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Biomedical subjects

J Dark

Publications and source records attributed to J Dark.

At least 19 recordsLinked to original sources

Accelerated reproductive development in juvenile male ground squirrels fed a high-fat diet.

Male golden-mantled ground squirrels held at 23 degrees C were fed high-fat (HF) or standard (chow) diets. In December, ambient temperature was reduced to 6 degrees C, food was removed, and frequency and duration of torpor bouts were monitored continuously by radiotelemetry. Reproductive condition and body composition were assessed upon terminal arousal in the spring. Juvenile males fed the HF diet weighed more than chow-fed controls before and throughout the hibernation season and had significantly greater lipid masses at terminal arousal. Testes masses and plasma testosterone concentrations were substantially higher in HF than in chow-fed juveniles. The accelerated reproductive development of fatter squirrels was not contingent upon increases in the total number of days spent in torpor, number of torpor bouts, or the average duration of each arousal from torpor. Access to the HF diet had no effect on body mass, adiposity, or reproductive status of adult male ground squirrels in spring. Threshold levels of white adipose tissue and associated differences in availability of metabolic fuels may be permissive for testicular growth during the hibernation season. Juveniles exceed this threshold only when fed the HF diet.

Aging

Long day lengths enhance myelination of midbrain and hindbrain regions of developing meadow voles.

Rates of brain growth differed in meadow voles maintained in long (LP) or short (SP) photoperiods postnatally. At 35 days of age, brain weight was greater by 6.6% in LP males and by 4.7% in LP females as compared to their SP counterparts. Whole brain galactolipid content, an index of brain myelin, was greater by 15.6% in LP as compared to SP males. At 70 days of age, brains of LP males were 4% heavier than those of SP males. Differences attributable to photoperiod were most pronounced in midbrain and hindbrain (8% and 14%, respectively). DNA and galactolipid contents were greater by 11% and 15%, respectively, in hindbrain of LP males. Photoperiod did not affect any of these measures in diencephalon, striatum, or cerebellum. Short day lengths reduce myelination in meadow voles, presumably by decreasing proliferation rates of oligodendroglia. This is one facet of a general delay in somatic development associated with being born at the end of the normal breeding season when day lengths are decreasing or below a critical threshold.

Animals

Long day lengths promote brain growth in meadow voles.

Male meadow voles kept in a long photoperiod (LP) from birth to 70 days of age have heavier brains than those kept in a short photoperiod (SP). Brain weights of male voles kept in the LP first exceeded those of SP animals at 20 days of age; differences were greatest at 35 days (5.8%) and persisted through 140 days of age (2%), although the magnitude of the difference declined progressively. Accelerated compensatory increases in brain weight were observed in voles transferred from the SP to the LP at 70 days of age. Total brain DNA content, an index of cell number, was not significantly affected by initial or final photoperiod, although it increased 7.8% within 70 days after voles were transferred from the SP to the LP. Brain weights (but not DNA content) of males exceeded those of females, but this sex difference was present only in the LP. We suggest that short day lengths retard brain development by reducing rates of myelination and possibly reducing cell size as well; this is part of a general retardation of somatic growth associated with a delayed onset of puberty that can be reversed by a stimulatory LP but, ordinarily, occurs spontaneously as voles become refractory to short day lengths.

Aging

Sexual dimorphism in brain weight of meadow voles: role of gonadal hormones.

In most adult mammals, brain weights of males exceed those of females. The role of androgens in the genesis of this sex difference was assessed in meadow voles by acute neonatal or chronic postweaning manipulation of testosterone titers. Female voles given a single injection of testosterone propionate (TP) on the second day of postnatal life had brain weights in adulthood that were indistinguishable from those of male voles and significantly heavier than those of control females. Whole brain DNA content, a measure of cell number, was not increased by neonatal TP treatment. Females treated with TP from day 19 to 70 had lower brain weights than control females and males gonadectomized at 19 days of age had greater brain weights than did intact male voles at day 70. The sex dimorphism in brain weight reflects organizational effects of testosterone during perinatal development. Beginning at weaning, and continuing through postpubertal development, testosterone decreases brain weight in both sexes. We suggest that testosterone affects brain weight by altering cell size or non-cellular components rather than cell number.

Animals

Suprachiasmatic nuclei influence hibernation rhythms of golden-mantled ground squirrels.

