Ticks are important vectors of various microorganisms, including bacteria. In this study, we examined Hyalomma aegyptium ticks collected from 240 spur-thighed tortoises Testudo graeca at 42 localities in the Mediterranean and Middle East and analysed them for the presence of bacteria of the genera Anaplasma, Borrelia, Coxiella, and Rickettsia. Altogether, 576 out of 928 analysed ticks (62.1%) were positive for at least one of the tested bacteria. The highest prevalence in individual ticks was found for Borrelia turcica (43.6%), followed by Rickettsia (12.3%) and Anaplasma (6.1%). No sample was positive for Coxiella burnetii. Among Rickettsia, we detected two species, Rickettsia africae and Rickettsia aeschlimannii, and also other unspecified Rickettsia. Anaplasma (100% identity with A. phagocytophilum) was detected at 15 (35%) out of 42 studied localities, any of Rickettsia at 28 (67%), and B. turcica at 32 (76%) localities. The geographic distribution of the studied microorganisms varied, with none of them detected in Syria, and only Rickettsia spp. detected in Morocco. Sequence analysis revealed substantial genetic variability in all detected agents, with the most variable (36 new haplotypes) being glpQ gene used as a marker for B. turcica. We also analysed the prevalence of various co-infections among studied ticks, with the mean number of co-infected ticks per tortoise increased with the number of ticks per tortoise. However, the frequencies of co-infected ticks do not indicate the presence of antagonistic or synergistic facilitative interactions between the agents. According to our data, we could expect that the eco-epidemiological importance of H. aegyptium does not stem from their tortoise hosts but rather from the low host specificity of its larvae and nymphs, feeding on a wider spectrum of reptilian, avian, and mammalian hosts.
BACKGROUND:Environmental heterogeneity in agricultural landscapes is a key driver of biodiversity and ecological processes, yet its role in shaping the population dynamics of pest species remains insufficiently studied. In central Europe, post-war collectivisation led to widespread homogenisation of farmland, notably through the enlargement of arable fields. This study examined the effects of this structural simplification by assessing the relationship between field size, a key configurational component of landscape heterogeneity in farmland, and the abundance of the common vole (Microtus arvalis), a major agricultural pest, monitored in forage fields over 7 years in the Czech Republic. RESULTS:Linear mixed models, accounting for season, crop type and altitude, revealed a robust, nonlinear positive relationship between field size and vole population density, with the most pronounced effect in fields smaller than 20 ha. Alfalfa fields consistently supported the highest vole densities in autumn, indicating that both habitat quality and patch size jointly influence vole abundance. CONCLUSION:This study provides the first empirical evidence of a positive density-area relationship in voles, challenging theoretical expectations and previous field evidence predicting negative or neutral responses in ground-dwelling species. The findings have important implications for nationwide pest management and landscape planning, suggesting that reducing field size could help mitigate crop damage while promoting more resilient and ecologically balanced agroecosystems. © 2025 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
Abstract Background This 20-year retrospective study aimed to evaluate the treatment methods used in patients with impacted maxillary permanent canines and to determine the occurrence of ankylotic and resorptive processes and their association with potential risk factors. Methods The cohort consisted of 351 consecutive Caucasian patients (120 males and 231 females, mean age 18.4 and 19.9 years, respectively) with 420 impacted maxillary permanent canines. CT and CBCT findings were subsequently confirmed during surgery. Statistical analyses were performed by the generalized linear models, Pearson x2 and Fisher exact tests using the statistical programs R and Statistica v. 14. Results A total of 273 (65.0%) impacted canines were aligned in the dental arch by orthodontic traction after surgical exposure, this treatment was predominant in patients under 20 years of age. Surgical extraction was performed in 115 (27.2%) impacted canines and was more common in older patients. Ankylotic changes were recorded in 61 (14.5%) impacted canines. The probability of ankylosis increased with age, particularly after the patient’s 20th year of life (p < 0.001). Patients were 1.2% likely to develop ankylosis at age 15 years, 4.3% at age 20 years, 14.1% at age 25 years, and 96.8% at age 45 years. Invasive cervical root resorption (ICRR) was found in 8 (1.9%) canines. In 4 canines (1.0%), root ankylosis in addition to ICRR was observed. In contrast to ankylosis, whose frequency of occurrence increased with age, the occurrence of ICRR resulting from PDL damage during surgery was more typical in younger patients. Canines in a high position above the root apices of the adjacent teeth, with a horizontal inclination of the longitudinal axis, with the crown located deep in the center of the alveolar bone and with labiopalatal position, should be considered critically impacted canines with a high risk to failure of orthodontic traction. Conclusion In conclusion, the treatment of impacted canines depends mainly on the age of the patient, and the position and inclination of the longitudinal axis of the impacted tooth. To select an adequate treatment method, we recommend CBCT examination, which allows a precise analysis of the position of impacted canines.
