beat in a coordinated manner, which is similar to the alignment and timing of flagella beating observed in sperm and chlamydomonas, suggesting that the strategy might have evolved for sensing or manoeuvring.
the average values for propulsive force generated during linear swimming and turning from multi-flagellated propulsion of t. foetus are shown in table 2. the average propulsive force values for linear swimming and turning was similar to each other, and were approximately four times greater than that of the single flagellum in both organisms. a comparison between both organisms shows that t. foetus could generate 1.25 and 4.58 times the thrust of e. coli during linear swimming and turning, respectively.
the flagella-cell interface is the point of contact between the flagella and the cell body, and as previously discussed, its shape and orientation to the cell body has a strong impact on the resulting force generated by the flagellum. considering this, the maximum or minimum width of the flagella-cell interface in linear swimming was plotted against the maximum or minimum force generated during linear swimming (figure 8 ). it is evident that the flagella-cell interface has an impact on the force generated by the flagellum. a negative correlation existed between the flagellar-cell interface width and the propulsive force. however, the positive correlation was only significant for e. coli, but not for t. foetus.
a t. foetus is a flagellated protozoan parasite that lives in the genitourinary system of humans and other primates and is the causative agent of trichomoniasis. the parasite has distinct morphology and swimming characteristics, particularly during host infection, compared to other trichomonads. the outer structure of t. foetus is a rigid outer sheath, which modifies the shape of the parasite and has also been reported to provide protection from environmental stresses such as ph, high-temperature and osmotic shock. within the parasite, there are 2 flagella, and each consists of 9 tubular microtubules in 2 flagellar bundles. the anterior flagellum is relatively more straight and tapers down, whereas the posterior flagellum is curved and is thicker. the flagella beat in a coordinated manner, which is similar to the alignment and timing of flagella beating observed in sperm and chlamydomonas, suggesting that the strategy might have evolved for sensing or manoeuvring.
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