Dynamic monitoring of the impact of insect-resistant transgenic poplar field stands on arthropod communities

2022 ◽  
Vol 505 ◽  
pp. 119921
Author(s):  
Shijie Wang ◽  
Junxia Liu ◽  
Yan Dong ◽  
Yongtan Li ◽  
Yali Huang ◽  
...  
Forests ◽  
2021 ◽  
Vol 12 (7) ◽  
pp. 877
Author(s):  
Rachel M. Durben ◽  
Faith M. Walker ◽  
Liza Holeski ◽  
Arthur R. Keith ◽  
Zsuzsi Kovacs ◽  
...  

The North American beaver (Castor canadensis Kuhl) and cottonwoods (Populus spp.) are foundation species, the interactions of which define a much larger community and affect a threatened riparian habitat type. Few studies have tested the effect of these interactions on plant chemistry and a diverse arthropod community. We experimentally examined the impact of beaver foraging on riparian communities by first investigating beaver food preferences for one cottonwood species, Fremont cottonwood (P. fremontii S. Watson), compared to other locally available woody species. We next examined the impact of beaver foraging on twig chemistry and arthropod communities in paired samples of felled and unfelled cottonwood species in northern Arizona (P. fremontii) and southwestern Colorado (narrowleaf cottonwood, P. angustifolia James, and Eastern cottonwood, P. deltoides W. Bartram ex Marshall). Four major patterns emerged: (1) In a cafeteria experiment, beavers chose P. fremontii six times more often than other woody native and exotic species. (2) With two cottonwood species, we found that the nitrogen and salicortin concentrations were up to 45% greater and lignin concentration 14% lower in the juvenile resprout growth of felled trees than the juvenile growth on unfelled trees (six of seven analyses were significant for P. fremontii and four of six were significant for P. angustifolia). (3) With two cottonwood species, arthropod community composition on juvenile branches differed significantly between felled and unfelled trees, with up to 38% greater species richness, 114% greater relative abundance and 1282% greater species diversity on felled trees (six of seven analyses with P. fremontii and four of six analyses with P. angustifolia were significant). The above findings indicate that the highest arthropod diversity is achieved in the heterogenous stands of mixed felled and unfelled trees than in stands of cottonwoods, where beavers are not present. These results also indicate that beaver herbivory changes the chemical composition in 10 out of 13 chemical traits in the juvenile growth of two of the three cottonwood species to potentially allow better defense against future beaver herbivory. (4) With P. deltoides, only one of five analyses in chemistry was significant, and none of the four arthropod community analyses were significant, suggesting that this species and its arthropod community responds differently to beaver. Potential reasons for these differences are unknown. Overall, our findings suggest that in addition to their impact on riparian vegetation, other mammals, birds, and aquatic organisms, beavers also may define the arthropod communities of two of three foundation tree species in these riparian ecosystems.


2004 ◽  
Vol 36 (2) ◽  
pp. S437-S441 ◽  
Author(s):  
M Brunet ◽  
O Millán ◽  
O Jiménez ◽  
J.M Campistol ◽  
E Vidal ◽  
...  

2021 ◽  
Vol 21 (1) ◽  
Author(s):  
Christopher Nguyen ◽  
Kevin T. Kline ◽  
Shehzad Merwat ◽  
Sheharyar Merwat ◽  
Gurinder Luthra ◽  
...  

Abstract Background The COVID-19 pandemic has led to disruptions in elective and outpatient procedures. Guidance from the Centers for Medicare and Medicaid Services provided a framework for gradual reopening of outpatient clinical operations. As the infrastructure to restart endoscopy has been more clearly described, patient concerns regarding viral transmission during the procedure have been identified. Moreover, the efficacy of the measures in preventing transmission have not been clearly delineated. Methods We identified patients with pandemic-related procedure cancellations from 3/16/2020 to 4/20/2020. Patients were stratified into tier groups (1–4) by urgency. Procedures were performed using our hospital risk mitigation strategies to minimize transmission risk. Patients who subsequently developed symptoms or tested for COVID-19 were recorded. Results Among patients requiring emergent procedures, 57.14% could be scheduled at their originally intended interval. COVID-19 concerns represented the most common rescheduling barrier. No patients who underwent post-procedure testing were positive for COVID-19. No cases of endoscopy staff transmission were identified. Conclusions Non-COVID-19 related patient care during the pandemic is a challenging process that evolved with the spread of infection, requiring dynamic monitoring and protocol optimization. We describe our successful model for reopening endoscopy suites using a tier-based system for safe reintroduction of elective procedures while minimizing transmission to patients and staff. Important barriers included financial and transmission concerns that need to be addressed to enable the return to pre-pandemic utilization of elective endoscopic procedures.