Hibernation and body mass rhythms were studied in 13 golden-mantled ground squirrels maintained in an LD 12:12 photoperiod at 5 degrees C. Complete or partial ablation of the suprachiasmatic nuclei (SCN) disrupted normal hibernation rhythms. Over the course of 2 years, several animals progressed through 4 hibernation cycles, one squirrel manifested two abnormally long hibernation seasons, and another failed to hibernate. Squirrels with intact SCN exhibited normal circannual hibernation rhythms at intervals of 11.5 +/- 0.3 months. Hibernation coincided with the weight loss phase of the body mass cycle in control squirrels, but these two rhythms were dissociated in animals with lesions of the SCN. The annual plasma testosterone rhythm was normal or slightly phase-delayed in squirrels with SCN lesions maintained at 23 degrees C. The SCN may be part of a neural circuit that mediates circannual organization of hibernation rhythms.

Animals

T tube intubation in the management of seriously ill patients with oesophagopleural fistulae.

Ten patients referred late with oesophagopleural fistulae were managed by T tube intubation of the oesophageal defect. Seven survived and six had radiographic evidence of closure of the defect. One patient who removed his T tube early was discharged to convalesce with a small oesophagocutaneous fistula. Three patients died as a consequence of pre-existing renal failure, upper gastrointestinal haemorrhage and adult respiratory distress syndrome. Patients presenting late with multisystem complications and ongoing sepsis secondary to oesophagopleural fistulae pose a major management problem. Our preliminary results suggest that T tube intubation offers a potential alternative to major surgical intervention, when more conservative measures have failed.

Acute Kidney Injury

Isolated lung transplantation for pulmonary fibrosis.

The peri-operative anaesthetic management of 11 patients with pulmonary fibrosis undergoing single-lung transplantation is presented. Intra-operative problems, the early postoperative phase of recovery and intensive care, and other incidents in which general anaesthesia was required for the management of complications, are featured. Results, both short- and long-term, are mentioned. Major intra-operative events that cause concern appear to be related to the severity of the presenting illness and the development of respiratory failure. Others have reported the development of intra-operative cardiac failure. All cases were successfully managed operatively using conventional one-lung anaesthesia, although resort to partial cardiopulmonary bypass may have been indicated in some. The indications and attitudes to utilising cardiopulmonary bypass in the evolution of techniques for facilitating single-lung transplantation are reviewed.

Adult

Role of mediastinoscopy in the diagnosis of mediastinal masses.

In order to assess the diagnostic efficiency of mediastinoscopy in patients with undiagnosed mediastinal masses, a retrospective review was undertaken of the results obtained in a consecutive series of 42 patients presenting over a 5-year period. In 28 (67%) patients, a tissue diagnosis was made. Ten (24%) patients underwent a negative mediastinoscopy but were found to have significant pathology on further investigation (eight in a location outside the range of conventional mediastinoscopy). Four (10%) patients had negative findings and were confirmed to have no significant pathology on further investigation and follow-up. Overall, mediastinoscopy had a sensitivity of 74%, a specificity of 100% and an accuracy of 76%; however, for lesions within the range of mediastinoscopy, the sensitivity was 93%, the specificity 100% and the accuracy 94%. The predictive value of a negative examination was 66%. Mediastinoscopy is a valuable technique in the diagnosis of mediastinal masses but, because of the low predictive value of a negative examination, further evaluation, including thoracotomy if necessary, is still indicated if mediastinoscopy is unhelpful.

Adolescent

Adipose tissue dynamics during cyclic weight loss and weight gain of ground squirrels.

Ad libitum fed golden-mantled ground squirrels undergo marked annual fluctuations in body mass; during the first cycle, peak and trough masses were approximately 291 and approximately 192 g, respectively. Peak masses were significantly higher (9%) during the second than the first cycle, reflecting a 15% increase in fat-free dry mass and a 12% increase in lipid reserves. The reduction in body mass during the weight loss phase was almost entirely due to an 84% decrease in total lipid reserves and reflected a decrease in adipocyte size but not number. All measured fat depots decreased at similar rates, and there was no evidence of preferential utilization or sparing of individual depots. Fat cell size decreased progressively in each depot during the transition from peak to trough masses and did not vary among the several depots at any stage of annual cycle. Adipocyte number increased in parametrial and retroperitoneal depots but not in the subcutaneous fat between the first and second body mass peaks; fat cell size in these two depots decreased by 28 and 20%, respectively, from the first to the second peak in body mass. Reduced lipid filling of adipocytes at the second peak mass, concomitant with adipocyte hyperplasia, suggests that total lipid mass, not simply fat cell size, is regulated during the annual body mass cycle. Maturation of the subcutaneous fat depot before the initial entry into hibernation may be adaptive in providing insulation during dormancy.

Adipose Tissue

Lipectomy influences white adipose tissue lipoprotein lipase activity and plasma triglyceride levels in ground squirrels.

