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Behavioral and nonbehavioral variables in the measurement of stutterers' communication attitudes.

The influence of the behavioral variables, stuttering and speech, and the nonbehavioral variables, feelings or attitudes regarding speech, on stutterers' responses to the modified Erickson Communication Attitude Scale (known as the S24) was investigated in two studies. In the first study, 19 adult stutterers answered an amended version of the S24 Scale; it permitted subjects to nominate the basis of their response to each item on the Scale. The findings indicated that subjects regarded their responses to Scale items as largely influenced by their judgments about their stuttering and speech behavior. The second study involved within-subject experiments with three adult male stutterers. Each subject identified those situations that influenced answers on the S24 Scale. Six weekly recordings of the subjects' speech in these situations showed that stuttering frequency was consistently higher in situations associated with item responses implying negative attitudes than in situations associated with positive attitude responses. The findings challenge the claim that the S24 Scale primarily assesses feelings or attitudes regarding speech or interpersonal communication.

Adolescent↗

Review of the toxicology, human exposure and safety assessment for bisphenol A diglycidylether (BADGE).

BADGE (whose chemical names are bisphenol A diglycidylether and 2,2-bis(4-(2,3-epoxypropyl)phenyl)propane) is the lowest molecular weight oligomer in commercial epoxy resins and the major component in commercial liquid epoxy resins. The major application areas for epoxy resins are protective coatings and civil engineering. Additional applications include printed circuit boards, composites, adhesives and tooling, while a relatively small amount of epoxy resins (< 10%) finds use in protective coatings inside food and drink cans. The use of BADGE in food-contact applications was first regulated through EC Directive 2002/16/EC and amended in EC Directive 2004/13/EC with migration levels in food-contact applications being generally well below the regulatory thresholds. The paper discusses the commercial use of BADGE focusing on the current knowledge of human exposure from canned food applications. To assess the safety of this application, the exposure data are compared with no adverse effect levels (NOAEL) from various toxicological investigations with BADGE including reproductive and developmental assays, endocrine toxicity investigations, and sub-chronic and chronic assays. Consumer exposure to BADGE is almost exclusively from migration of BADGE from can coatings into food. Using a worst-case scenario that assumes BADGE migrates at the same level into all types of food, the estimated per capita daily intake for a 60-kg individual is approximately 0.16 microg kg(-1) body weight day(-1). A review of one- and two-generation reproduction studies and developmental investigations found no evidence of reproductive or endocrine toxicity, the upper ranges of dosing being determined by maternal toxicity. The lack of endocrine toxicity in the reproductive and developmental toxicological tests is supported by negative results from both in vivo and in vitro assays designed specifically to detect oestrogenic and androgenic properties of BADGE. An examination of data from sub-chronic and chronic toxicological studies support a NOAEL of 50 mg kg(-1) body weight day(-1) from the 90-day study, and a NOAEL of 15 mg kg(-1) body weight day(-1) (male rats) from the 2-year carcinogenicity study. Both NOAELS are considered appropriate for risk assessment. Comparing the estimated daily human intake of 0.16 microg kg(-1) body weight day(-1) with the NOAELS of 50 and 15 mg kg(-1) body weight day(-1) shows human exposure to BADGE from can coatings is between 250,000 and 100,000-fold lower than the NOAELs from the most sensitive toxicology tests. These large margins of safety together with lack of reproductive, developmental, endocrine and carcinogenic effects supports the continued use of BADGE for use in articles intended to come into contact with foodstuffs.

Animals↗

Low Water Potential Disrupts Carbohydrate Metabolism in Maize (Zea mays L.) Ovaries.

Water deficit during pollination increases the frequency of kernel abortion in maize (Zea mays L.). Much of the kernel loss is attributable to lack of current photosynthate, but a large number of kernels fail to develop on water-deficient plants even when assimilate supply is increased. We examined the possibility that assimilate utilization by developing ovaries might be impaired at low water potential ([Psi]w). Plants were grown in the greenhouse in 20-L pots containing 22 kg of amended soil. Water was withheld on the first day silks emerged, and plants were hand-pollinated 4 d later when leaf [Psi]w decreased to approximately - 1.8 MPa and silk [Psi]w was approximately -1.0 MPa. Plants were rehydrated 2 d after pollination. The brief water deficit inhibited ovary growth (dry matter accumulation) and decreased kernel number per ear by 60%, compared to controls. Inhibition of ovary growth was associated with a decrease in the level of reducing sugars, depletion of starch, a 75-fold increase in sucrose concentration (dry weight basis), and inhibition of acid invertase (EC 3.2.1.26) activity. These results indicate that water deficits during pollination disrupt carbohydrate metabolism in maize ovaries. They suggest that acid invertase activity is important for establishing and maintaining reproductive sink strength during pollination and early kernel development.

