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An investigation into the role of porcelain thickness in determining the load-carrying capacity of porcelain laminates.

The effect of specimen thickness on the strength of dental porcelain has been investigated. It has been shown that for core, dentine and combinations of these porcelains, the shell strength decreases with increasing thickness. Consequently, the load carrying capacity does not increase as much as might be expected with thicker sections. Possible reasons for this phenomenon and methods of limiting this effect are discussed.

Dental Porcelain↗

Relationships between left ventricular morphology, diastolic function and oxygen carrying capacity and maximal oxygen uptake in children.

Little attention has been paid to children with respect to factors controlling maximal oxygen uptake (V.O (2max)). This study was therefore specifically designed to examine the potential relationships between cardiac size, diastolic function and O (2) carrying capacity with maximal aerobic capacity. Specifically, body size indices (body surface area, lean body mass), resting left ventricular dimensions and filling characteristics, blood haemoglobin concentration as well as V.O (2max) established during a maximal cycle exercise test were assessed in a large cohort (n = 142) of healthy 10 - 11 year old boys and girls. Results were compared between groups of low (< 50, L), moderate (50 - 60, M) and high (> 60, H) V.O (2max) (ml . min (-1) . kg (-1) of lean body mass). Moreover, potential contributors to V.O (2max) variance were investigated using univariate and multivariate regression analyses over the overall population. The major results show no differences between the 3 groups for all diastolic and systolic function indices as well as blood haemoglobin and systemic vascular resistances (used as an index of afterload). None of these variables emerged from regression analyses as potential predictors of V.O (2max.) After accounting for body size variation, heart dimensions, and especially left ventricular internal dimensions, differed between H and M and L and were associated with higher cardiac filling and subsequently stroke volume. Strong relationships between V.O (2max) and heart dimensions were noticed, due primarily but not exclusively to the influence of body size. After adjusting for lean body mass, end-diastolic diameter contributed modestly (8 %) but significantly to V.O (2max) variance, which is biologically meaningful.

Anthropometry↗

[The influence on oxgen-carrying capacity of procine hemoglobin while attached PEG to increase its total molecular weight].

Increasing the total molecular weight of hemoglobin through PEG modification has been proved to be a better choice in prolonging vascular retention time. As a long, linear, hydrophilic molecular, PEG exerts significant influence on the oxygen-carrying properties of porcine hemoglobin (pHb) when attached. PEG-hemoglobins exhibit a wide range of differences in their properties depending on which molecular weight PEG is selected, how many PEGs are bound and whether the allosteric cofactors exist or not. Furthermore, DBBF intracross-linked pHbs are bound to various active PEG. As a result, with the combination of the three methods: DBBF intracross-linking, allosteric cofactors involving and PEG conjugating, a tetramer stable and high oxygen-carrying capacity pHb derivitive with large molecular weight is obtained.

Animals↗

Development of parameters influencing blood oxygen carrying capacity in the welcome swallow and fairy martin.

Welcome swallow (Hirundo neoxena) and fairy martin (Petrochelidon ariel) nestlings develop relatively slowly. They exceed adult mass early in development, then lose weight and fledge at about adult mass, i.e. have a mass-overshoot-recession (Mor) growth profile. Development of parameters influencing blood oxygen carrying capacity (O2Cap) was documented to determine if O2Cap also reached a plateau substantially before fledging or increased continuously throughout nestling development. Hematocrit (Hct), erythrocyte count (RBC) and whole blood haemoglobin (Hb) increased 1.8- to 2.8-fold, so that O2Cap doubled during development in both species. Increase in Hct, Hb and RBC was not continuous, peak values occurring well before fledging, in contrast to passerines with standard growth profiles in which the increase occurs throughout nestling development and peak values occur at fledging. However, the timing of O2Cap increase differed from that in some other Mor species (e.g. shearwaters). Mean erythrocyte volume (MCV) decreased linearly throughout development by 30-41%, but mean erythrocyte haemoglobin content (MCH) remained constant, so that mean erythrocyte haemoglobin concentration (MCHC) increased linearly 1.3- to 1.5-fold. Possible reasons for the apparent differences in the timing of O2Cap increase between rapidly and slowly growing altricial species and among MOR species are discussed.

