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Biomedical subjects

R M Harris

Publications and source records attributed to R M Harris.

At least 55 records · Page 3Linked to original sources

Immobilization impairs recovery after spinal cord injury.

The effect of immobilization on motor recovery was studied in adult rats after subtotal spinal cord section. Anesthetized rats underwent three-quarter section of the cord, sparing the left lateral funiculus. After surgery, half the rats were placed in immobilization tubes for three to four weeks; the others were allowed free mobility. Hindlimb motor function was graded at various times in the two groups. In contrast to the marked recovery observed in mobile animals, the immobilized rats with similar cord lesions showed no significant motor recovery during the period of immobilization. Immobilized rats without cord lesions showed minimal transient deficits. In conclusion, hindlimb activity appears to be a necessary condition for motor recovery after subtotal spinal cord injury.

Animals↗

Motor recovery in the absence of segmental afferents: a case study of incomplete spinal cord injury.

A 41-year-old male with a prior left L-5/S-1 radiculopathy developed complete quadriplegia following a gunshot wound to the left anterior neck. He subsequently recovered pinprick sensation over the left side of the trunk and lower extremity; and a right peroneal SEP, suggested sparing of long tracts on the right side. Voluntary motor strength gradually recovered more on the left than right for the L-5/S-1 segments, where tendon reflexes were absent. This unique case is discussed with respect to the effect of absent segmental afferents on suprasegmental recovery.

Adult↗

Lipid content and lipid type as determinants of the epidermal permeability barrier.

During terminal differentiation, mammalian epidermal lipids undergo striking changes in both composition and distribution. Phospholipids and neutral lipids are replaced by a mixture of ceramides and neutral lipids organized in intercellular lamellar bilayers. Whether all of these lipids and/or whether specific lipid classes regulate permeability barrier function is not known. When hairless mice were treated with acetone, the degree of barrier perturbation (measured as transepidermal water loss, TEWL) increased linearly with the amount of lipid removed. Moreover, virtually all lipid species appeared to be removed by acetone treatment. In contrast, the nonpolar organic solvent, petroleum ether, while removing greater amounts of lipids, provoked lesser barrier abnormalities. As determined by both quantitative thin-layer chromatography and histochemistry, petroleum ether selectively extracted nonpolar lipids leaving sphingolipids and free sterols in place. In petroleum ether-treated animals, subsequent acetone treatment removed additional sphingolipids and produced a dramatic increase in TEWL. A linear relationship existed for the quantities of sphingolipid removed and degree of barrier disruption in acetone-treated, but not petroleum ether-treated animals. These results support a relationship between the total lipid content of the stratum corneum and barrier function. Secondly, although the results demonstrate the participation of the total lipid mixture in the barrier, removal of nonpolar species alone appears to cause only a modest level of barrier disruption, while removal of sphingolipids and free sterols leads to a more profound level of barrier perturbation.

Acetone↗

Locomotor recovery following subtotal spinal cord lesions in a rat model.

Locomotor function is described over 4 weeks in adult rats recovering from mid-thoracic spinal cord lesions, sparing the left lateral and/or ventral funiculus. A composite locomotor score was developed to follow changes by grading the swing and stance phases of locomotion, hindleg struggling withdrawal, and hopping. Motor recovery was more rapid in left than right hindlegs, consistent with sparing of left supraspinal pathways. Two temporal phases of recovery were noted in some animals, perhaps arising from two different recovery mechanisms. Motor recovery in the right hindleg was similar whether a left lateral or ventral funiculus was spared.

Animals↗

Axon collaterals in the thalamic reticular nucleus from thalamocortical neurons of the rat ventrobasal thalamus.

Thalamocortical relay neurons from the rat ventrobasal nucleus were identified physiologically and injected intracellularly with horseradish peroxidase. The axons of these cells were followed through serial sections in order to determine if collaterals were given off within the ventrobasal nucleus or the thalamic reticular nucleus. No local collaterals were seen in the ventrobasal nucleus, thus indicating that interactions between relay cells in this nucleus are minimal. Of axons that could be followed into the internal capsule, 76% gave off visible collaterals in the thalamic reticular nucleus. Half of these axons had collaterals showing extensive branching with the potential of innervating a large number of thalamic reticular neurons. The other half had short, simple branches of restricted extent. No correlations were found between the physiological properties of a cell and the existence or extent of axon collaterals. These results describe the anatomical basis for the initial part of a feedback loop through the thalamic reticular nucleus that provides the major inhibitory influence on rat ventrobasal neurons.

