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Biomedical subjects

E Eldred

Publications and source records attributed to E Eldred.

At least 19 recordsLinked to original sources

Comparison of contraction times of a muscle and its motor units.

The twitch contraction time (CT) for each of 13 soleus (SOL) and 13 medial gastrocnemius (MG) muscles was compared with the mean CT from a sample of its motor units (MUs; 356 total) to see if the CT of a whole muscle when tested at its optimal length (Lo) differed systematically from that of its MUs tested at their individual Lo's. The CTs of the whole muscle were significantly longer in the ratio of 1.13. This is consistent with a hypothesis that electrical-field effects result in a more protracted contraction of the individual muscle fiber.

Animals

Physiological and developmental implications of motor unit anatomy.

There is increasing evidence that the architectural design and arrangement of the fibers within a motor unit have important physiological and developmental ramifications. Limited data, however, are available to directly address this issue. In the present study the physiological properties of one motor unit in each of seven cat tibialis anterior (TA) muscles were determined. Each of these units then was repetitively stimulated to deplete the glycogen in all muscle fibers within the unit. Subsequently, the length, type of ending, and spatial distribution of fibers sampled from these physiologically and histochemically typed motor units were determined. Four fast fatigable (FF), one fast, fatigue resistant (FR), and two slow (S) motor units (MU) were studied. The samples consisted of all those glycogen-depleted fibers (9-27) contained within a single fascicle or a circumscribed area of each of the motor unit territories. The mean fiber lengths for the two slow motor units were 35.9 and 45.5 mm. The mean fiber lengths for the fast motor unit samples ranged from 8.8 to 48.5 mm. Some fibers of both the fast and slow units reached lengths of 58 mm. Most of the fibers in the slow units extended the entire distance between the proximal and distal musculotendinous planes, had relatively constant cross-sectional areas, and terminated at the tendon as blunt endings. In contrast, the majority of the fibers in the fast units terminated intrafascicularly at one end, and the cross-sectional area decreased progressively along their lengths, that is, showed a tapering pattern for a significant proportion of their lengths. Therefore, the force generated by units that end midfascicularly would appear to be transmitted to connective tissue elements and/or adjacent fibers. All fibers of a fast unit within a fascicle were located at approximately the same proximo-distal location. Thus, developmentally the selection of muscle fibers by a motoneuron would seem to be influenced by their spatial distribution. The architectural complexities of motor units also have clear implications for the mechanical interactions of active and inactive motor units. For example, the tension capabilities of a motor unit may be influenced not only by the spatial arrangement of its own fibers, but also by the level of activation of neighboring motor units.

Animals

Nursing skills necessary for competency in the high-tech health care system.

Neighbors, Sullivan, and Eldred tell us how schools of nursing and institutions of nursing practice conform--or fail to conform--in regard to what constitutes basic nursing procedures. Are schools leaving the new graduate unprepared for everyday practice? A survey of association degree schools is revealing.

Clinical Competence

Metabolic and fiber size properties of cat tibialis anterior motor units.

The variability among single muscle fiber enzymatic activities and fiber size within a motor unit was studied in the cat tibialis anterior (TA) muscle. Fourteen units were isolated for physiological testing using standard ventral root filament stimulation techniques, and the muscle fibers of these units were identified by glycogen depletion. The cross-sectional areas, succinate dehydrogenase (SDH) and alpha-glycerolphosphate dehydrogenase (GPD) activities, and the relative alkaline myofibrillar adenosine triphosphate staining densities of a sample of glycogen-depleted and -nondepleted muscle fibers were determined using quantitative histochemical techniques. Each of the unit types previously identified to be present in the TA, based on physiological criteria, were represented by the sample population. The variability among the fibers of a unit was significantly more than the variability among repeated measures on a single fiber for cross-sectional area and SDH and GPD activities. The mean coefficients of variation for SDH and GPD activity within motor unit fibers were 29 and 56%, respectively, whereas the variability between fibers of different units within a muscle was significantly greater (53 and 69%, respectively). Additionally, the mean coefficient of variation for cross-sectional area among motor unit fibers was less than that among fibers not depleted of glycogen (25 vs. 46%). These data suggest that although there is clear evidence for some level of neural control of the properties of a muscle unit (variation within a unit was less than the variation across units), this control is not complete, since the variability among fibers of a single unit was significantly more than the variability found between repeated measurements on a single fiber.

Animals

Maximal force as a function of anatomical features of motor units in the cat tibialis anterior.

