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Biomedical subjects

D L McEachron

Publications and source records attributed to D L McEachron.

At least 19 recordsLinked to original sources

Region-specific tritium enrichment, and not differential beta-absorption, is the major cause of 'quenching' in film autoradiography.

Tritium quenching refers to the situation in which estimates of tritium content generated by film autoradiography depend on the chemical composition of the tissue as well as on the concentration of the radioisotope. When analysing thin brain sections, for example, regions rich in lipid content generate reduced optical densities on x-ray film compared with lipid-poor regions even when the total tissue concentration of tritium in those regions is identical. We hypothesize that the dried thickness of regions within sections depends upon the relative concentrations and types of lipid within the regions. Areas low in white matter dry thinner than areas high in white matter, leading to a relative enrichment of tritium in the thinner regions. To test this model, a series of brain pastes were made with different concentrations of grey and white matter and impregnated with equal amounts of tritium. The thickness of dried sections was compared with percentage of white matter and apparent radioactive content as determined by autoradiogram analysis. The results demonstrated that thickness increased, and apparent radioactivity decreased, with higher percentages of white matter. In the second experiment, thickness measurements from dried sections were successfully used to correct the apparent radioisotope content of autoradiograms created from tritium containing white- and grey-matter tissue slices. We conclude that within-section thickness variation is the major physical cause for 'tritium quenching'.

Animals↗

Three-dimensional reconstruction of activated columns from 2-[14C]deoxy-D-glucose data.

Three-dimensional (3-D) reconstruction of autoradiograms can provide new insights into the functional relationship of neural regions. To reach full potential, however, 3-D reconstruction must be both accurate and efficient. In this paper, we present a novel image matching algorithm that simultaneously aligns a set of serial sections and uses the method to reconstruct whisker barrels from the rat cerebral cortex. We initially compared several alignment techniques and found that our Multi-Set Registration (MSR) algorithm produced superior accuracy. This algorithm is based on a least-squares minimization technique and is able to simultaneously register a set of serial sections with subpixel precision (30-micron accuracy). We applied our new technique to the 3-D reconstruction of a series of autoradiograms. Our objective was to visualize and measure the 3-D metabolic (functional) shape of normal (control) and developmentally altered (plastic) C3 vibrissa columns in the first somatosensory area of the rat cerebral cortex. The plastic C3 metabolic column showed a nearly 450% increase in volume when compared to the control column. In addition, the lesion-altered C3 column-in contrast to the normal C3 column-displayed no central zone of high activity, and patches of higher metabolic activity were scattered throughout the columnar profile. This metabolic activity was not confined to the cylindrical column, but extended tangentially as radiating fingerlike projections toward neighboring barrels.

Algorithms↗

Environmental lighting alters the infection process in an animal model of AIDS.

In this study, we examined the effects of altered environmental lighting on the infection process of a murine leukemia virus, E-55(+), which induces a thymic lymphoma/leukemia in 100% of BALB.K mice inoculated as adults. One to two weeks after inoculation, high levels of proviral DNA are usually found. This is followed by an asymptomatic period of many weeks during which proviral DNA becomes essentially undetectable. Leukemia develops approximately 28 weeks postinoculation. In this experiment, one group of mice was exposed a consistent 10L: 14D cycle while a second was maintained in constant light (LL). A third group was exposed to a rotating cycle characterized by phase shifting a 10L: 14D cycle every three 24-h days (rLD). All cycles began 2 weeks prior to inoculation and were maintained thereafter. Animals were sacrificed at 1, 5, 10, and 15 weeks, and hematopoietic tissue was examined for proviral DNA content. At 1 week, LL- and rLD-exposed animals showed considerably less proviral DNA in bone marrow and spleen compared with controls. At 15 weeks, thymuses from controls were showing signs of infection whereas tissue from LL and rLD mice remained at background levels. We conclude that environmental lighting does alter the infective pattern displayed by this retrovirus, although whether this effect is mediated by changes in the target stem cells or through immunoenhancement has not yet been determined.

Acquired Immunodeficiency Syndrome↗

Effects of thyroxine and thyroparathyroidectomy on circadian wheel running in rats.