Author(s):  
Olav Skjelkvåle Ligaarden ◽  
Atle Refsdal ◽  
Ketil Stølen

Systems of systems are collections of systems interconnected through the exchange of services. Their often complex service dependencies and very dynamic nature make them hard to analyze and predict with respect to quality in general, and security in particular. In this chapter, the authors put forward a method for the capture and monitoring of impact of service dependencies on the security of provided services. The method is divided into four main steps focusing on documenting the system of systems and IT service dependencies, establishing the impact of service dependencies on risk to security of provided services, identifying measureable indicators for dynamic monitoring, and specifying their design and deployment, respectively. The authors illustrate the method in an example-driven fashion based on a case within power supply.


Sensors ◽  
2019 ◽  
Vol 19 (22) ◽  
pp. 4873
Author(s):  
Pinzeng Rao ◽  
Linjiang Lou ◽  
Weiguo Jiang ◽  
Yicheng Wang ◽  
Xiaoya Wang ◽  
...  

Due to the widespread presence of noise, such as clouds and cloud shadows, continuous, high spatiotemporal-resolution dynamic monitoring of lake water extents is still limited using remote sensing data. This study aims to take an approach to mapping continuous time series of highly-accurate lake water extents. Four lakes from diverse regions of China were selected as cases. In order to reduce the impact of noise and ensure high spatial and temporal resolution of the final results, two sets of MODIS products (including MOD09A1 and MOD13Q1) are used to extract water bodies. This approach mainly comprises preliminary classification, post processing and data fusion. The preliminary classification used the Random Forest (RF) classifier to efficiently and automatically obtain the initial classification results. Post-processing is implemented to repair the classification results affected by noise as much as possible. The processed results of the two sets of products are fused by using the Homologous Data-Based Spatial and Temporal Adaptive Fusion Method (HDSTAFM), which reduces the effect of noise and also improve the temporal and spatial resolution for the final water results. We determined the accuracy using Landsat-based water results, and the values of overall accuracy (OA), user’s accuracy (UA), producer’s accuracy (PA), and kappa coefficients (KC) are mostly greater than 0.9. Good correlation was achieved for a time series of water area and altimetry data, obtained by multiple satellites, and also for water-level data selected from hydrological stations.


Water ◽  
2020 ◽  
Vol 12 (3) ◽  
pp. 644 ◽  
Author(s):  
Xin Wang ◽  
Kebin Shi ◽  
Quan Shi ◽  
Hanwei Dong ◽  
Ming Chen

Tunnel water inrush is complex, fuzzy, and random, and it is affected by many factors, such as hydrology, geology, and construction. However, few papers have considered the impact of dynamic monitoring on water inrush in previous research. In this study, considering geological, hydrological, and construction factors, as well as dynamic monitoring, a new multi-index evaluation method is proposed to analyze the risk of tunnel water inrush based on the normal cloud model. A new weight algorithm combining analytic hierarchy process and entropy method is used to calculate the index weight. The certainty degree of each evaluation index belonging to the corresponding cloud can be obtained by the cloud model theory. The final level of tunnel water inrush is determined via the synthetic certainty degree. The proposed method is applied to analyze the risk of water inrush in the SS (Shuang-san) tunnel constructed by a tunnel boring machine in the arid area of Northwest China. The evaluation results are not only basically identical to the results calculated by the ideal point and gray relation projection methods, but also agree well with the actual excavation results. This demonstrates that this new risk assessment method of water inrush has high accuracy and feasibility. Simultaneously, it also provides a new research idea to analyze the probability of tunnel water inrush and can provide a reference for related projects.


