scholarly journals #MeToo in regional, rural and remote Australia: An analysis of regional newspapers reports profiling the movement

2020 ◽  
Vol 5 (2) ◽  
pp. 244-275
Author(s):  
Rachel Loney-Howes ◽  
Bianca Fileborn
2021 ◽  
Vol 36 (3) ◽  
pp. 362-369
Author(s):  
Katie A. Willson ◽  
Gerard J. FitzGerald ◽  
David Lim

AbstractObjective:This scoping review aims to map the roles of rural and remote primary health care professionals (PHCPs) during disasters.Introduction:Disasters can have catastrophic impacts on society and are broadly classified into natural events, man-made incidents, or a mixture of both. The PHCPs working in rural and remote communities face additional challenges when dealing with disasters and have significant roles during the Prevention, Preparedness, Response, and Recovery (PPRR) stages of disaster management.Methods:A Johanna Briggs Institute (JBI) scoping review methodology was utilized, and the search was conducted over seven electronic databases according to a priori protocol.Results:Forty-one papers were included and sixty-one roles were identified across the four stages of disaster management. The majority of disasters described within the literature were natural events and pandemics. Before a disaster occurs, PHCPs can build individual resilience through education. As recognized and respected leaders within their community, PHCPs are invaluable in assisting with disaster preparedness through being involved in organizations’ planning policies and contributing to natural disaster and pandemic surveillance. Key roles during the response stage include accommodating patient surge, triage, maintaining the health of the remaining population, instituting infection control, and ensuring a team-based approach to mental health care during the disaster. In the aftermath and recovery stage, rural and remote PHCPs provide long-term follow up, assisting patients in accessing post-disaster support including delivery of mental health care.Conclusion:Rural and remote PHCPs play significant roles within their community throughout the continuum of disaster management. As a consequence of their flexible scope of practice, PHCPs are well-placed to be involved during all stages of disaster, from building of community resilience and contributing to early alert of pandemics, to participating in the direct response when a disaster occurs and leading the way to recovery.


2021 ◽  
Vol 5 (1) ◽  
Author(s):  
Mohammed Obaid ◽  
Qianwei Zhang ◽  
Scott J. Adams ◽  
Reza Fotouhi ◽  
Haron Obaid

Abstract Background Telesonography systems have been developed to overcome barriers to accessing diagnostic ultrasound for patients in rural and remote communities. However, most previous telesonography systems have been designed for performing only abdominal and obstetrical exams. In this paper, we describe the development and assessment of a musculoskeletal (MSK) telesonography system. Methods We developed a 4-degrees-of-freedom (DOF) robot to manipulate an ultrasound probe. The robot was remotely controlled by a radiologist operating a joystick at the master site. The telesonography system was used to scan participants’ forearms, and all participants were conventionally scanned for comparison. Participants and radiologists were surveyed regarding their experience. Images from both scanning methods were independently assessed by an MSK radiologist. Results All ten ultrasound exams were successfully performed using our developed MSK telesonography system, with no significant delay in movement. The duration (mean ± standard deviation) of telerobotic and conventional exams was 4.6 ± 0.9 and 1.4 ± 0.5 min, respectively (p = 0.039). An MSK radiologist rated quality of real-time ultrasound images transmitted over an internet connection as “very good” for all telesonography exams, and participants rated communication with the radiologist as “very good” or “good” for all exams. Visualisation of anatomic structures was similar between telerobotic and conventional methods, with no statistically significant differences. Conclusions The MSK telesonography system developed in this study is feasible for performing soft tissue ultrasound exams. The advancement of this system may allow MSK ultrasound exams to be performed over long distances, increasing access to ultrasound for patients in rural and remote communities.


2020 ◽  
Vol 30 (Supplement_5) ◽  
Author(s):  
L Ansell

Abstract Introduction An innovative digitally-supported multi-sectoral solution for supporting end-to-end primary care for rural and remote low-income populations in Western Visayas, Philippines was examined to determine its efficacy in supporting health access. This solution brings together multisectoral stakeholders using a digital platform to coordinate the provision of a virtual primary care system. The solution also supports ordering and delivery of low-cost insurance and medicines, with the aim of reducing out-of-pocket payments and complementing public-sector services. Methods Processes and outputs for a novel data-driven digital health solution were documented and analyzed through a mixed methods approach. Researchers conducted interviews with a range of stakeholders, including program beneficiaries and partners. Quantitative data focusing on the project outputs were also examined. Results Through an integrated digital platform to coordinate inputs from the public sector (Department of Health); private sector (pharmaceutical, insurance, and telecom firms); and community (in the form of a peer-worker network), this model offers an example of an innovative approach to primary health delivery in low-resource settings. These inputs are leveraged and informed by a 'big-data' precision approach, based on detailed epidemiological profiles of community residents. This dataset allows for the evidence-based identification of village-specific health priorities and development of corresponding interventions. This approach has contributed to increased access to medicines; affordability of medicines and health services; and community resilience among the target populations. However, barriers involving a local shortage of health human resources and cumbersome eHealth regulations affect program impact. Conclusions This research provides evidence for the scale-up of a multisectoral digital approach to support the implementation of UHC targets in Philippines. Key messages Implementing digital health solutions in low-resource settings is possible. Changes are needed in Philippines health regulations for digital health to properly support UHC implementation.


Sensors ◽  
2021 ◽  
Vol 21 (5) ◽  
pp. 1627
Author(s):  
Giovanni Battista Gaggero ◽  
Mario Marchese ◽  
Aya Moheddine ◽  
Fabio Patrone

The way of generating and distributing energy throughout the electrical grid to all users is evolving. The concept of Smart Grid (SG) took place to enhance the management of the electrical grid infrastructure and its functionalities from the traditional system to an improved one. To measure the energy consumption of the users is one of these functionalities that, in some countries, has already evolved from a periodical manual consumption reading to a more frequent and automatic one, leading to the concept of Smart Metering (SM). Technology improvement could be applied to the SM systems to allow, on one hand, a more efficient way to collect the energy consumption data of each user, and, on the other hand, a better distribution of the available energy through the infrastructure. Widespread communication solutions based on existing telecommunication infrastructures instead of using ad-hoc ones can be exploited for this purpose. In this paper, we recall the basic elements and the evolution of the SM network architecture focusing on how it could further improve in the near future. We report the main technologies and protocols which can be exploited for the data exchange throughout the infrastructure and the pros and cons of each solution. Finally, we propose an innovative solution as a possible evolution of the SM system. This solution is based on a set of Internet of Things (IoT) communication technologies called Low Power Wide Area Network (LPWAN) which could be employed to improve the performance of the currently used technologies and provide additional functionalities. We also propose the employment of Unmanned Aerial Vehicles (UAVs) to periodically collect energy consumption data, with evident advantages especially if employed in rural and remote areas. We show some preliminary performance results which allow assessing the feasibility of the proposed approach.


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