Animals↗

Cancer dissemination: a consequence of limited carrying capacity?

Assuming that there is feedback between an expanding cancer system and its organ-typical microenvironment, we argue here that such local tumor growth is initially guided by co-existence rather than competition with the surrounding tissue. We then present a novel concept that understands cancer dissemination as a biological mechanism to evade the specific carrying capacity limit of its host organ. This conceptual framework allows us to relate the tumor system's volumetric growth rate to the host organ's functionality-conveying composite infrastructure, and, intriguingly, already provides useful insights into several clinical findings.

Animals↗

The role of oxygen-carrying capacity in myocardial ischemia.

Myocardial ischemia results when myocardial oxygen demand exceeds oxygen supply. The oxygen content of blood is only one of several interdependent variables influencing myocardial oxygen supply. The impetus for assessing the contribution of the oxygen content of blood to myocardial ischemia, and thus the need to treat anemia, stems from current concern about the risks associated with blood transfusion and the recognition that hemodilution has protean effects on the oxygen-carrying capacity of blood. The rheological changes that accompany hemodilution favorably influence the delivery of oxygen to the tissues and have the capacity to at least partially compensate for the decrease in blood oxygen content during hemodilution. However, nonrheological compensatory mechanisms (e.g., cardiac effects) also influence oxygen delivery and may profoundly influence the adequacy of tissue oxygenation. Furthermore, occlusive vascular lesions that restrict blood flow to the tissues also profoundly influence tissue oxygenation. The evidence in the myocardium and in systemic tissues indicates that considerable degrees of normovolemic hemodilution are well tolerated in physiological settings. In contrast, coexisting disease such as coronary artery stenosis may limit the patient population that benefits from normovolemic hemodilution. Unfortunately, well-controlled prospective studies of normovolemic hemodilution in patients with severe vascular or cardiac disease have not yet been conducted. As we progress to that point, it will be especially important to critically examine studies that use anesthetized or revascularized preparations. Results obtained under controlled conditions of hemodilution may not apply to postoperative anemia in awake patients with coronary artery disease who are experiencing the stress of surgery.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

[Instant effect of temperature on the oxygen carrying capacity of single living intact red blood cell].

The instant effect of temperature on the absorption spectra of the hemoglobin in single living intact red blood cells was investigated, by employing a highly sensitive fast multi-channel micro-spectrophotometer system to perform non-invasive, in situ, real time measurements on the cells. It was found that both the heights and position of the specific peaks in the absorption spectra of intercellular hemoglobin were changed with temperature, indicating that the oxygen carrying capacity of red blood cells varies with temperature. The correlations of the structure and concentration as well as the function of hemoglobin, and the molecular mechanism were also discussed.

Adult↗

[Oxygen tension in skeletal muscle in patients with reduced O2-carrying capacity (author's transl)].

In 10 patients (age: 31--72 years) oxygen supply of skeletal muscle was measured by pO2-multiwire technique. All patients suffered from chronic renal failure of differing etiologies and from chronic renal anemia. In muscle tissue 1,128 different O2-tensions were registered and the results were expressed as pO2-histograms. Seven of these pO2-histograms show a normal distribution, three are shifted to the left to lower O2-tensions. Therefore the microcirculation in the skeletal muscle of patients with chronic reduced O2-carrying capacity is largely undisturbed. The microcirculation is able to increase with exercise as shown by a shift to the right in the PO2-histogram. The use of the pO2-multiwire electrode is largely devoid of risk to the patient. Important pathological features may be demonstrated.

Carbon Dioxide↗

The effect of changes in blood oxygen-carrying capacity on ventilation volume in the rainbow trout (Salmo gairdneri).