Abstract Background Orthodontic treatment is associated with numerous adverse side effects, such as enamel discoloration, demineralization or even caries. The presence of microleakage between the enamel and the adhesive and between the adhesive and the base of the orthodontic bracket allows penetration of the bacteria, molecules, and liquids into the enamel and can lead to unpleasant “white spot lesions” or secondary caries beneath and around the brackets. The aim of this in vitro study was to evaluate microleakage in five adhesive systems commonly used in orthodontic practice for bonding brackets. Methods One hundred extracted premolars were divided into five groups of twenty teeth. Stainless steel Legend medium metal brackets were bonded to teeth using five adhesive systems: resin-reinforced glass ionomer cement GC Fuji Ortho LC (GCF) and composite materials Light Bond (LB), Transbond XT (TB), Trulock™ Light Activated Adhesive (TL), and GC Ortho Connect (GCO). The specimens were subjected to thermal cycling, stained with 2% methylene blue, sectioned with low–speed diamond saw Isomet and evaluated under a digital microscope. Microleakage was detected at the enamel-adhesive and adhesive-bracket interfaces from occlusal and gingival margins. Statistical analysis was performed using generalized linear mixed models with beta error distribution. Results Microleakage was observed in all materials, with GCF showing the highest amount of microleakage. Composite materials GCO, TB, and LB exhibited the lowest amount of microleakage with no statistical difference between them, while TL showed a statistically significantly higher amount of microleakage (p < 0.001). The enamel–adhesive interface had more microleakage in all composite materials (GCO, LB, TB, and TL) than the adhesive bracket–interface (p < 0.001). The highest amount of microleakage occurred in the gingival region in all materials. Conclusion Composite materials showed better adhesive properties than a resin-reinforced glass ionomer cement. The presence of microleakage at the enamel-adhesive interface facilitates the penetration of various substances into enamel surfaces, causing enamel demineralization and the development of dental caries.
The integrated management of a serious agricultural pest, the common vole (Microtus arvalis), should be based on modern and empirically proven approaches. The aim of this paper was to map the historical development of the monitoring and control practices of the common vole in the Czech Republic (CR) territory. Published records of vole population outbreaks and heavy crop damage have been documented in the Czech literature since the turn of the 20th century, and even in crops planted in highly fragmented and diversified agricultural landscapes. In the CR, systematic state monitoring was introduced in 1955. In the 1930’s, there were more than 100 various rodent preparations against the common vole, which were formulated as smoke generators, gases, baits, dusts, toxic mushy mass, and insecticide sprays. Currently, there are only six preparations with three active ingredients registered in the CR. Zinc phosphide is the only active ingredient that has been used from the 1940s to the present, whereas anticoagulants were banned for vole control in 2011 owing to the high environmental risks. The poisoning of nontarget animals by rodenticides is not a new phenomenon tied to synthetic pesticides; poisoning by botanical extracts (strychnine) was documented more than 100 years ago. This review may provide both historical lessons for current practice and new incentives for future research.
