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Biomedical subjects

J J Capowski

Publications and source records attributed to J J Capowski.

6 recordsLinked to original sources

Morphology of HRP-injected spinocervical tract neurons: effect of dorsal rhizotomy.

Twenty-five physiologically identified spinocervical tract (SCT) neurons in the sixth lumbar segment of the cat were filled with HRP by intracellular injection. All were reconstructed from sagittal sections using the camera lucida, and a subset (n = 18) was also reconstructed using a computer reconstruction system. Thirteen cells were in intact preparations, nine were in spared root preparations (L5, L6, S1, S2 cut; L7 spared), and three were in preparations with L5 through S2 cut. Analysis of the dendritic tree of these neurons revealed little change in gross morphology after partial deafferentation despite increased proportions sensitive to nociceptive input (Sedivec et al., 1983). The dendrites still largely respected the lamina II-III border, and relatively few dendrites were directed ventrally from the cell body, although the ratio of ventral to dorsal dendrites was greater than normal. The major change was an increase in surface area and volume caused by changes in diameter (but not length) of the dendrites. Larger-than-usual maximum branch order of individual dendritic trees of some cells was also observed after chronic deafferentation. Thus, SCT cells in deafferented segments do not undergo atrophy, but show, rather, limited signs of growth and the possibility of dendritic reorganization. We have also computed correlations between different parameters of these cells (cell body size, number and size of primary dendrites, total area and length of individual dendrites) and have found that, as in motoneurons, diameter of the primary dendrite measured 30 micron from the soma is significantly correlated with total dendritic surface area and length. SCT neurons tend to have more dendrites than spinal alpha-motoneurons, but total surface area is smaller for a given diameter of a proximal dendrite.

Animals

A simple motor controller for computer-assisted microscopy.

A very simple controller has been built which allows a laboratory computer to drive a stepping motor stage and focus axis motor of a research light microscope. Its cost is minimal; negligible in comparison to the controllers offered by the microscope manufactures. A subroutine has been written to enable the programmer to control the microscope easily. The controller has been installed in the UNC neuron reconstruction system and functions very well.

Computers

A simple hidden line removal algorithm for serial section reconstruction.

A simple and efficient program for removing the hidden lines from the computer graphics display of a three-dimensional structure has been developed. The algorithm is optimized for serial section reconstruction, that is, for three-dimensional structures composed of a series of stacked planar outlines. Using the algorithm, an anatomist can generate a realistic static picture of a reasonably complex reconstruction in about 20 s on a small laboratory computer.

Anatomy

The terminal arborization pattern of primary afferent fibers in the substantia gelatinosa of the spinal cord in the cat.

The spinal cords of adult cats were impregnated using the Golgi-Kopsch technique and cut in the sagittal plane. Richly arborizing axon-trees were found in the substantia gelatinosa (lamina II of Rexed). Axon arborizations, characterized by a long rostro-caudal course, a single-stem fiber, multiple-arborizing side branches and large terminal and en passant boutons, were subjected to a semi-quantitative and later to a computer-aided analysis. These arborizations, presumably of primary afferent origin (Réthelyi, 1977), are arranged in narrow sheets. The sheets of the individual arborizations are tilted with respect to the sagittal plane (the dorsal edge of the sheet having a more lateral position than the ventral edge), and tilted with respect to each other's plane, but they are rigorously oriented in the rostro-caudal direction. The average thickness of the sheets encompassing the terminal and en passant bulbs of these arborizations is 16.65 micrometer (S.D. = 2.86; n = 10). Occasionally, the side branches and terminal bulbs of a single stem fiber arborize into two separate sheets. These anatomical results suggest that the activity of the peripheral fibers spreads in long and narrow neuropil fields in the substantia gelatinosa. This pattern suggests a fine scale somatotopic arrangement.

Afferent Pathways