1. Changes in ventilation volume (Vg) of rainbow trout caused by hypercapnia, hypoxia and anaemia were measured directly by collection of expired water. 2. Exposure to hypercapnic water (PCO2 range 0.5-2 kPa) increased Vg (by up to four times) by augmenting ventilatory stroke volume; breathing frequency remained constant. O2 added to the inspired water in maintained hypercapnia reduced Vg at all but the highest level of PCO2. 3. Vg increased when blood oxygen content was decreased by exposure to normoxic hypercapnia, but addition of O2 to the water increased blood oxygen content and Vg decreased. 4. When blood oxygen-carrying capacity was depressed by hypoxia or anaemia, Vg increased as it did during normoxic hypercapnia. 5. We suggest that ventilatory responses to low levels of hypercapnia, to hyperoxic hypercapnia, to hypoxia, and to anaemia in trout are related to changes in levels of blood oxygen content under these conditions.

Anemia↗

A follower load increases the load-carrying capacity of the lumbar spine in compression.

STUDY DESIGN: An experimental approach was used to test human cadaveric spine specimens. OBJECTIVE: To assess the response of the whole lumbar spine to a compressive follower load whose path approximates the tangent to the curve of the lumbar spine. SUMMARY OF BACKGROUND DATA: Compression on the lumbar spine is 1000 N for standing and walking and is higher during lifting. Ex vivo experiments show it buckles at 80-100 N. Differences between maximum ex vivo and in vivo loads have not been satisfactorily explained. METHODS: A new experimental technique was developed for applying a compressive follower load of physiologic magnitudes up to 1200 N. The experimental technique applied loads that minimized the internal shear forces and bending moments, made the resultant internal force compressive, and caused the load path to approximate the tangent to the curve of the lumbar spine. RESULTS: A compressive vertical load applied in the neutral lordotic and forward-flexed postures caused large changes in lumbar lordosis at small load magnitudes. The specimen approached its extension or flexion limits at a vertical load of 100 N. In sharp contrast, the lumbar spine supported a load of up to 1200 N without damage or instability when the load path was tangent to the spinal curve. CONCLUSIONS: Until this study, an experimental technique for applying compressive loads of in vivo magnitudes to the whole lumbar spine was unavailable. The load-carrying capacity of the lumbar spine sharply increased under a compressive follower load, as long as the load path remained within a small range around the centers of rotation of the lumbar segments. The follower load path provides an explanation of how the whole lumbar spine can be lordotic and yet resist large compressive loads. This study may have implications for determining the role of trunk muscles in stabilizing the lumbar spine.

Adult↗

The low oxygen-carrying capacity of Krebs buffer causes a doubling in ventricular wall thickness in the isolated heart.

The buffer-perfused Langendorff heart is significantly vasodilated compared with the in vivo heart. In this study, we employed ultrasound to determine if this vasodilation translated into changes in left ventricular wall thickness (LVWT), and if this effect persisted when these hearts were switched to the "working" mode. To investigate the effects of perfusion pressure, vascular tone, and oxygen availability on cardiac dimensions, we perfused hearts (from male Wistar rats) in the Langendorff mode at 80, 60, and 40 cm H2O pressure, and infused further groups of hearts with either the vasoconstrictor endothelin-1 (ET-1) or the blood substitute FC-43. Buffer perfusion induced a doubling in diastolic LVWT compared with the same hearts in vivo (5.4 +/- 0.2 mm vs. 2.6 +/- 0.2 mm, p < 0.05) that was not reversed by switching hearts to "working" mode. Perfusion pressures of 60 and 40 cm H2O resulted in an increase in diastolic LVWT. ET-1 infusion caused a dose-dependent decrease in diastolic LVWT (6.6 +/- 0.4 to 4.8 +/- 0.4 mm at a concentration of 10(-9) mol/L, p < 0.05), with a concurrent decrease in coronary flow. FC-43 decreased diastolic LVWT from 6.7 +/- 0.5 to 3.8 +/- 0.7 mm (p < 0.05), with coronary flow falling from 16.1 +/- 0.4 to 8.1 +/- 0.4 mL/min (p < 0.05). We conclude that the increased diastolic LVWT observed in buffer-perfused hearts is due to vasodilation induced by the low oxygen-carrying capacity of buffer compared with blood in vivo, and that the inotropic effect of ET-1 in the Langendorff heart may be the result of a reversal of this wall thickening. The implications of these findings are discussed.

Animals↗

Acute hypercapnia increases the oxygen-carrying capacity of the blood in ventilated dogs.

