The transition to more sustainable energy systems has set about redefining the social roles and responsibilities of citizens. Implicit in this are expectations around participation, though the precise contours of what this might mean remain open. Debates around the energy transition have been skewed towards a normative construct of what it means to be a 'good citizen', the parameters for which are shaped by predetermined visions of statist and/or market-driven determinations of the energy systems of the future. This article argues that concepts such as 'energy citizen' are co-opted to reflect popular neoliberal discourses, and ignore crucial questions of unequal agency and access to resources. Paradoxically, official discourses that push responsibility for the energy transition onto the 'citizen-as-consumer' effectively remove agency from citizens, leaving them largely disconnected and disempowered. Consequently, energy citizenship needs to be reconceptualised to incorporate more collective and inclusive contexts for action. Considering how much energy consumption occurs in (traditionally female) domestic spheres, do conventional notions of citizenship (especially with regards to its associated rights and duties) need to be recalibrated in order for the concept to be usefully applied to the energy transition?
The computations and neural processes underpinning decision making have primarily been investigated using highly simplified tasks in which stimulus onsets cue observers to start accumulating choice-relevant information. Yet, in daily life we are rarely afforded the luxury of knowing precisely when choice-relevant information will appear. Here, we examined neural indices of decision formation while subjects discriminated subtle stimulus feature changes whose timing relative to stimulus onset (‘foreperiod’) was uncertain. Joint analysis of behavioural error patterns and neural decision signal dynamics indicated that subjects systematically began the accumulation process before any informative evidence was presented, and further, that accumulation onset timing varied systematically as a function of the foreperiod of the preceding trial. These results suggest that the brain can adjust to temporal uncertainty by strategically modulating accumulation onset timing according to statistical regularities in the temporal structure of the sensory environment with particular emphasis on recent experience.
Energy transition debates have been characterized by a strong emphasis on the technical implications of shifting away from fossil fuels to renewable energy sources, with little consideration of social contexts. This is now changing, with a growing emphasis on reconfiguring the social aspects of energy, particularly in terms of introducing more democratic processes into behavior change and energy practice engagements. This article situates itself within these debates and demonstrates the transformative potential of combining participatory action research (PAR) approaches with a modified Delphi method for understanding energy transition issues, particularly beyond forecasting instruments. There remains a dearth in literature combining the Delphi method with PAR; its application in the field of energy transitions is very innovative. PAR draws from grassroots and local-based knowledge, Delphi panels typically focus on the insights from a panel of professional experts. In combining these two approaches, to develop principles for an inclusive and just energy transition, a reflexive form of dialogue emerges that gives voice to what are often considered dissonant or mismatched perspectives. Furthermore, the experimental use of a modified Delphi panel, combined with PAR, offers a strategy to promote knowledge sharing between different groups and to counter potential communication barriers among different actors in society. This article shows how a modified Delphi panel approach is considerably enhanced by combining elements of PAR, raising the potential of Delphi panels beyond forecasting instruments, which often seek to determine the way the future “will be,” toward an envisioning tool that collaboratively seeks to explore the way a low-carbon system “could be,” or perhaps “should be.” The development of energy transition principles, endorsed through the modified Delphi panel, offers a concrete way to enact practices of energy justice within a more democratized energy system.
The computations and neural processes underpinning decision making have primarily been investigated using highly simplified tasks in which stimulus onsets cue observers to start accumulating choice-relevant information. Yet, in daily life we are rarely afforded the luxury of knowing precisely when choice-relevant information will appear. Here, we examined neural indices of decision formation while subjects discriminated subtle stimulus feature changes whose timing relative to stimulus onset ('foreperiod') was uncertain. Joint analysis of behavioral error patterns and neural decision signal dynamics indicated that subjects systematically began the accumulation process before any informative evidence was presented, and further, that accumulation onset timing varied systematically as a function of the foreperiod of the preceding trial. These results suggest that the brain can adjust to temporal uncertainty by strategically modulating accumulation onset timing according to statistical regularities in the temporal structure of the sensory environment with particular emphasis on recent experience.
A previously healthy 27-year-old man was brought to hospital after been found late at night confused, agitated and talking incoherently. He represented 12 days later with focal seizures, progressing to anarthria and encephalopathy. MR scan of brain showed diffuse cerebral oedema and his plasma ammonia was >2000 µmol/L (12–55 µmol/L). He developed refractory status epilepticus and subsequently died. Genetic analysis identified an ornithine transcarbamylase (OTC) gene mutation on the X chromosome. We discuss this atypical presentation of OTC deficiency as a rare but treatable cause of hyperammonaemic encephalopathy.
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