Thyroparathyroidectomized (TPX) and thyroidectomized male rats display shorter free-running activity periods and enhanced activity levels. These experiments were designed to determine whether this effect is due to the loss of thyroid hormones. The running wheel activity of 36 male rats, 19 TPX and 17 sham operated, was studied. The animals were kept in constant conditions for 7 weeks to obtain baseline data. Half the rats were then injected SC with capsules containing T4, while the other half were injected with blanks. All animals were then allowed to free-run undisturbed for another 8-9 weeks. TPX rats displayed significantly shorter baseline periods (average difference: 0.26 h) and heightened activity. Thyroxine treatment significantly lengthened TPX animals' cycles (average increase: 0.28 h) but did not affect intact rats' circadian rhythms. Thyroxine did, however, significantly decreased the activity levels of both TPX and sham-operated rats. These findings indicate that changes in TPX rats' activity cycles are caused by a reduction in thyroid hormones and that thyroxine acts on activity rhythms and levels by different mechanisms.

Animals↗

Thyroid and thyroxine effects on adrenoreceptors in relation to circadian activity.

Experiments were conducted to ascertain if changes in central adrenergic receptors could be associated with altered circadian activity patterns induced by thyroparathyroidectomy (TPX) and thyroxine. An initial experiment used TPX and sham-operated rats that had been exposed to dim red light for 7 months. The alpha and beta receptor densities were compared in the suprachiasmatic nuclei (SCN), preoptic (PO), septum, and caudate-putamen. TPX animals showed significant reductions in beta 1 and beta 2 receptor densities in SCN and PO, and alpha 1 densities in SCN, but no other changes. A second experiment, lasting 4 months, examined the effects of thyroxine, which has been shown to reverse the period-shortening effects of TPX surgery. Thyroxine significantly increased beta 1 receptors in both the SCN and ventromedial hypothalamus (VMH), the only regions that displayed significant reductions in TPXs during the second experiment. Increases of sevenfold and threefold were observed in the SCNs of TPXs and shams, respectively, but thyroxine's action in the VMH was limited to TPX animals, an effect that mimics thyroxine's action on circadian activity rhythms.

Animals↗

Circadian rhythmicity and behavioral depression: II. Effects of lighting schedules.

Two studies explore the relationship between rhythmicity and behavioral depression. Behavioral depression was induced using inescapable footshock, and assessed by measuring subsequent responses to escapable shock, in rats housed under different light-dark conditions. Experiment 1 compared escape performance in free-running and entrained animals following inescapable shock. Free-running and entrained animals did not exhibit differential vulnerability to the effects of inescapable shock. In addition, there were no systematic effects on phase following shock. However, several free-running animals showed increased circadian period following shock, and lengthening of period was significantly correlated with escape performance. Individual differences in baseline period or phase were not predictive of escape performance. In Experiment 2, "aftereffects" of entrainment to long or short light-dark cycles were utilized to create groups of animals with long or short free-running periods. After the administration of inescapable shock, escape performance was tested. There were no significant differences among experimental groups in escape performance. These results suggest that plasticity of circadian period, but not baseline period per se, may be associated with the ability to adapt to environmental challenges.

Affect↗

Evidence that the pacemaker controlling activity rhythms is shortened in male thyroparathyroidectomized (TPX) rats: similarities to the effects of estradiol in females.

The experiments described here demonstrate that TPX and TX male rats display shorter free-running activity rhythms and higher activity levels compared to intact males. Neither effect could be duplicated in TPX females. The patterns in activity period, range of entrainment, and levels of activity observed in TPX males closely resembles that reported in intact females or OVX females treated with estradiol. These data suggest the possibility of a common mechanism linking circadian alterations produced by estradiol and thyroid state. This hypothesis needs to be tested, as does the question of whether thyroid hormones or calcitonin are responsible for the TPX and TX results. If thyroid hormones prove to be the causal agents, opposing effects of thyroid hormones and estradiol on adrenergic receptors provide a possible common mode of action for these agents on the circadian system. Disparate results from rat and hamster studies concerning the influence of thyroid state on activity rhythms suggest the possibility of species differences in this level of circadian organization. Thus, caution should be exercised in extrapolating results to other species, including humans.

Activity Cycles↗

Effects of sex, thyro-parathyroidectomy, and light regime on levels and circadian rhythms of wheel-running in rats.