Predator behaviour and population numbers can be determined by many factors such as prey availability, individual and habitat characteristics, and intraspecific or interspecific factors. Using satellite telemetry, we measured home range size in 3 individuals of Red Kites (Milvus milvus) in three consecutive winters to document the pattern of spatial responses to increasing availability of its dominant prey, the Common Vole (Microtus arvalis), in the Břeclav District, Czech Republic. Starting with winter 2017/2018, we found that the home range sizes decreased in winter 2018/2019 when the index of vole population density increased from 678 burrow entrances in autumn 2017 to 1414 burrow entrances per hectare in autumn 2018. Home range sizes did not change in winter 2019/2020 in spite of the further increase in vole population density up to 6673 entrances per hectare in autumn 2019. Based on censuses at 5 communal roosts in January 2018, 2019, and 2020, we documented the pattern of numerical responses to increasing availability of voles. Numbers of wintering Red Kites did not respond to growing vole densities until they reached the highest level in autumn 2019, suggesting that the response of wintering numbers was delayed by 1 year compared to that in home range. Our study thus provides empirical support for the spatial and numerical responses of Red Kites to prey availability and suggest that these responses may differ in sensitivity to increases in vole density, being triggered at different periods of the vole population cycle.
The aim of this study was to evaluate if cytoplasmic transfer can improve fertilization and embryo quality of women with oocytes of low quality. During ICSI, 10-15% of the cytoplasm from a fresh or frozen young donor oocyte was added to the recipient oocyte. According to the embryo quality, we defined group A as patients in which the best embryo was evident after cytoplasmic transfer and group B as patients in which the best embryo was evident after a simple ICSI. We investigated in the period of 2002-2018, 125 in vitro fertilization cycles involving 1011 fertilized oocytes. Five hundred fifty-seven sibling oocytes were fertilized using ICSI only and 454 oocytes with cytoplasmic transfer. Fertilization rates of oocytes were 67.2% in the cytoplasmic transfer and 53.5% in the ICSI groups (P < 0.001). A reduction in fertilization rate was observed with increased women age in the ICSI but not in the cytoplasmic transfer groups. The best embryo quality was found after cytoplasmic transfer in 78 cycles (62.4%) and without cytoplasmic transfer in 40 cycles (32%, P < 0.001). No significant differences were detected between the age, hormonal levels, dose of stimulation drugs, number of transferred embryos, pregnancy rate and abortion rate between A and B groups. Cytoplasmic transfer improves fertilization rates and early embryo development in humans with low oocyte quality. All 28 children resulting from cytoplasmic transfer are healthy.
Common voles (Microtus arvalis) are widespread in the European agricultural landscape from central Spain to central Russia. During population outbreaks, significant damage to a variety of crops is caused and the risk of pathogen transmission from voles to people increases. In 2019, increasing or unusually high common vole densities have been reported from several European countries. This is highly important in terms of food production and public health. Therefore, authorities, extension services and farmers need to be aware of the rapid and widespread increase in common voles and take appropriate measures as soon as possible. Management options include chemical and non-chemical methods. However, the latter are suitable only for small and valuable crops and it is recommended to increase efforts to predict common voles outbreaks and to develop and field test new and optimized management tools.
Studies of tick-borne diseases (TBDs) in Europe focus on pathogens with principal medical importance (e.g. Lyme disease and tick-borne encephalitis), but we have limited epidemiological information on the neglected pathogens, such as the members of the genera Anaplasma, Rickettsia, Babesia and Candidatus Neoehrlichia mikurensis. Here, we integrated an extensive field sampling, laboratory analysis and GIS models to provide first publicly available information on pathogen diversity, prevalence and infection risk for four overlooked zoonotic TBDs in the Czech Republic. In addition, we assessed the effect of landscape variables on the abundance of questing ticks at different spatial scales and examined whether pathogen prevalence increased with tick density. Our data from 13,340 ticks collected in 142 municipalities showed that A. phagocytophilum (MIR = 3.5%) and Ca. Neoehrlichia mikurensis (MIR = 4.0%) pose geographically uneven risks with localized hotspots, while Rickettsia (MIR = 4.9%) and Babesia (MIR = 1.1%) had relatively homogeneous spatial distribution. Landscape variables had significant effect on tick abundance up to the scale of 1 km around the sampling sites. Questing ticks responded positively to landscape diversity and configuration, especially to forest patch density that strongly correlates with the amount of woodland-grassland ecotones. For all four pathogens, we found higher prevalence in places with higher densities of ticks, confirming the hypothesis that tick abundance amplifies the risk of TB infection. Our findings highlight the importance of landscape parameters for tick vectors, likely due to their effect on small vertebrates as reservoir hosts. Future studies should explicitly investigate the combined effect of landscape parameters and the composition and population dynamics of hosts on the host-vector-pathogen system.
