GameFAQs' JoshJohn also wrote a review of the game, saying it was "awesome" and "is the perfect game to bring your PS3 or PS4 back to life".
During a Sony-sponsored YouTube interview about the game on May 13, 2017, Bend studio director of design, Thomas Bertone, responded to a fan asking if the game would be getting a Switch port. Bertone said that the development team at Bend have spoken to the Switch team, and "they don't have a problem with that at all". Bertone did state however that the game was originally a PS3/PS4 exclusive.
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Category:2014 video games
Category:Action video games
Category:Bend Studio games
Category:PlayStation 4 games
Category:PlayStation 4 Pro enhanced games
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Category:Video games developed in the United States
Category:Video games with downloadable contentThe effect of transmembrane K+ current on the membrane potential and morphology of the cerebral arterioles in rats.
Transmembrane K+ currents may play a significant role in the regulation of the membrane potential of cerebral arterioles. The regulation of the membrane potential, morphology, and transmembrane ionic currents of smooth muscle cells of cerebral arterioles were studied using the single-electrode voltage-clamp technique in the isolated, pressurized rat pial arterioles (100-200 microns). Blockade of Ca2+ currents by Ni2+ (10 microM) or the removal of Ca2+ by EGTA (5 mM) resulted in an elevation of the resting potential (delta -39 +/- 1 mV) and significantly increased membrane conductance, whereas Nomega-nitro-L-arginine (1 mM) reduced the resting potential and membrane conductance. Glibenclamide (10 microM) blocked the ATP-sensitive K+ current (IKATP) and decreased the resting potential and the membrane conductance, whereas 4-aminopyridine (4-AP) decreased the resting potential and membrane conductance and increased membrane resistance. The hyperpolarization by glibenclamide was partially inhibited by tetraethylammonium, but the depolarization by 4-AP was not. Both glibenclamide and 4-AP significantly increased the external Ca2+ (1 mM)
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