In 11 tibialis anterior muscles of the cat, a single motor unit was characterized physiologically and subsequently depleted of its glycogen through repetitive stimulation of an isolated ventral root filament. Muscle cross sections were stained for glycogen using a periodic acid-Schiff reaction, and single-fiber optical densities were determined to identify those fibers belonging to the stimulated motor unit. Innervation ratios were determined by counting the total number of muscle fibers in a motor unit in sections taken through several levels of the muscle. The average innervation ratios for the fast, fatigueable (FF) and fast, fatigue-resistant (FR) units were similar. However, the slow units (S) contained 61% fewer fibers than the fast units (FF and FR). Muscle fibers belonging to S and FR units were similar in cross-sectional area, whereas fibers belonging to FF units were significantly larger than fibers belonging to either S or FR units. Additionally, muscle fibers innervated by a single motoneuron varied by two- to eightfold in cross-sectional area. Specific tensions, based on total cross-sectional area determined by summing the areas of all muscle fibers of each unit, showed a modest difference between fast and slow units, the means being 23.5 and 17.2 N X cm-2, respectively. Variations in maximum tension among units could be explained principally by innervation ratio, although fiber cross-sectional area and specific tension did contribute to differences between unit types.

Animals

Post-stimulation effects of high-frequency stimulation on sensory discharge from muscle.

Previously the application of stimuli of 600 Hz at adjustable strength applied to a muscle's nerve has been proposed as a means of reducing the muscle's contraction in spastic conditions, or when combined with a second tetanic stimulation, of limiting contraction to smaller, physiologically more relevant motor units in the paralyzed state. The side-effects on muscle spindles of such stimuli as seen in the cat's gastrocnemius are reported. During stimulation axonal impulses followed faithfully for periods running into minutes. After stimulation, a pause in ongoing firing with a duration dependent on stimulus-train length and a two-phased recovery occurred. Responses to dynamic stretch of the muscle were affected as well. The contractions of intrafusal fibers activated in several ways was seen to strongly offset the depression. In a clinical application, nevertheless, short-lived depression of all proprioceptive modalities following stimulation should be expected, with corresponding disturbance on sensory perception and reflex effects.

Animals

Discharge from total populations of Ia and II afferent fibers in the cat's deefferented medial gastrocnemius muscle during static stretch.

Estimates were made of the changing volumes of discharge arising from the total populations of Ia and II spindle afferent fibers in the cat's deefferented medial gastrocnemius as the muscle was extended stepwise over its excursion range. The estimates were based on values reported elsewhere for (i) the incidence of active units and (ii) their rates of discharge at static muscle lengths normalized against the excursion range of the particular muscle, together with (iii) the numbers of Ia and II afferent fibers in the medial gastrocnemius as derived from a critical review of published information. Curves representing the total discharge of the two afferent types are similar and show three phases: an initial level of spontaneous activity, a somewhat curvilinear rise associated with early recruitment of units during stretch, and rectilinear increase after full recruitment. There was no appearance of saturation. Completion of recruitment of both types of units occurred about halfway in the extension range of the passive muscle. Over most of the excursion range, inflow from the group II population was about one-third greater than that from the Ia units.

Afferent Pathways

Control of muscle contractile force through indirect high-frequency stimulation.

With a view to possible application in an orthotic device, study was made of the attenuation of background, indirectly induced muscle tetanus produced by superimposing high-frequency electrical stimulation of the muscle nerve. The effects of varying duration, current and frequency of pulses of the stimulus were outlined, and it was concluded that optimal application might be obtained using a stimulus frequency of 500 Hz, a pulse duration of 50 musec, and varying the frequency to gradate the effect.

Acoustics

Fatigue considerations of muscle contractile force during high-frequency stimulation.

In a model for control of muscle force, wherein an induced background tetanus is attenuated by concurrent indirect stimulation at frequencies in the 0.6- to 10-kHz range, evaluation was made for effects on muscle fatigue of differing rates of the tetanic and high-frequency stimuli. Relatively little fatigue, and yet nearly the complete range of attenuation, were favored by lower frequencies of both these stimuli, e.g., tetanic stimulation at 50 Hz and a blocking frequency of 600 Hz.

Animals

The chronic spinalized cat: a model for neuromuscular plasticity.