Journal Article↗

The Medicare Optometry Parity Amendment: predicted and actual payments to optometrists and ophthalmologists.

This paper compares various costs estimates for the expansion of optometric services under the Medicare program that were developed prior to the enactment the Medicare Parity Amendment of 1986. The new law, effective April 1, 1987 redefines the conditions of optometric participation and expanded coverage to include all Medicare covered services for which optometrists are authorized to perform under the state law. The paper describes the impact of the Medicare amendment with regard to payments to optometrists and ophthalmologists. Payments to optometrists increased from $12 million in 1986, a year before the Medicare Amendment to $81 million in 1988, the first full year after the law's implementation increasing their market share of Medicare payments from 2.6% to 11.1%. Ophthalmology incurred a significant decrease in market share from 97.9% to 88.9% during this period.

Direct Service Costs↗

Most probable number method for isolation and enumeration of Staphylococcus aureus in foods: collaborative study.

Enumeration of Staphylococcus aureus in foods was collaboratively studied by comparing the present AOAC final action method, 46.062, which uses trypticase soy broth with 10% NaCl to a proposed replacement method which uses the same broth with 1% sodium pyruvate added. Fifteen collaborators analyzed uninoculated samples of milk, tuna salad, and ground turkey, as well as samples inoculated with low (10(2) cells/g), middle (10(4) cells/g), and high (10(6) cells/g) levels of S. aureus. The samples were frozen immediately to maintain the inoculated level of S. aureus in the food. A different strain of S. aureus was used for each food; heat-stressed S. aureus cells were used to inoculate the milk samples. The pyruvate-amended broth significantly (alpha = 0.05) increased enumeration of low, middle, and high levels of S. aureus from milk and ground turkey, and from tuna salad at middle and high levels. The pyruvate-amended media method has been adopted official first action to replace method 46.062.

Animals↗

The influence of application rate on the bacterial mutagenicity of soil amended with municipal sewage sludge.

The mutagenic potential of two soils amended with a municipal sewage sludge at two application rates was monitored over a 2-year period using Salmonella/microsome mutagenicity assay. Samples were collected from undisturbed monolith lysimeters of Weswood sandy clay (Fluventic Ustochrept) and Padina sandy loam (Grossarenic Paleustalf) amended with dried sewage sludge at 50 and 100 Mg/ha. Soil samples were collected and sequentially extracted with methylene chloride and methanol. The residues from these extracts were tested for mutagenicity at five doses with and without metabolic activation in Salmonella strain TA98. In general, the mutagenic potential of the amended soils of both application rates for the first 8 weeks following sludge application increased and then slowly decreased. The maximum mutagenic response observed in the soil extracts was 222 revertants at a dose of 10 mg of residue. This response was induced by the methanol extract from the Weswood soil collected 56 days after the application of 50 Mg/ha sewage sludge as compared to the 100 Mg/ha application which induced 202 revertants/mg. The mutagenicity of all fractions extracted from the sludge-amended soil at both application rates collected 717 days after application were not appreciably different from extracts from the unamended soils. The data indicate that chemicals that were mutagenic in bacteria persist in the soil and that at the higher application rates, as much as 2 years may be required for the mutagenic potential of the soil to return to background levels.

Journal Article↗

Phosphorus amendment reduces hematological effects of lead in mallards ingesting contaminated sediments.