Using long-term data on incidences of Lyme disease and tickborne encephalitis, we showed that the dynamics of both diseases in central Europe are predictable from rodent host densities and climate indices. Our approach offers a simple and effective tool to predict a tickborne disease risk 1 year in advance.
OBJECTIVE:Verification of the effect of EmbryoGlue (EG) transfer medium enriched with hyaluronan on the embryo transfer success rate.DESIGN:A prospective study.SETTING:Fertimed, Fertility Treatment Centre, Olomouc.METHODS:484 patients undergoing IVF + ET were engaged who were divided according to the medium used during transfer: Sage or Vitrolife culture medium (n = 135) and EG transfer medium (n = 349). The influence of other factors was also evaluated: age, number of received oocytes, percentage of fertilised oocytes, endometrium height on the day of transfer, number of preserved embryos, number of transferred embryos and the length of cultivation (48, 72, 96, 120 h). These factors were considered quantitative variables while the method of hormone stimulation, the type of culture medium and the application of EG were considered qualitative (categorical) variables.RESULTS:With the use of EG the chances of conception increased by approximately 9%. The negative effect of higher age on implantation proportion and the positive effect of cultivation prolongation were proven. The effect of EG on miscarriages was not proven. The probability of miscarriage diminished with higher oocyte fertilisation. The culture medium used (Sage or Vitrolife) before the application of EG does not affect the gravidity result.CONCLUSION:Using the transfer medium of EmbryoGlue before embryo transfer affects the pregnancy rate (PR) in a positive manner. The influence on pregnancy loss with the application of EG was not proven.
Objective: To examine patients after embryo transfer for predictive influence of the human chorionic gonadotropin (hCG) level on the probability of finishing pregnancy with delivery.Design: Retrospective study.Setting: Fertimed, Fertility Treatment Centre, Olomouc.Methods: 490 patients pregnant after IVF + ET treatment placed in the study. The influence of other factors: age (patients 20-50), number of transferred embryos (one, two and more) and the length of cultivation on the probability of finishing pregnancy with delivery or loss and the possibility to predict multiple pregnancy was also related to the known hCG value. The transferred embryos were divided into two groups - early (cultivation 48 and 72 hrs) and prolonged cultivation (PC 96 and 120 hrs). The answer here, therefore, is a multinomial variable with four levels. For that reason the data was analysed through a multinomial logistic model vs. multinomial distribution of a mistake and generalised logistic link function.Results: The hCG level grows exponentially in the course of the 9th to 17th day after an embryo transfer (ET). The probability of one child delivery after the transfer of one embryo overdue after prolonged cultivation (96 or 120 hrs) grows with the average and above-average hCG values on the day of the draw. The hCG value was 678 (564-815) IU/l1 on the 14th day after ET in pregnancy ended in delivery, 321 (216-477) IU/l on average in abortion, 82 (51-132) IU/l in biochemical pregnancy and 1070 (737-1554) IU/l in multiple pregnancy. The probability of multiple pregnancy increased with hCG values greatly above the average and on the other hand, below-average values indicated abortion or biochemical pregnancy. The patient's age was not proven to be of significant influence, the hCG level slightly decreased with higher age. On the contrary, an increasing frequency of abortions depending on the increasing age of the mother was once again confirmed.Conclusion: The measured hCG values are considerably different depending on the pregnancy result, which is why this value is considered a quality predictive factor of the pregnancy result.