Animals↗

Local circuit neurons in the rat ventrobasal thalamus--a GABA immunocytochemical study.

The ventrobasal thalamus of seven rats was processed for immunocytochemistry using antisera to glutamate decarboxylase or gamma-aminobutyrate (GABA). Glutamate decarboxylase-stained sections showed a network of stained fibers and terminals but no stained cell bodies. GABA-stained sections had fewer stained fibers and terminals but did show a few stained cell bodies. Cell bodies were especially apparent when carbazole was used for a chromogen for the peroxidase-antiperoxidase visualization. The GABA-stained cells were found to be distributed throughout the ventrobasal complex, to have smaller soma cross-sectional areas than most other cells (81 +/- 34 microns vs 105 +/- 36 microns for all cells) and to make up 0.4 +/- 0.3% of the neuronal population of the ventrobasal complex. Injections of horseradish peroxidase into the somatosensory cortex (SI) retrogradely filled many neurons in the ventrobasal thalamus, but none of these labeled neurons were double labeled with GABA. These results indicate that the GABA-labeled cells probably represent a small population of local circuit neurons in the rat ventrobasal thalamus.

Animals↗

Morphology of physiologically identified thalamocortical relay neurons in the rat ventrobasal thalamus.

The anatomical structure of physiologically identified neurons of the rat ventrobasal thalamus was studied in order to determine if there are morphologically distinct subsets of neurons that correlate with the somatosensory submodalities processed by these cells. Intracellular recordings were used to determine the modality and receptive field of a neuron, after which horseradish peroxidase was iontophoretically injected into the cell, allowing it to be histologically visualized. Computer-assisted measurements of the labeled cells were made to quantitatively analyze the dendritic structure. Cells were divided into physiological groups stimulated by whiskers, glabrous skin, furry skin, noxious stimulation, or joint rotation. Qualitatively, all cells appeared similar, with the same types of branching patterns. Dendritic spines and long, sinuous appendages were found on all distal dendrites. Quantitatively, no statistically significant differences in dendritic structure were found between functionally defined groups with the aid of a number of parameters, including a fitted dendritic ellipse. There was a weak correlation between somal cross-sectional area and receptive field size, suggesting larger cells processed larger receptive fields. In summary, the ventrobasal thalamus of the rat, in contrast to that of higher mammals, appears to contain only one major cell type and to have a very simple neuronal circuitry.

Action Potentials↗

Light microscopic depth measurements of thick sections.

Measurements of the thickness of a thick histological section or the depth of an object within the section, can be made most easily by reading differences in the setting of the fine focus knob of a compound light microscope. Two corrections must be made to such measurements: (1) when using a dry objective, a factor of 1.5 for the index of refraction of the specimen, and (2) a correction for the calibration of the fine focus itself. In addition, several precautions should be taken to minimize errors in the readings.

Histological Techniques↗

The incidence of pine pollen reactivity in an allergic atopic population.

In the past there has been controversy concerning the allergenicity of pine pollen. Most reports have suggested that pine pollen has not been a significant allergen due to its low antigenicity and relatively large size. While little investigation has been done, there are some older studies supporting pine pollen as an allergen and its use in individual cases for immunotherapy. To our knowledge, no extended testing or screening had been done. A total of 200 patients presenting with symptoms during the pine pollen season were tested to Pinus radiata. Five (3.2%) of the 155 pollen-sensitive patients exhibited skin test sensitivity to Pinus radiata. Based on this data it is concluded that the incidence of skin test reactivity to pine pollen is low.

Humans↗

Childhood asphyxiation by food. A national analysis and overview.

Data on all identified food-related asphyxiations of infants and children aged 0 to 9 years in 41 states from 1979 to 1981 were analyzed by type of food and age of child. Nationally, one death occurred approximately every five days. More than 90% occurred in infants and children younger than 5 years and 65% in infants younger than 2 years. Round foods were most often mentioned of the 103 foods specifically identified on death certificates. Most frequently cited were hot dog products (17 cases, 17%), candy, ten; nuts, nine; and grapes, eight. Hot dogs caused deaths from infancy through 3 years (more than two thirds of all deaths from meat products) and seven of ten deaths in 3-year-olds. Characteristics of foods, children, and environment can be related to three phases of food asphyxiation: penetration, occlusion, and expulsion. Preventive measures include product modification, warning labels, and dissemination of information on high-risk foods.