Lead poisoning of waterfowl has been reported for decades in the Coeur d'Alene River Basin (CDARB) in Idaho as a result of the ingestion of lead-contaminated sediments. This study was conducted to determine whether the addition of phosphoric acid to sediments would reduce the bioavailability and toxicity of lead to mallards (Anas platyrhynchos) as related to adverse hematological effects and altered plasma chemistries. Mallards received diets containing 12% clean sediment (controls) or 12% sediment from three different CDARB sites containing 4520, 5390, or 6990 microg/g lead (dw) with or without phosphoric acid amendment. Blood lead concentrations were significantly higher in all CDARB treatment groups and ranged from geometric mean values of 5.0 microg/g for the first two sites to 6.2 microg/g for the third site. With amendments, all blood lead concentrations became 41% to 64% lower. Red blood cell ALAD activity was depressed by 90% or more with lead-contaminated sediment from all sites and did not differ with amended diets. Free erythrocyte protoporphyrin (FEP) concentrations were elevated by contaminated sediment from all sites. Amendment decreased the elevations in FEP by as much as 80%. Hematocrit values and hemoglobin concentrations were lower for all lead site sediments by as much as 30% for site 3. Plasma enzyme activities for ALT, CK, and LDH-L were elevated by as much as 2.2-fold, and plasma creatinine concentration was 1.7-fold higher for site 3 sediment. Amendments restored hematocrit, hemoglobin, and plasma enzyme activities so that they did not differ from controls. Although amendments of phosphorus substantially reduced the bioavailability of lead and alleviated many of the adverse hematological effects, lead concentrations in the blood of mallards fed the amended sediments were still above those believed to be harmful to waterfowl under the present conditions.

Animals↗

Physico-chemical properties and productivity of a Nigerian Typic-Haplustult amended with fresh and burnt rice-mill wastes.

In order to arrest the declining productivity of the soils in the Abakaliki agro-ecological zone of S.E. Nigeria, four levels (12.5, 25.0, 37.5 and 50.0 Mg ha-1) of fresh (FW) and burnt (BW) rice-mill wastes abundant in the area, and a mixture of the waste + NPK and NPK alone were added to the soil (Typic-Haplustult) to evaluate their immediate and residual effects on the productivity of the soil using maize (Zea mays L.) as a test crop. Results showed a significant reduction in bulk density as well as improvements in total porosity and water stable aggregates (WSA > 0.5 mm) at levels > 12.5 Mg ha-1 of the FW amendments. Although both amendments failed to improve the soil pH, significant improvements in soil C, N and BS were obtained at 37.5 Mg ha-1 and above in both amendments. The highest relative increase (TF) of 135.1% and 102.8% in C and N in the first season and 94.4% and 99.3% in the second season were obtained in the FW at 50.0 Mg ha-1. The highest maize grain yields of 2.74 and 2.66 Mg ha-1 were obtained in the waste + NPK mixtures (FW/BW + NPK) in the first season. The residual yield was highest (1.45 Mg ha-1) in the FW amendment at 50.0 Mg ha-1. The results showed that regular and properly planned applications of these wastes can sustain the productivity of soils in this region.

Carbon↗

Revegetation of the acidic, As contaminated Jales mine spoil tips using a combination of spoil amendments and tolerant grasses.

A combination of metal immobilising agents and metal tolerant plants has been utilised in order to reduce the environmental impact of the acidic metal contaminated Jales mine spoil tips. The addition of Beringite (a modified aluminosilicate), steel shots (iron bearing material) and organic matter as spoil amendments resulted in changes in arsenate (As) concentrations and pH of spoil material and improved plant growth. The application of Beringite increased both pH and plant available As concentrations. A 4-year follow up of the spoil analysis demonstrated that the effect of the spoil treatments was stable following treatments, however, the effectiveness did not increase any more after 2 years. The use of metal tolerant grasses in combination with spoil treatments resulted in a rapid and effective revegetation of the As contaminated Jales mine spoils. Colonisation and reproduction of Agrostis castellana and Holcus lanatus was most successful when the substrate contained a combination of all three additives. Plant performances could be enhanced by supplementation of a phosphate fertiliser. The rapid reproduction of the two grass species makes them very suitable for revegetation purposes. Agrostis castellana and Holcus lanatus apparently exhibited a level of metal- and As-tolerance sufficient for survival on untreated spoil, but in the first stages of revegetation the use of spoil amendments was found to be essential. Organic matter in combination with Beringite and/or steel shots resulted in decreased As in the aboveground biomass, protecting possible grazers and predators from undesirable levels of As.