2017 ◽  
Vol 130 (3) ◽  
pp. 567-576 ◽  
Author(s):  
Yachao Ren ◽  
Jun Zhang ◽  
Haiyong Liang ◽  
Jinmao Wang ◽  
Minsheng Yang

2021 ◽  
pp. 19-30
Author(s):  
O.M. Safonova ◽  
O.B. Dynnyk ◽  
G.L. Gumeniuk ◽  
V.A. Lukiianchuk ◽  
H.V. Linska ◽  
...  

BACKGROUND. The era of coronavirus disease (COVID-19) set the such task for lung ultrasound (LUS): to identify the presence of COVID-pneumonia, its differential diagnosis with other conditions which characterized by interstitial edema, determining the severity of lung damage and its location, the dynamics of pulmonary changes tissue, the development of complications, as well as to assess the effectiveness of personalized therapy. OBJECTIVE. To develop a national LUS protocol for COVID-19 based on a balance of completeness of information with the optimal minimum of time and effort for medical staff, who often do not specialize in ultrasound using, with ultrasound equipment of basic and middle classes. MATERIALS AND METHODS. A total of 1576 patients with COVID-19 were examined. There were 810 women (51.4 %) and 766 men (48.6 %). The age of the examined patients was in the range of 18-83 years, the average age was 52.3±14.6 years. 4710 LUS were performed, of which 1572 were repeated and 3144 – in the dynamics. Polysystemic ultrasound was performed in 275 patients. Ultrasound devices of both domestic and foreign production were used: Soneus P7 (Ultrasine, Ukraine), HandyUsound (Ukraine), Xario, USAP-770A (Toshiba, Japan), GE Venue (General Electric, USA) and TE7 COVID (Mindray, China) with ultrasound probes of convex, linear and microconvex formats. RESULTS. Summarizing our own experience with patients with COVID-19 in 2020-2021, we have developed a version of the LUS-protocol, which has a convenient form of recording all stages of ultrasound with maximum coverage of the entire volume of both lungs according to a clear algorithm, a graphical form, clear ultrasound semiotics and diagnostic scoring criteria for the severity of lung damage. CONCLUSIONS. 1. Clinical data indicate the feasibility and effectiveness of using LUS for dynamic monitoring of patients with pneumonia caused by SARS-CoV-2, especially in oxygen-dependent patients at their bedside (POCUS principle). 2. Optimization of the use of radiological diagnostic methods due to ultrasound makes it possible to reduce the radiation dose of the patient.3. The use of LUS allows more adequate decision-making on the need for intensive and interventional therapy, leads to faster diagnosis, improved medical care, reduced length of stay of patients in ICU, as well as reducing the total cost of treatment.4. Ability to reduce the impact of SARS-CoV-2 on healthcare professionals by limiting physical contact with the patient. 5. The standardized Ukrainian protocol of LUS provides availability, efficiency and clear interpretation of the received data at its use by different doctors in different medical institutions. The integration of the protocol in to the ultrasound machine provides optimization of the workflow process.


Author(s):  
I. B. Ershova ◽  
Yulia V. Glushko

Introduction. Preserving and restoring the health of children in difficult situations is one of the priority tasks of modern Pediatrics. Therefore, taking into account the characteristics of the health status of children in a prolonged stressful situation associated with a military conflict is extremely important for the full and timely assistance to this contingent. Purpose of the study To conduct a comprehensive assessment of the health status of 7-9 years old children living in the military conflict zone in the Donbas region. Materials and methods. We examined 234 children (of 7-9 years), of which 123 people living in the war zone in the Donbas region. A year after the outbreak of military conflict there was carried out an assessment of the health status of children, including an assessment of psycho-emotional status (methods adapted to primary school age), an analysis of medical documentation (forms 025/U-04 and No. 112/U) with an assessment of the incidence rate, physical development, as well as the study of the autonomic nervous system (methods A.M. Wayne, cardiointervalography). Results All children in the territory of the military conflict were established to have violations of the psycho-emotional and cognitive spheres, expressed in signs of post-stress disorder and maladaptation. There were revealed alterations in the vegetative status, an increase in the frequency of registration of somatic pathology, as well as a change in anthropometric and physiometric indices of physical development were revealed. Conclusion Identified violations in the state of health of children living in the zone of military conflict dictate the need for dynamic monitoring and rehabilitation measures with the integrated participation of medical, psychological, pedagogical and social specialists


Sign in / Sign up

Export Citation Format

Share Document