Tag Archives: control

Physiology: Microbial signals to the brain control weight

The bacteria that inhabit the rodent gut promote insulin secretion and food intake by activating the parasympathetic nervous system — a hitherto unknown mode of action for this multifaceted microbiota. See Article p.213

Nature 534 185 doi: 10.1038/534185a

Nature Latest Research   STRATEGIES FOR A COMPANY’S INTELLECTUAL PROPERTY. IP protection is a part of your business...
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Ribosome-dependent activation of stringent control

In order to survive, bacteria continually sense, and respond to, environmental fluctuations. Stringent control represents a key bacterial stress response to nutrient starvation that leads to rapid and comprehensive reprogramming of metabolic and transcriptional patterns. In general, transcription of genes for growth and proliferation is downregulated, while those important for survival and virulence are upregulated. Amino acid starvation is sensed by depletion of the...

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FDA flexes regulatory muscles, says vaping, e-cigs now under its control
 The US Food and Drug Administration announced Thursday that it has extended its authority and will now regulate electronic cigarettes, hookah tobacco, cigars, and other tobacco products under the 2009 Family Smoking Prevention and Tobacco Control Act.
The regulatory move, first proposed in 2014, is largely aimed at protecting kids from tobacco and nicotine products. The result...
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Opponent and bidirectional control of movement velocity in the basal ganglia

For goal-directed behaviour it is critical that we can both select the appropriate action and learn to modify the underlying movements (for example, the pitch of a note or velocity of a reach) to improve outcomes. The basal ganglia are a critical nexus where circuits necessary for the production of behaviour, such as the neocortex and thalamus, are integrated with reward signalling to reinforce...

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Restoring cortical control of functional movement in a human with quadriplegia

Millions of people worldwide suffer from diseases that lead to paralysis through disruption of signal pathways between the brain and the muscles. Neuroprosthetic devices are designed to restore lost function and could be used to form an electronic ‘neural bypass’ to circumvent disconnected pathways in the nervous system. It has previously been shown that intracortically recorded signals can be decoded to extract information related...

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Windows 10 roadmap: Control everything remotely

As Microsoft continues to court businesses and encourage them to upgrade to Windows 10, the company has taken the novel step of publishing a roadmap of Windows 10 features. This roadmap describes business-oriented features that are coming to Windows 10. Some, such as biometric authentication in the Edge browser, have already been announced as part of the forthcoming Anniversary Update and are currently available in...

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Coherent feedback control of a single qubit in diamond

Engineering desired operations on qubits subjected to the deleterious effects of their environment is a critical task in quantum information processing, quantum simulation and sensing. The most common approach relies on open-loop quantum control techniques, including optimal-control algorithms based on analytical or numerical solutions, Lyapunov design and Hamiltonian engineering. An alternative strategy, inspired by the success of classical control, is feedback control. Because of...

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Bidirectional electromagnetic control of the hypothalamus regulates feeding and metabolism

Targeted, temporally regulated neural modulation is invaluable in determining the physiological roles of specific neural populations or circuits. Here we describe a system for non-invasive, temporal activation or inhibition of neuronal activity in vivo and its use to study central nervous system control of glucose homeostasis and feeding in mice. We are able to induce neuronal activation remotely using radio...

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Three-dimensional control of the helical axis of a chiral nematic liquid crystal by light

Chiral nematic liquid crystals—otherwise referred to as cholesteric liquid crystals (CLCs)—are self-organized helical superstructures that find practical application in, for example, thermography, reflective displays, tuneable colour filters and mirrorless lasing. Dynamic, remote and three-dimensional control over the helical axis of CLCs is desirable, but challenging. For example, the orientation of the helical axis relative to the substrate can be changed from perpendicular to parallel...

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