Golden-mantled ground squirrels undergo marked fattening and fat depletion during the prehibernatory and hibernatory phases, respectively, of their annual body weight cycle. Fat regulation was studied by surgical removal (lipectomy) of most of the inguinal-subcutaneous, retroperitoneal, and parametrial fat depots from female squirrels during the weight-gain phase of the annual cycle. Seven weeks after surgery, body weights of lipectomized (Lipx) and Sham-Lipx squirrels were equivalent, although white adipose tissue was not completely recovered in Lipx animals. Lipoprotein lipase (LPL) activity was markedly elevated in subcutaneous adipose tissue of Lipx squirrels, but not in other depots. Plasma triglyceride (TG) levels also were higher in Lipx squirrels 7 weeks after surgery. Changes in LPL activity and plasma TG may contribute to body mass and lipid restoration following lipectomy.

Adipose Tissue

Pineal and photoperiodic influences on fat deposition, pelage, and testicular activity in male meadow voles.

Pinealectomy completely prevented gonadal regression as well as reduction in body weight and white adipose tissue content of the gonadal and retroperitoneal fat deposits in male meadow voles transferred from long to short day lengths. Pineal influences on pelage characteristics depended on which parameter was assessed. For instance, the increase in guard hair length observed in short-day control voles was blocked by pinealectomy; however, a similar increase in underhair length was unaffected by removal of the pineal gland. Photoperiod-dependent changes in fat deposition, testicular activity, and guard hair length presumably rely on altered pineal secretory activity to transduce the effects of day length on the neuroendocrine axis; however, mechanisms independent of pineal activity may be capable of mediating photoperiodic control of underhair growth.

Adipose Tissue

Long day lengths increase brain weight and DNA content in the meadow vole, Microtus pennsylvanicus.

Male voles reared in long (spring) day lengths had heavier brains with greater total DNA content than did males housed in short (fall) day lengths; these effects were not observed in female littermates kept in the two photoperiods. Male brains were heavier than female brains in long but not in short photoperiods. Day length affected brain mass during early postnatal development, but not when treatments were initiated in adulthood. Seasonal differences in brain development, including the numbers of neurons and glia, may reflect different metabolic and behavioral demands faced by males born in spring and fall, respectively.

Animals

Androgens exert opposite effects on body mass of heavy and light meadow voles.

The influence of gonadal hormones on body mass of adult male meadow voles varied systematically as a function of the animals' baseline body weight; heavier voles decreased and lighter voles increased their body mass after castration. Testosterone replacement reversed the effects of castration; changes in body mass during hormone treatment were negatively correlated with changes observed after castration. Body mass of intact males was not correlated with plasma testosterone titers. Individual differences in body mass of male voles appear to reflect variations among animals in substrate responsiveness to hormones rather than differences in circulating hormone levels.

Androgens

Sensory innervation of white adipose tissue.

The presumption that sensory information does not arise from white adipose tissue was reevaluated using the neuroanatomical tracer, "true blue." Fluorescent cell bodies were observed in dorsal root ganglia of rats after tracer was implanted into inguinal or dorsal subcutaneous fat depots. Sensory information from adipose tissue may play an important role in the regulation of regional and total body fat mass.

Adipose Tissue

Effect of acute diaphragm paralysis on ventilation in awake and sleeping dogs.

The mechanisms responsible for hypoventilation during rapid-eye-movement (REM) sleep in patients with diaphragmatic weakness are not clear. Therefore, we studied the effects of unilateral (UDP) and bilateral (BDP) diaphragmatic paralysis on ventilation during wakefulness (W), slow-wave sleep (SWS), and REM sleep. Studies were performed in 3 trained dogs in which small silicone cuffs had been implanted surgically around the phrenic nerves. Reversible diaphragmatic paralysis was induced during wakefulness or sleep by bathing the phrenic nerves in local anesthetic injected through a catheter attached to the phrenic cuffs. The UDP reduced abdominal expansion and increased rib cage expansion, but had no effect on minute volume of ventilation (VI) or end-tidal PCO2 (PACO2). The BDP produced marked abdominal paradox, but did not reduce VI during W or SWS and had no effect on tidal volume or respiratory frequency. In contrast, during REM sleep, VI was decreased by an average of 21% mainly because of a fall in tidal volume, and PACO2 increased by 2.4 mm Hg compared with that during the intact state. Furthermore, addition of extra dead space to the breathing circuit, which was well tolerated in intact dogs, led to a progressive increase in PACO2 during BDP and to arousal from sleep. The findings indicate that acute BDP does not impair ventilation during quiet W or SWS, but reduces ventilation during REM sleep, supporting the concept that during REM sleep maintenance of ventilation is critically dependent on diaphragmatic compensation for intercostal and accessory muscle inhibition.

Animals