Aluminum Silicates↗

RDX biodegradation column study: comparison of electron donors for biologically induced reductive transformation in groundwater.

A series of column studies, using site-specific soil and groundwater, were conducted to determine the feasibility of biologically active zone enhancement (BAZE) process for reductive biotransformation of hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) in groundwater. This treatability study examined the use of four amendments (acetate, ethanol, soluble starch, and acetate plus ammonium), which served as electron donors. Triplicate columns, with groundwater residence time of about 27.5 h, were used for each amendment treatment and the amendment control. In treatment columns amendment dosing was 500 mg/L C for carbon sources and 100 mg/L N for ammonium. Each of the amendment treatments reduced RDX inlet concentrations of 100 microg/L to less than 1 microg/L. The highest first-order RDX biodegradation rate ranged between 0.140 and 0.447 h(-1) for acetate amended columns as compared to 0.037 to 0.083 h(-1) in control columns (no amendment). The addition of soluble starch resulted in increased toxicity (based on Microtox analysis) that was partially removed by biological activity in the columns. Ethanol addition itself did not result in increased toxicity but biological activity in this system did induce Microtox toxicity. Acetate did not have any Microtox toxicity associated with it. The addition of ammonium as a nitrogen source did not significantly increase the removal rate of RDX. Based on these observations acetate was selected for the field demonstration.

Acetates↗

The role of Adam Politzer (1835-1920) in the history of otology.

PURPOSE: To study and understand the contribution made by Adam Politzer (1835-1920) to 20th century otology and analyze his place in the history of otology. METHOD: A study of his four reference works, some of his hundreds of publications in medical journals, and diverse publications written about him. RESULTS: All areas of otology have been studied, compiled, and improved through his assorted publications, notably his atlas of otoscopy published in 1865, the first work of its kind, expanded and reedited in 1896; his 10 tables of the anatomy of the ear amended in 1873; his textbook of the diseases of the ear, which was first published in two volumes in 1878 and 1882 and subsequently reedited four times as one volume, the last time being in 1908; his anatomy and histology book published in 1889; and his book on the history of otology, which up to now is the most complete tome existing on the subject, edited in two volumes in 1907 and 1913. No other has been as prolific as he. He invented, in particular, a revolutionary method of making the eustachian tube permeable--a method that made him famous and carries his name. He also developed an acoumeter to measure hearing and was the first to describe certain pathologic conditions histologically, of which otosclerosis is one. CONCLUSION: Politzer is certainly the greatest otologist of the 19th century and probably one of the greatest of all time. His influence on the 50 years of otology has never been equaled. He deserves a double mention in the history of otology: as an otologist and as a historian. It is in his honor that the International Society of Otology bears his name.

Anatomy, Artistic↗

Kinetic concepts for measuring microbial rate constants: effects of nutrients on rate constants.

We investigated the effect of preincubation of environmental waters amended with inorganic nutrients (nitrogen, phosphorus, and traces of iron and magnesium) on the kinetics of the microbial transformation of phenol, propanil, propyl ester of (2,4-dichlorophenoxy)acetic acid, methyl parathion, Ronnel, and methoxychlor in pond and river waters. No effect on the second-order rate constants for these compounds was observed, although there was an increase in the bacterial populations and the pseudo-first-order rate constants. The use of nutrient-amended waters could be a useful tool for estimating second-order rate constants for an expanded number of compounds. This technique would provide a larger data base for predicting the behavior of xenobiotic compounds in the environment by using currently available mathematical models.

Journal Article↗

Biodegradation of thiomersal containing effluents by a mercury resistant Pseudomonas putida strain.

Thiomersal, a toxic organomercurial with a strong bactericidal effect, is the most widely used preservative in vaccine production. As a result, vaccine production wastewaters are frequently polluted with thiomersal concentrations above the European limit for mercury effluent discharges for which there is, presently, no remediation technology available. This work proposes a biotechnological process for the remediation of vaccine production wastewaters based on the biological degradation of thiomersal to metallic mercury, under aerobic conditions, by a mercury resistant bacterial strain. The kinetics of thiomersal degradation by a pure culture of Pseudomonas putida spi3 was firstly investigated in batch reactors using a thiomersal amended mineral medium. Subsequently, a continuous stirred tank reactor fed with the same medium was operated at a dilution rate of 0.05 h(-1), and the bioreactor performance and robustness was evaluated when exposed to thiomersal shock loads. In a second stage, the bioreactor was fed directly with a real vaccine wastewater contaminated with thiomersal and the culture ability to grow in the wastewater and remediate it was evaluated for dilution rates ranging from 0.022 to 0.1 h(-1).

