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Intramembrane structure of the sensory axon terminals in bullfrog muscle spindles
Authors:Noriaki Fujitsuka  Chie Fujitsuka  Yoshiharu Shimomura  Taro Murakami  Atsushi Yoshimura  Keisuke Kawakami  Woodrow F. Ritchie  Nobuhiro Kaneko  Masahiro Sokabe
Abstract:Much physiologic and morphologic research has been done into the sensory mechanism of the frog muscle spindle. However, no freeze-fracture study has described in detail the shape and intramembrane structure of the nonmyelinated sensory axon terminals of the frog muscle spindle. In this study, muscle spindles were isolated from the red part of bullfrog semitendinous muscles. Chemically fixed spindles were subjected to freeze fracturing. The sensory axon endings were reconstructed, and the size and density of intramembrane particles (IMPs) were measured along the sensory nerve endings. The axon terminals had four distinctive parts: parent trunks (>0.5 μm in diameter), primary branches (0.15–0.5 μm), terminal branches (<0.1 μm), and varicosities (0.02–0.5 μm). IMPs ranged from 5 nm to 21 nm in diameter and were present in the intramembrane space of the plasma membrane all throughout the nonmyelinated sensory nerve endings. Mean IMP sizes in the protoplasmic face (PF) and the external face (EF), respectively, were 8.1 nm and 8.4 nm in the parent trunks, 8.8 nm and 8.8 nm in the primary branches, 9.4 nm and 9.0 nm in the varicosities, and 8.7 nm and 8.7 nm in the terminal branches. Mean IMP size in the PF was smallest in the parent trunk and largest in the varicosity. Mean IMP densities (numbers of IMPs per μm2) in the PF and the EF, respectively, were 2,500 and 700 in the parent trunks, 2,200 and 500 in the primary branches, 1,700 and 400 in the varicosities, and 1,000 and 300 in the terminal branches. Density decreased with the tapering of the axon terminal, with IMPs distributed evenly in the PF and the EF. The characteristic intramembrane structure of sensory nerve endings is discussed. Anat. Rec. 252:340–354, 1998. © 1998 Wiley-Liss, Inc.
Keywords:complex muscle spindle  density and size of intramembrane particles  freeze-fracture
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