OBJECTIVE: To test the hypothesis that PaCO2 levels generated during permissive hypercapnia may enhance arterial oxygenation, when ventilation is maintained. DESIGN: Prospective study. SETTING: Research laboratory in a hospital. SUBJECTS: One group of eight mongrel dogs (four male; four female). INTERVENTIONS: The dogs were anesthetized (30 mg/kg iv pentobarbital), intubated, and cannulated in one femoral artery and vein. While paralyzed with 0.1 mg/kg/hr iv vecouronium bromide, all subjects were ventilated with room air. Anesthesia was maintained, using 2 to 3 mg/kg/hr iv pentobarbital. Arterial hypercapnia at the levels generated during permissive hypercapnia was produced by stepwise increases in the dry, inspired Pco2 (PiCO2) (0, 30, 45, 60 and 75 torr [0, 4, 6, 8, and 10 kPa]; 15 mins each). MEASUREMENTS AND MAIN RESULTS: Blood gas profiles were determined at each level of hypercapnia. The minute volume was maintained at the baseline level during all exposures. Arterial hypercapnia produced gradual and significant increases in the hemoglobin concentration. These increases were approximately 6%, 7%, 11%, and 14% at PiCO2 of 30, 45, 60, and 75 torr (4, 6, 8, and 10 kPa), respectively (p < .05; repeated analysis of variance followed by Dunnett multiple comparisons test). In parallel, the oxygen content increased by approximately 6%, 7%, 11%, and 13%, respectively. During hypercapnic trials, the PaO2 remained at the normal range, whereas the dry, inspired PO2 (PiO2) was reduced from 150 to 138 torr (20 to 18.4 kPa). The average PaO2 at the highest investigated level of arterial hypercapnia was at a normal range. The hemoglobin concentration and oxygen content returned to baseline values 30 mins after hypercapnic trials. The PaCO2 and pH became normalized 15 mins after hypercapnic trials. Indirect evidence for a similar response to hypercapnia in humans is presented. CONCLUSIONS: Permissive hypercapnia due to inhaled CO2 increases oxygen-carrying capacity in dogs. The PaO2 remains at normal range even at a PiCO2 of 75 torr (10 kPa). The benefits of these effects during permissive hypercapnia, due to controlled hypoventilation, warrants investigation.

Acute Disease↗

Glove powder's carrying capacity for latex protein: analysis using the ASTM ELISA test.

Glove donning powders carry latex proteins and disperse them into the workplace environment. We have used the ASTM D6499 ELISA to quantify the amount of latex antigen bound to and carried by glove powders. We could differentiate between a small amount of protein actually bound to the powders and a larger amount carried by the powder. Enhanced binding of a major allergen, Hev b 5, to the starch powders was demonstrated by Western blot. The D6499 ELISA is able to measure total latex antigen, soluble and powder bound, simultaneously without the need to centrifuge the samples.

Enzyme-Linked Immunosorbent Assay↗

Psychophysical determination of load carrying capacity for a 1-h work period by Chinese males.

This study used the psychophysical approach to examine the effects of container width, the presence or absence of container handles, and different load-carrying frequencies and distances on the maximum acceptable weight carried and the resulting response (heart rate and rating of perceived exertion) by well-conditioned males for a 1-h work period. After training, 12 male subjects performed a load-carrying task at knuckle height. Each subject performed 30 different carrying combinations. The conditions examined were container width, from 15.2 to 55.9 cm; carrying frequency, from 1 carry to 5 carries/min; and carrying distance from 1 to 6 m. The results were compared with prior studies and led to the following conclusions: (1) the use of container handles leads to the subjects carrying a significantly higher maximum acceptable weight than when containers do not have handles, which differs from the results of a previous study by Morrissey and Liou; (2) there were significant reductions in the maximum acceptable carrying weight with increases in container width, frequency and distance; (3) the presence or absence of container handles, different frequencies and load-carrying distances had significant effects on heart rate, although the effect of container width was not significant. In addition, the various frequencies and distances for load carrying had significant interaction effects on heart rate; (4) the effects of various frequencies and load-carrying distances on the rating of perceived exertion were statistically significant. The most stressed body parts were the wrists and arms.

Adult↗