Biodegradation, Environmental↗

Using polymer mats to biodegrade atrazine in groundwater: laboratory column experiments.

Large-scale column experiments were undertaken to evaluate the potential of in situ polymer mats to deliver oxygen into groundwater to induce biodegradation of the pesticides atrazine, terbutryn and fenamiphos contaminating groundwater in Perth, Western Australia. The polymer mats, composed of woven silicone (dimethylsiloxane) tubes and purged with air, were installed in 2-m-long flow-through soil columns. The polymer mats proved efficient in delivering dissolved oxygen to anaerobic groundwater. Dissolved oxygen concentrations increased from <0.2 mg l(-1) to approximately 4 mg l(-1). Degradation rates of atrazine in oxygenated groundwater were relatively high with a zero-order rate of 240-380 microg l(-1) or a first-order half-life of 0.35 days. Amendment with an additional carbon source showed no significant improvement in biodegradation rates, suggesting that organic carbon was not limiting biodegradation. Atrazine degradation rates estimated in the column experiments were similar to rates determined in laboratory culture experiments, using pure cultures of atrazine-mineralising bacteria. No significant degradation of terbutryn or fenamiphos was observed under the experimental conditions within the time frames of the study. Results from these experiments indicate that remediation of atrazine in a contaminated aquifer may be achievable by delivery of oxygen using an in situ polymer mat system.

Atrazine↗

Effect of iron bioavailability on dissolved hydrogen concentrations during microbial iron reduction.

Dissolved hydrogen (H2) concentrations have been shown to correlate with specific terminal electron accepting processes (TEAPs) in aquifers. The research presented herein examined the effect of iron bioavailability on H2 concentrations during iron reduction in flow-through column experiments filled with soil obtained from the uncontaminated background area of the Field Research Center (FRC), Oak Ridge, TN and amended with acetate as the electron donor. The first column experiment measured H2 concentrations over 500 days of column operation that fluctuated within a substantial range around an average of 3.9 nM. Iron reduction was determined to be the dominant electron accepting process. AQDS (9,10-anthraquinone-2,6-disulfonic acid) was then used to determine if H2 concentrations during iron reduction were related to iron bioavailability. For this purpose, a 100-day flow-through column experiment was conducted that compared the effect of AQDS on iron reduction and subsequent H2 concentrations using two columns in parallel. Both columns were packed with FRC soil and inoculated with Geobacter sulfurreducens but only one was supplied with AQDS. The addition of AQDS increased the rate of iron reduction in the flow-through column and slightly decreased the steady-state H2 concentrations from an average of 4.0 nM for the column without AQDS to 2.0 nM for the column with AQDS. The results of this study therefore show that H2 can be used as an indicator to monitor rate and bioavailability changes during microbial iron reduction.

Anthraquinones↗

[Asymptomatic ischemia--an important part of the spectrum of coronary disease].

Angina pectoris and asymptomatic myocardial ischemia are part of the spectrum of coronary heart disease. Not the presence or absence of angina determines the future of the patient, but repeated ischemia and the progression of the coronaropathy. This progression is neither linear with time, nor is the moment of plaque rupture foreseeable. Silent myocardial infarctions increase with age and are very frequent in diabetics. In patients without neuropathy but with asymptomatic myocardial ischemia the central pain threshold is higher than in patients with angina pectoris. The best noninvasive test for the detection, localization and estimation of extension of myocardial ischemia, be it pain-free or symptomatic, is 201-thallium scintigraphy, combined with the exercise ECG. The fight against all amendable cardiovascular risk factors and pharmacotherapy are the first steps, if asymptomatic myocardial ischemia is suspected. Augmented dyspnea on effort and rhythm disturbances are indicators of advanced multivessel heart disease. Under these circumstances coronary angiography is indicated, and further treatment should follow the generally accepted rules such as for patients with angina pectoris.