Airway Obstruction↗

Computer-assisted analyses of barrel neuron axons and their putative synaptic contacts.

The "barrels" in layer IV of rodent SmI neocortex receive inputs from individual whiskers on the contralateral face. Previous analyses of neuronal morphology in mouse and rat barrel cortex, as revealed by Golgi impregnations, have focused on the dendritic patterns of the stellate cells. The cells can be classified into two groups: Class I cells with spiny dendrites and Class II cells with smooth, beaded dendrites. These classes can be subdivided further according to somal position and spatial distribution of dendrites with respect to barrel cytoarchitectonic boundaries. In the present study the axons of these cells were examined and the locations of close appositions to dendrites of other impregnated neurons were mapped. All data are taken from Golgi-Cox preparations, cut parallel to layer IV at 140 microns, counterstained with Nissl to reveal the barrels, and measured with a computer-microscope. Axons which had extensive branching within the section (present on 10% of all impregnated cells) were chosen for measurement. The analysis of the axons revealed: (1) Class I axons are thin and directed to the white matter with recurrent collaterals in the barrels, while Class II axons are thick, frequency beaded, and directed toward the pia before cascading down into the barrels; (2) in layer IV, the axons of both cell classes tend to be as restricted to a barrel as the dendrites of the same cell are (i.e., most axons are confined to one barrel); (3) within layer IV, the Class II cell axons have a total length about three times that of Class I cell axons, and about four times as many branch points. The analysis of the appositions of these axons to impregnated dendrites of other cells revealed: (1) A majority of "contacts" tended to be made by terminal branches of the axonal trees. (2) For the Class I neurons, a greater number of appositions occur near the distal ends of complete dendritic segments. As measured from the "contacted" cell soma, appositions are more or less uniformly distributed along dendritic trees. (3) No striking patterns are found, such as an obvious propensity for axons of one cell type to prefer or avoid another cell type. These results show that the axons of barrel cells of each class are as consistent and distinctive as their dendritic trees. Specifically, the cells in each class can be distinguished by their axonal patterns on purely numerical bases.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Dendritic plasticity in mouse barrel cortex following postnatal vibrissa follicle damage.

Neonatal damage to a row of mystacial vibrissae in the mouse causes cytoarchitectonic alterations in the contralateral SmI barrel Cortex. The region for the appropriate row of barrels develops as a smaller homogeneous zone while barrels in adjacent rows are expanded. To investigate the effects of this phenomenon on the morphology of individual neurons, adult mice in which Row-C vibrissae (the middle row) had been cauterized on days 1--5 following birth were processes by the Golgi-Cox method. All neurons in layer IV of the Row-C zones, of the Row-C barrels of a control hemisphere, and some neurons in the adjacent enlarged Row-B barrels were measured with a computer-assisted microscope. Their location with respect to cytoarchitectonic boundaries was determined from a Nissl counterstain. Data from 239 cells are presented. For each cell, measures of dendritic length and branching were obtained. The orientation of the dendritic trees with respect to the barrel sides was also measured. The measures of dendritic lengths and branching did not show any differences between control and experimental animals or between animals damaged on different days. Measures of orientation did show changes related to the age at the time of damage. In animals damaged on postnatal day (PND)-3 or earlier, many cells in the Row-C zone were observed with dendrites orienting toward the adjacent Rows-B or -D. "Putative" Row-C cells in the expanded parts of Rows-B and -D were strongly oriented toward barrels in those rows. These results suggest that dendritic length and branching may be determined intrinsically but that the orientation of the dendritic trees appears to be strongly influenced by the pattern of extrinsic afferent inputs from the thalamus. In the case of the whisker-damaged animals, the orientation of the Row-C neuron dendritic trees toward the "functional" thalamocortical inputs in Rows-B and -D contributes strongly to the resultant cytoarchitectonic changes. The implications of these results for normal developmental processes and their relationship to functional studies of the cortex are considered.

Aging↗