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Cell Process
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Center for Research in Biological Systems
Basic Science Building, Room 1000
University of California, San Diego
9500 Gilman Drive
La Jolla, CA 92093-0608, USA
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CIL:6552
NCBI Organism Classification
Oryctolagus cuniculus
Biological Process
skeletal muscle contraction
Cellular Component
cytoskeleton
Rabbit psoas skeletal muscle fibers were held at constant length and rigor induced by immersion in glycerol. The fibers were fixed in buffered glutaraldehyde, treated with tannic acid and quick-froze...
CIL:6556
NCBI Organism Classification
Oryctolagus cuniculus
Biological Process
skeletal muscle contraction
Cellular Component
cytoskeleton
Rabbit psoas skeletal muscle fibers were held at constant length and rigor induced by immersion in glycerol. The fibers were fixed in buffered glutaraldehyde, treated with tannic acid and quick-froze...
CIL:6561
NCBI Organism Classification
Oryctolagus cuniculus
Biological Process
skeletal muscle contraction
Cellular Component
cytoskeleton
Rabbit psoas skeletal muscle fibers were held at constant length and rigor induced by immersion in glycerol. The fibers were fixed in buffered glutaraldehyde, treated with tannic acid and quick-froze...
CIL:6562
NCBI Organism Classification
Oryctolagus cuniculus
Biological Process
skeletal muscle contraction
Cellular Component
cytoskeleton
Rabbit psoas skeletal muscle fibers were held at constant length and rigor induced by immersion in glycerol. The fibers were fixed in buffered glutaraldehyde, treated with tannic acid and quick-froze...
CIL:6265
NCBI Organism Classification
Oryctolagus cuniculus
Biological Process
skeletal muscle contraction
Cellular Component
cytoskeleton
Rabbit psoas skeletal muscle fibers were blended in the presence of 5 mM MgATP to dissociate thick and thin filaments. The medium was then gently replaced with 0.3M KCl to dissociate thick filaments....
CIL:6268
NCBI Organism Classification
Oryctolagus cuniculus
Biological Process
skeletal muscle contraction
Cellular Component
cytoskeleton
Rabbit psoas skeletal muscle fibers were blended in the presence of 5 mM MgATP to dissociate thick and thin filaments. The medium was then gently replaced with 0.3M KCl to dissociate thick filaments....
CIL:36653
NCBI Organism Classification
Paramecium multimicronucleatum
Biological Process
nuclear division
Cellular Component
micronucleus
The micronuclear separation spindle. Nuclear pores are not empty perforations but are closed by nonetchable material. The separation spindle must elongate as microtubules lengthen and/or slide against...
CIL:36628
NCBI Organism Classification
Paramecium multimicronucleatum
Biological Process
endoplasmic reticulum organization
Cellular Component
endoplasmic reticulum
A view of the ER on which IMPs are organized into lines, arcs, and circles indicating organization of proteins within the ER membrane and possibly peripheral proteins attached to its cytosolic surface...
CIL:36679
NCBI Organism Classification
Paramecium multimicronucleatum
Biological Process
organelle organization
Cellular Component
trichocyst
Tangential fractures through mature trichocysts. The planes in the paracrystalline stacks are exposed. The body is laced to the membrane but such associations must be severed when the trichocyst is di...
CIL:6269
NCBI Organism Classification
Oryctolagus cuniculus
Biological Process
skeletal muscle contraction
Cellular Component
cytoskeleton
Rabbit psoas skeletal muscle fibers were blended in the presence of 5 mM MgATP to dissociate thick and thin filaments. The medium was then gently replaced with 0.3M KCl to dissociate thick filaments....
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