1. Understanding the ecological niches of ticks is central to predicting the risk of tick‐borne disease occurrence. Despite considerable advances in describing species distributions over the last two decades, disentangling the differences in habitat preferences from biotic interactions still remains among the main challenges.2. In boundary areas along the rivers Danube, Morava and Dyje, separating the Czech Republic, Slovakia and Austria, we studied ecological niche segregation between two European sympatric tick species, Dermacentor reticulatus and Ixodes ricinus, the abundances of which exhibited a negative spatial covariation. By applying ANCOVA analysis, we tested the effects of 19 climate, four moisture and two topographical variables derived through GIS on tick abundances.3. Dermacentor reticulatus preferred warmer and wetter sites with greater diurnal and seasonal variation in temperature but with lower seasonality in precipitation than I. ricinus.4. By adopting the static regression model based on a modified Lotka–Volterra model for interspecific competition, we examined the relative power of environmental variables to explain the negative relationship between tick log‐abundances. We found that nonzero estimates of competition coefficients α12 and α21 were not eliminated even if we included seven principal components derived from considered environmental variables.5. These results suggest that habitat conditions can shape abundance patterns of the studied ticks but their overall power to explain negative spatial covariation is low. This indicates that other critical variables were not considered in the analysis. An alternative explanation suggests that competitive interaction is not yet supported by direct field evidence obtained for these ticks.
This study focuses on the bioconversion of agricultural wastes (AWs) in rural Egypt. We analyzed data derived from literature to implement a future image suiting Egypt's situation. Despite the limited information in the field of management of agricultural wastes in Egypt and the gap between formal and practical data, the studies consistently showed that bioconversion is suitable to sustainably treat the unused part of AWs, which is about 52% of a total of 46.7×106 tons year-1. Bioconversion can convert those AWs into about 12.6×109 m3 year-1 of biogas with about 60% methane, which is equal to 7.6×109 m3 of natural gas (NG), and/or ≈ 10×106 tons year-1 of compost. The produced biogas from anaerobic digestion (AD) can contribute to about 13% of the Egypt’s total NG production; meanwhile, compost will increase the total production of fertilizers in Egypt at more than 60%. This suggests that decision makers, researchers, and engineers should draw more attention to bioconversion as an efficient management tool for resolving the growing problem of agricultural wastes in rural areas.
Spatial synchrony of population fluctuations is ubiquitous in nature. Theoretical models suggest that correlated environmental stochasticity, dispersal, and trophic interactions are important promoters of synchrony in nature to leave characteristic signatures of distance-dependent decays in synchrony. Recent refinements of this theory have clarified how distance-decay curves may steepen if local dynamics are governed by different density-dependent feedbacks and how synchrony should vary regionally if the importance and correlation of environmental stochasticity is location-specific. We analysed spatiotemporal data for the common vole, Microtus arvalis from 49 districts in the Czech Republic to examine the pattern of population synchrony between 2000 and 2014. By extending the nonparametric covariation function, we develop a quantitative method that allows a dissection of the effects of distance and additional variables such as altitude on synchrony. To examine the pattern of local synchrony, we apply the noncentered local-indicators of spatial association (ncLISA) which highlights areas with different degrees of synchrony than expected by the region-wide average. Additionally, in order to understand the obtained pattern of local spatial correlations, we have regressed LISA results against the proportion of forest in each district. The common vole abundances fluctuated strongly and exhibited synchronous dynamics with the typical tendency for a decline of synchrony with increasing distance but, not with altitude. The correlation between the neighbor districts decreases as the proportion of forest increases. Forested areas are suboptimum habitats and are strongly avoided by common voles. The investigation of spatiotemporal dynamics in animal populations is a key issue in ecology. Although the majority of studies are focused on testing hypotheses about which mechanisms are involved in shaping this dynamics it is crucial to understand the sources of variation involved in order to understand the underlying processes.