The ability of the hindlimbs to produce weight-supported locomotion on a motorized treadmill was assessed in cats spinalized (T12) at 2 or 12 weeks of age. The animals were assigned at random to nonexercised (NE) or exercised (E) groups, the latter being trained to walk on the treadmill for 30 minutes, five-times weekly. During the four-month recovery period, spontaneous clonus at 8 to 12 Hz and hyperactive cutaneous reflexes developed in all animals. Age of spinalization had an effect on the recovery of locomotion, as kittens in both the 2E and 2NE groups rated significantly higher than the 12E and 12NE cats. Treadmill training was not critical to the recovery process in the 2-week transected kittens, since both 2E and 2NE cats exhibited stepping with adequate weight support of the hindquarters. However, none of the 12NE cats developed weight-supported stepping, while some of the 12E cats did. Electromyographic recordings of ankle muscles from cats demonstrating the best locomotion revealed that progressive recruitment of the soleus and gastrocnemius muscles was normal despite significant changes in the fiber composition of these extensors. Kinematic analyses of these same animals revealed that gait abnormalities, such as the absence of a yield phase during stance and uncoupling of knee and ankle actions, were more common in the 2NE and 12E animals as compared to the 2E animals. It was concluded that although the spinal cord contains the basic pattern-generating circuitry essential for ambulatory locomotion, the development or recovery of this behavior was influenced by the animal's age at the time of cord transection, and to a less obvious extent by subsequent training.

Animals

Static stretch sensitivity of Ia and II afferents in the cat's gastrocnemius.

The static discharge characteristics of deefferented Ia and II spindle afferents in the cat medial gastrocnemius muscle have been compared with respect to incidence and firing rate of spontaneously firing units, length threshold of nonspontaneous units, linearity of the response to stretch, and position sensitivity. Measurements of the stretch response were taken 20s after each step increase in length so as to obtain the nearly fully adapted rate. Under this condition the frequency-length relationship was quite linear, especially for group II units. The mean position sensitivity of group II fibers exceeded that of Ia fibers in the ratio of 1.5: 1.0. The incidence of spontaneously discharging units was about 20% for both types of unit. The relationships between some of these measures and axonal conduction rate were examined. No correlation of position sensitivity with axonal conduction velocity was detected for either afferent type, but the length thresholds of the group II afferents showed a significant trend for slower conducting, that is, smaller fibers to be less sensitive. There was some indication of a direct relationship between conduction velocity and length threshold for Ia fibers. The contradiction to the "size principle" and mechanisms contributing to the static discharge behavior of the spindle are discussed.

Animals

Changes in excitability of tendon tap and Hoffmann reflexes following voluntary contractions.

The effects on the Hoffmann reflex and tendon tap responses in the human soleus and medial gastrocnemius muscles of a brief conditioning volitional contraction have been compared with the objective of distinguishing contributions from the central nervous system and the periphery. The H-wave on successive trials over a 50 sec period following contraction for the most part demonstrated a depression, especially upon the initial trial. The T-wave responses in the first few trials were greater than those in the control period. Using the assumption that responses to tendon taps had been reduced by the amounts reflected in the excitability curve for H-response, it was deducted that a marked enhancement in T-wave excitability had been present at the initial tendon tap and more moderate facilitation thereafter. This is consistent with the post-contraction discharge and increase in stretch sensitivity of spindle receptors seen after contraction of a muscle in experimental animals. It is concluded that such effects on spindles may occur in man, maybe of such force as to detectably influence dynamic movements.

Adult

Spinal projection to the dorsolateral nucleus of the caudal basilar pons in the cat.

In the cat, a spinal projection to a restricted area of the basilar pontine grey has been revealed with use of anterograde degeneration technique (Fink-Heimer). The area was ipsilateral to the spinal lesion, restricted to the far caudal limit of the pons, and included the dorsal and the dorsolateral subdivisions of the pontine nuclei (PN). Comparisons following high cervical, midthoracic and upper lumbar spinal lesions did not reveal any somatotopic organization. Only a few spinopontine fibers had origins below segmental level L4. Lesions of various quadrants of the cord indicated that the spinopontine fibers ascended through the dorsolateral funiculus, and not through either the dorsal or the ventral funiculi. Comparison with the degeneration effects of cerebral cortical lesions showed that the spinal projection to the PN overlapped to some extent with the projection from the first sensorimotor and second somatosensory cortices. In the rat no comparable spinopontine projection was found. It is suggested that the spinopontine pathway might forward information to the cerebellum from visceral sensory receptors or perhaps from pools of spinal interneurons.

Animals