Intact and thyro-parathyroidectomized (TPX) Sprague-Dawley rats of both sexes were observed for 24 days under a 12:12 light:dark cycle (Entrainment), followed by 20 days in constant dim red light (Free-Run). Circadian periods and levels of wheel-running activity were examined. Intact females and TPX males were significantly more active and had significantly shorter free-running circadian periods than intact males, and the effects of TPX in females were different from those in males. Circadian periods in TPX females were slightly, but not significantly, shorter than in intact females, and activity levels in TPX females were nonsignificantly depressed relative to intact females. It was also found that day versus night activity levels differed more in TPX animals than in intact animals, especially during entrainment, suggesting that TPXs may be more sensitive to some effects of light. A number of possible explanations for the effects of TPX are considered, including changes in thyroid and calcitonin levels, interactions with gonadal hormones, and possible developmental effects of thyroid hormones on the circadian system. It is also possible that rhythm changes are secondary to alterations in activity levels. Human manic depressives reportedly have an unusually high incidence of thyroid, parathyroid, and calcium regulation abnormalities, display shortened circadian sleep-wake rhythms and abnormal levels of activity, and may also be hypersensitive to some effects of light; in addition, depression predominates in women, whereas mania predominates in men. The present results suggest that thyroid dysfunction could be partially responsible for the some of these abnormalities, and for sex differences in the manifestations of these disorders.

Animals↗

Pattern of [14C]2-deoxyglucose concentration associated with potentiation of reproductive behavior by prostaglandin E2.

One indication of receptive behavior of the female leopard frog, Rana pipiens, is absence of a release call during tactile stimulation of the trunk. Prostaglandin E2 (PGE2) inhibits this call. This experiment demonstrates a different pattern of [14C]2-deoxyglucose concentration in brains of 5 receptive females silenced by 1 microgram/g PGE, compared with that in 3 unreceptive, vocalizing controls injected with deionized water. 14C concentrations were measured in areas important for vocalization in frogs, in limbic system structures and in parts of the brain that receive somatosensory input. There was high activity relative to the rest of the brain in the receptive, silent PGE2-treated females in the caudal part of the anterior preoptic nucleus, in the dorsal habenula, and in the dorsal tegmental area of the medulla lateral to the pretrigeminal nucleus.

Animals↗

Effects of thyroidectomy, parathyroidectomy and lithium on circadian wheelrunning in rats.

Circadian rhythms and levels of wheelrunning were studied in thyroidectomized, parathyroidectomized, thyro-parathyroidectomized, and sham-operated male rats. Animals were entrained to a 12:12 light:dark schedule, then exposed to constant dim red illumination, and then given a diet containing lithium. Under constant conditions, free-running circadian activity rhythms were shorter, and levels of activity were greater, in thyroidectomized and thyroparathyroidectomized animals. Lithium reversed these effects, lengthening free-running circadian periods in all groups, with a greater reduction of activity observed in animals with thyroids removed. Parathyroidectomy had no clear effects. Since lithium slowed circadian rhythms and reduced activity even in the absence of intact thyroid or parathyroid glands, these effects may have been due to the action of lithium at some other site. The same may be true of other thyroid suppressors reported to affect circadian rhythms. These findings may be relevant to the biological substrates of major affective disorders in humans, which have been associated with abnormalities of thyroid function, abnormally short circadian rhythms, abnormal activity levels, and responsiveness to lithium therapy.

Animals↗

The analytic and functional accuracy of a video densitometry system.

Applications using radiotracers and quantitative film autoradiography are increasing dramatically in the neurosciences. Microcomputer-based image analyzing systems with video input have been developed to provide rapid quantification of autoradiographic images on relatively inexpensive systems. However, there has been some question as to whether such systems can reliably produce high levels of densitometric accuracy, especially when compared to mechanical scanners which are standard in research requiring extreme fidelity of measurement. We report methods and results from tests done to determine the analytical and functional accuracy of the Drexel Unix-based Microcomputer image Analysis System (DUMAS), which is a video densitometric system designed to provide quantitative data from autoradiograms. Analytical accuracy was determined by measuring photometric uniformity, the optical density transfer function, temporal stability, geometric uniformity, and flare. In addition, data are provided on the resolution of the system at several magnifications. Functional accuracy, the accuracy of the estimates of mean isotope concentrations in diverse neural structures, was determined by comparing the results obtained on the DUMAS system with the results from analyzing the same [14C]2-deoxyglucose images with two different Optronics P1000 systems. Our results show that, provided care is taken in the choice of a camera and a light source, the analytic accuracy of videodensitometry is high. Its functional accuracy is also high in that measurements of radioisotope concentrations in diverse neural structures made on the DUMAS system agree closely with the measurements from a properly adjusted Optronics P1000 system. The rapidity and economy of videodensitometry is not, therefore, obtained at the sacrifice of densitometric accuracy. Given adequately tested hardware and provided that suitable checks on instrument calibration and adjustment are made, the errors in autoradiographic quantification due to the image analyzing system itself are minor in comparison to other sources of error, including, as we show, variations in the user's delineation of the boundaries of neural structures.

Autoradiography↗

Antidepressants and food restriction cycles: evidence for multiple pacemakers in rodents.

