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Positive feedback is used in digital electronics to force voltages away from intermediate voltages into '0' and '1' states. On the other hand, thermal runaway is a type of positive feedback that can destroy semiconductor junctions. Positive feedback in chemical reactions can increase the rate of reactions, and in some cases can lead to explosions.
Positive feedback loops play a role by switching cells from low to high Cdk-activity. The interaction between the two types of loops is evident in mitosis. While positive feedback initiates mitosis, a negative feedback loop promotes the inactivation of the cyclin-dependent kinases by the anaphase-promoting complex.
In membrane biology, the Hodgkin cycle is a key component of membrane physiology that describes bioelectrical impulses, especially prevalent in neural and muscle tissues. It was identified by British physiologist and biophysicist Sir Alan Lloyd Hodgkin.
inhibition of run-away reactions when coupled with a positive feedback loop; creating an oscillator by taking advantage in the time delay of transcription and translation, given that the mRNA and protein half-life is shorter; positive feedback: the gene product upregulates its own production directly or indirectly, which can result in
NEDD4-1, an E3 ligase that recognises PTEN for degradation is up-regulated by the PI3K pathway. Therefore, when Akt is activated, PTEN is further repressed in a positive feedback loop. [23] The pathway is also controlled by protein phosphatase 2A (PP2A), which dephosphorylates Akt at Thr308 and phosphatase PHLPP dephosphorylates Akt at Ser473. [3]
Positive feedback occurs when the fed-back signal is in phase with the input signal. Under certain gain conditions, positive feedback reinforces the input signal to the point where the output of the device oscillates between its maximum and minimum possible states. Positive feedback may also introduce hysteresis into a circuit. This can cause ...
Positive feedback loops, on their own or in combination with negative feedback are a common feature of oscillating biological systems. [2] Examples
In the physiology of the kidney, tubuloglomerular feedback (TGF) is a feedback system inside the kidneys. Within each nephron , information from the renal tubules (a downstream area of the tubular fluid ) is signaled to the glomerulus (an upstream area).