to secondary hyperparathyroidismcan leadto secondary hyperparathyroidism
in bone lossresultsin bone loss
withdrawalmay causewithdrawal
to hypocalcemialeadingto hypocalcemia
to broken bonesleadingto broken bones
in activation of calcium - dependent processes leading to cell proliferationresultingin activation of calcium - dependent processes leading to cell proliferation
in a variety of calcium mediated responses such as smooth muscle contractionresultsin a variety of calcium mediated responses such as smooth muscle contraction
in the increased contraction of cardiac and smooth muscleresultsin the increased contraction of cardiac and smooth muscle
in less than optimal bone densityresultingin less than optimal bone density
the muscular contraction in contractile cellscausesthe muscular contraction in contractile cells
muscular contraction in contractile cellscausesmuscular contraction in contractile cells
to an increase in potassium permeability causing membrane hyperpolarizationleadsto an increase in potassium permeability causing membrane hyperpolarization
to osteoporosis and risk of bone fractureleadsto osteoporosis and risk of bone fracture
to sustained calciumleadingto sustained calcium
to increased cardiac contractilityleadingto increased cardiac contractility
to sustained calcium / calmodulin - dependent protein kinase kinaseleadingto sustained calcium / calmodulin - dependent protein kinase kinase
to sustained calcium / calmodulin - dependent protein kinase kinase leadingto sustained calcium / calmodulin - dependent protein kinase kinase
to increases in cytosolic calciumleadingto increases in cytosolic calcium
relaxation of vascular smooth musclecausingrelaxation of vascular smooth muscle
cellular dysfunctioncausescellular dysfunction
to increasedleadsto increased
to increased contractility andleadingto increased contractility and
to increased contractilityleadingto increased contractility
a potassium permeability increasecould causea potassium permeability increase
mitochondrial functioninfluencingmitochondrial function
the inactivation rate and inhibition of L - type Ca2 channelsinfluencesthe inactivation rate and inhibition of L - type Ca2 channels
the muscular contraction in contractile cells ... and is the effector ioncausesthe muscular contraction in contractile cells ... and is the effector ion
muscular contraction in contractile cells ... and is the effector ioncausesmuscular contraction in contractile cells ... and is the effector ion
to increases the strength of contractionleadsto increases the strength of contraction
to a reduction in muscle contractionleadsto a reduction in muscle contraction
to a reduction in muscle contractionleadingto a reduction in muscle contraction