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Axopodia

 
National Institutes of Health

Papers overview

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Highly Cited
2007
Highly Cited
2007
Heliozoa are ubiquitous, unicellular phagotrophs with slender radiating axopodia for trapping prey. We sequenced 18S rRNA genes… Expand
1978
1978
The cell division of Echinosphaerium nucleofilum, strain MA, was carefully observed under differential interference optics and a… Expand
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Highly Cited
1976
Highly Cited
1976
  • M. Schliwa
  • The Journal of cell biology
  • 1976
  • Corpus ID: 5646553
Low concentrations of calcium and magnesium ions have been shown to influence microtubule assembly in vitro. To test whether… Expand
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Highly Cited
1975
Highly Cited
1975
  • K. T. Edds
  • The Journal of cell biology
  • 1975
  • Corpus ID: 9191109
The motion of particles in the axopodia of Echinosphaerium nucleofilum is saltatory. In the present study, photokymograph records… Expand
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1974
1974
Abstract Although many divalent cations are known to affect the labile microtubules as their stabilizing agents, it was found… Expand
Highly Cited
1973
Highly Cited
1973
Breakdown of microtubules takes place at the tips of tubules at the distal ends of axopodia when axopodial shortening is induced… Expand
Highly Cited
1971
Highly Cited
1971
A systematic study of the resistance of heliozoan axopodia to pressure‐induced disintegrational changes has shown that… Expand
Highly Cited
1970
Highly Cited
1970
Solutions of cupric and nickelous sulfate have been shown to cause a retraction of heliozoan axopodia in much the same way as… Expand
Highly Cited
1967
Highly Cited
1967
When specimens of Actinosphaerium nucleofilum are placed at 4°C, the axopodia retract and the birefringent core (axoneme) of each… Expand
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Highly Cited
1966
Highly Cited
1966
Electron microscope preparations were made of specimens of Actinosphaerium nucleofilum fixed in glutaraldehyde before, during… Expand
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