With rapid development and the spread of urbanized land, there is an increasing need to understand species' responses to urban conditions. Carnivores are considered to be sensitive to urbanization; however, there is ample evidence that some carnivore species successfully inhabit urban areas, and human-modified habitats have recently been recognized as an important refuge for several species. Despite the increasing number of studies on urban carnivore ecology, no comprehensive cross-species comparisons have been made in order to assess the effects of urbanization on the spatial ecology of carnivores and their population densities. Such a review could provide interesting insight into how some carnivore species respond to increasing urbanization. Specifically, we examine changes in population density and home range size of eight carnivore species that occur along the natural-urban environmental gradient. Using data from 411 articles, we provide evidence that the home range size of carnivores decreases in six out of eight species, and population density increases in three out of six species along the natural-urban habitat gradient. The density-dependent pattern of variation in home range size is consistent in all species studied. Our results emphasize the remarkable ability of some carnivore species to adapt to novel environments through their behavioural flexibility and life history adaptations. We outline ideas for future research that could be adopted in addressing this phenomenon, namely comparative approaches and detailed studies of biotic and abiotic conditions along natural-urban gradients.
Objective: To study the incidence of monozygotic twinning (MZT) in patients using in vitro fertilization, relative to their age, genetic background, ovarian function, and assisted reproductive techniques used.Design: Analysis of a collected database.Setting: Infertility treatment center.Patient(s): A total of 1,876 patients receiving infertility treatment between 2000 and 2012. Pregnancies with monozygotic twins (A: 23) were compared with deliveries of dizygotic twins (B: 423), singleton pregnancies (C: 880), and aborted pregnancies (D: 389).Intervention(s): None.Main Outcome Measure(s): A genetic survey on multiple pregnancies in the extended family. Measures were micromanipulation technique, the length of embryo cultivation, type of cultivation media, basal follicle-stimulating hormone level, estradiol level on the day of human chorionic gonadotropin administration, number of oocytes, total consumption of gonadotropins, and consumption of gonadotropins needed for recovery of 1 oocyte.Result(s): No differences were found between the incidence of MZT in cycles that did vs. did not use micromanipulation techniques. In addition, the length of embryo cultivation or type of cultivation media used did not affect the results. Estradiol levels and implantation rates were significantly higher in group A. The incidence of MZT in families in group A was significantly higher than that in groups B and C.Conclusion(s): We propose that the high incidence of MZT in infertility-clinic patients is conditioned by hereditary factors, and good ovarian function only facilitates the expression. The resulting recommendation is that young women with a positive family history and good ovarian function undergo elective single-embryo transfer, and proper counseling is advisable. ((c) 2015 by American Society for Reproductive Medicine.)
We studied the response of the barn owl annual productivity to the common vole population numbers and variability to test the effects of environmental stochasticity on their life histories. Current theory predicts that temporal environmental variability can affect long-term nonlinear responses (e.g., production of young) both positively and negatively, depending on the shape of the relationship between the response and environmental variables. At the level of the Czech Republic, we examined the shape of the relationship between the annual sum of fledglings (annual productivity) and vole numbers in both non-detrended and detrended data. At the districts’ level, we explored whether the degree of synchrony (measured by the correlation coefficient) and the strength of the productivity response increase (measured by the regression coefficient) in areas with higher vole population variability measured by the s-index. We found that the owls’ annual productivity increased linearly with vole numbers in the Czech Republic. Furthermore, based on district data, we also found that synchrony between dynamics in owls’ reproductive output and vole numbers increased with vole population variability. However, the strength of the response was not affected by the vole population variability. Additionally, we have shown that detrending remarkably increases the Taylor’s exponent b relating variance to mean in vole time series, thereby reversing the relationship between the coefficient of variation and the mean. This shift was not responsible for the increased synchrony with vole population variability. Instead, we suggest that higher synchrony could result from high food specialization of owls on the common vole in areas with highly fluctuating vole populations.