Studies involving the suprachiasmatic nuclei (SCN) provide insufficient evidence to support the SCN as master pacemaker(s) in the rodent circadian system. Restricted feeding (RF) cycles act as strong zeitgebers for activity and corticosterone rhythms and provide support for the existence of important secondary pacemakers. These proposed pacemakers show anticipatory behavior, a limited range of entertainment for RF cycles, and prolonged free runs under certain circumstances. Additional evidence supporting a multiple pacemaker model of rodent circadian organization comes from studies involving antidepressants. Lithium treatment lengthens the free-running tau of rat activity rhythms and shifts the range of entrainment towards longer zeitgeber cycles. Lithium also phase delays many rodent rhythms but does not appear to affect the SCN-pineal axis. These data are difficult to explain without involving more than one pacemaker. Models of the rodent system can be developed incorporating multiple pacemakers. To test these models, a multivariate approach will be required. Combining the labeled 2-deoxyglucose method for metabolic mapping and the procedures of fractional desynchronization with antidepressant psychopharmacology and RF cycles may prove to be an important multivariate approach.

Animals↗

Lithium effects on selected circadian rhythms in rats.

Treating rats with lithium results in clear phase-delays in certain circadian rhythms but has no effect upon other rhythms. Phase-delays can be seen in running-wheel activity rhythms but under certain conditions, phase changes are not noted in SCN 2-DG uptake or pineal melatonin rhythms.

Animals↗

The interaction of lithium and time-of-day on calcium, magnesium, parathyroid hormone, and calcitonin in rats.

Effects of lithium on the concentrations and temporal patterns of serum and cerebellar calcium and magnesium, parathyroid hormone, and calcitonin were studied in 186 rats sacrificed around 24 hours of clock time. Serum calcium, serum and cerebellar magnesium, and parathyroid hormone were increased and calcitonin decreased in lithium-fed animals. Lithium-fed rats also showed different temporal patterns in serum calcium, parathyroid hormone, cerebellar magnesium, and calcitonin. Data support the hypothesis that lithium competes for calcium receptor sites, causing a compensatory increase in parathyroid hormone and decrease in calcitonin until a new, higher set-point for calcium is established. Lithium strongly affected biological rhythms, an effect which may account in part for the diverse literature on lithium's influence on calcium and magnesium regulation.

Animals↗

Lithium delays biochemical circadian rhythms in rats.

Recent evidence has indicated that a fast circadian oscillator or pacemaker might contribute to affective illnesses, particularly manic depressive disease. In order to test the hypothesis that lithium exerts its therapeutic effect by slowing or delaying overly fast circadian rhythms, 95 rats were fed a lithium-containing diet for a period of 3-4 weeks, and 91 rats were fed a control diet. The animals were sacrificed at times around the clock. Eight of the eleven substances measured (plasma prolactin, PTH, corticosterone, and aldosterone, serum calcium and magnesium, and cerebellar calcium and magnesium) showed large delays in their circadian rhythms in the lithium-fed rats. This supports the hypothesis that lithium's therapeutic action is to delay overly fast circadian rhythms.

Animals↗

Lithium promotes entrainment of rats to long circadian light-dark cycles.

Manic-depressive patients may have an endogenous circadian oscillator (about 24-hour clock) which runs too fast or which seeks too advanced or early a phase. Lithium salts are a major treatment for manic-depressives and may work by slowing this overly fast clock. Previous experiments with blinded rats demonstrated that lithium could delay free-running circadian rhythms. In this experiment, male rats were exposed to 27- and 28-hour light-dark cycles which were too long to synchronize the rhythms of control animals. In these control animals, the interaction of a faster (about 24-hour) internal rhythm with a slower light-dark cycle produced a beating interaction. cyclic variations in activity were observed as a result. Measurement of wheel-running activity indicated that its circadian rhythm was significantly slowed in lithium-fed animals and became synchronized with the light-dark cycle. This illustrates and supports the hypothesis that an action of lithium may be to delay and resynchronize overly fast circadian rhythms.

Animals↗

Advances in image processing for autoradiography.

The next generation of techniques for image processing in autoradiography will extend the range for what is already a broad band method for functional mapping. Among the new tools under development are techniques to correct for tritium quenching. With these, high resolution, accurate 2-deoxyglucose mapping will be feasible. Also being developed are automatic segmentation algorithms which will permit rapid surveys of a large number of structures in a large number of brains. Together with recent refinements in other aspects of image processing of autoradiograms, these tools will provide both better quantification accuracy and faster analysis speed.

Algorithms↗