Aging↗

Phase I and pharmacokinetic study of triapine, a potent ribonucleotide reductase inhibitor, administered daily for five days in patients with advanced solid tumors.

PURPOSE: A Phase I study in patients with advanced cancer was conducted to determine the safety, pharmacokinetics, and maximum tolerated dose of Triapine, a new, potent small-molecule inhibitor of ribonucleotide reductase. EXPERIMENTAL DESIGN: Triapine was administered by 2-h i.v. infusion daily for 5 days. Courses were repeated every 4 weeks. The starting dose was 5 mg/m(2)/day, but was reduced to 2 mg/m(2)/day after the first patient developed a hepatic adverse event. The dose was subsequently escalated using a modified Fibonacci scheme in cohorts of 3-6 patients. After the 12 mg/m(2)/day dose level, the study design was amended to permit 100% dose escalation in single-patient cohorts until the first episode of a drug-related grade 2 adverse event or dose-limiting toxicity (DLT). On reaching a dose of 96 mg/m(2)/day, the study was amended to determine the safety and tolerability of the 96-mg/m(2) dose administered daily for 5 days every 2 weeks in an expanded cohort of patients. RESULTS: A total of 32 patients received treatment. During the dose escalation phase of the study, grade 2-4 drug-related adverse events were first observed at a dose of 96 mg/m(2)/day. Grade 3-4 leukopenia was the primary toxicity observed among four patients treated at this dose, which occurred in the week after treatment and resolved to grade 1 or lower by day 15. Fifteen patients were subsequently treated at the 96-mg/m(2) dose, daily for 5 days, with courses repeated every 2 weeks. The most common nonhematological toxicities for the latter schedule were asthenia, fever, nausea and vomiting, mucositis, decreased serum bicarbonate, and hyperbilirubinemia, and were predominantly grade 1-2 in severity and rapidly reversible. Hematological toxicity on the every-other-week schedule consisted of leukopenia (grade 4 in 93% in at least one course) and anemia (grade 2 in 71%, grade 3 in 22%). Thrombocytopenia was less common and was grade 3-4 in severity in only 22%. Triapine showed linear pharmacokinetic behavior although interpatient variability was relatively high. Peak concentrations at the 96-mg/m(2)/day dose averaged 8 microM, and the mean elimination T(1/2) ranged from 35 min to 3 h, with a median value of approximately 1 h. Cumulative urinary recovery averaged 1-3% of the administered dose, suggesting that the elimination of Triapine was primarily through metabolism. No partial or complete responses were observed. CONCLUSIONS: Triapine administered at a dose of 96 mg/m(2) by 2-h i.v. infusion daily for 5 days on an every-other-week schedule demonstrates an acceptable safety profile. Serum concentrations that surpass in vitro tumor growth-inhibitory concentrations are achieved for brief periods of time each day and are sufficient to produce myelosuppression, the expected consequence of ribonucleotide reductase inhibition. Phase II trials are indicated but will proceed with a daily-for-4-days schedule to reduce the incidence of grade 4 leukopenia. The safety profile also supports the initiation of Phase I combination trials with other anticancer agents.

Adult↗

An abbreviated history of orthopaedic oncology in North America.

Orthopaedic oncology in North America has its roots in European medicine of the 1800s where sarcomas were first classified on the basis of their gross characteristics (1804) and amended on the basis of their histologic features (1867). Surgical treatment, local excision, with unacceptable mortality led to amputation in the 1870s and remained so until limb-sparing resection was cautiously embarked on in the mid-1900s. Nonsurgical adjuvant therapy was first devised in the 1880s (as Coley's toxins) but remained largely ineffective until the advent of chemotherapy in the 1970s. The combination of these techniques in the past 30 years, and the vastly improved staging and reconstructive techniques has led to the current preponderance of limb-salvaging surgery and greatly improved survival rates. The application of these treatments has been enhanced by the development of orthopaedic oncology fellowships, orthopaedic oncology societies, and federally funded regional cancer centers and multidisciplinary teams to treat patients with sarcomas.

Bone Neoplasms↗