Top Tweets for #physiologyfeature
Today's #PhysiologyFeature is on #cytokines, which are tiny proteins secreted by both immune + non-immune cells to communicate with one another.
Learn more: https://t.co/2x9qfMfFQI
Try Osmosis from Elsevier for free: https://t.co/RNC5Mb7Dr3

Today's #PhysiologyFeature is about glomerular filtration, which allows water & some solutes in the plasma to pass into Bowman’s space while keeping red blood cells + plasma proteins in the blood.
Learn more: https://t.co/YUCY0Blspz
Try Osmosis from Elsevier for free: https://t.co/utRbjYkDA1

The Frank-Starling relationship isn't about a love affair between two physiologists... but this #PhysiologyFeature is still a read that'll get your heart pumping!
Learn more: https://t.co/R32GV1bbZN
Try Osmosis from Elsevier for free: https://t.co/8xMe6PpK8X

Today's #PhysiologyFeature is about CO₂ transportation. It moves to the lungs via blood in three ways: dissolving it, binding it to hemoglobin, or converting it to something else.
Learn more: https://t.co/pxh7RLiEpO
Try Osmosis from Elsevier for free: https://t.co/8xMe6PpK8X

Check out today's #PhysiologyFeature to discover what other #hormones the adrenal glands produce and the physiological effects they have on the body.
Learn more: https://t.co/3p8WMRVWcr
Try for free: https://t.co/cN1WjLytDV

Today's #PhysiologyFeature is all about #anticoagulation (clot retraction), a process that occurs with primary & secondary #hemostasis. It prevents #BloodClots from getting too big.
Learn more: https://t.co/iDtkzkkxDZ
Try Osmosis from Elsevier for free: https://t.co/cN1WjLytDV

Today's #PhysiologyFeature is about laminar flow & Reynolds number. Laminar flow means blood flows smoothly through the vessels. Turbulent flow is the opposite: disrupted #BloodFlow.
Learn more: https://t.co/seXm0MtwQt
Try Osmosis from Elsevier for free: https://t.co/Ipj9vGAMhU

Feeling a little hormonal? Your instincts are right – it's #WorldBreastfeedingWeek, so today's #PhysiologyFeature is all about #oxytocin and #prolactin.
Learn more: https://t.co/dhZLjddAHW
Try Osmosis from Elsevier for free: https://t.co/Jtyy9yRSr9

It's #CervicalScreeningAwarenessWeek, so today's #PhysiologyFeature is a helpful review of the female reproductive system. Don't forget to schedule your Pap smear!
Learn more: https://t.co/7kqNWk2bFF
#LearnByOsmosis
Try Osmosis from Elsevier for free: https://t.co/zXBb8BDITr

Wonder how the body actually processes #stress? Today's #PhysiologyFeature answers that question! Stress is the body's physical, mental, and emotional response to a #stressor or a change requiring adaptation.
Learn more: https://t.co/SsDX2xkKbB
#LearnByOsmosis

Today's #PhysiologyFeature is all about cytokines, which are tiny proteins that are secreted by both immune and non-immune cells to communicate with one another.
Learn more: https://t.co/PWD2fBitsF

Today's #PhysiologyFeature is about normal heart sounds: "lub" (S1) and "dub" (S2). They're produced by the way blood moves through the heart, specifically the closing of heart valves.
Learn more: https://t.co/TvGX5C07Jy

Today's #PhysiologyFeature is about the Fick Principle, which simply states that at rest, the oxygen going into an organ minus the oxygen left out of an organ must equal how much oxygen that organ has used.
Learn more: https://t.co/lKoqQutDn6

Today's #PhysiologyFeature is about glomerular filtration, which allows water and some solutes in the plasma to pass into Bowman’s space while keeping red blood cells and plasma proteins in the blood.
Learn more: https://t.co/Szfmu60Jsj

Today's #PhysiologyFeature is about lung volume and capacity, which can be measured using spirometry.
Learn more: https://t.co/jlgj0rnIwB

Today's #PhysiologyFeature is about the proximal convoluted tubule, which is a part of the renal tubule closest to Bowman's capsule. It's lined with tubular cells with apical surfaces that face the tubular lumen.
Learn more: https://t.co/P7SwLqdhNS

Today's #PhysiologyFeature is about laminar flow and Reynolds number. Laminar flow means blood flows smoothly through the vessels. Turbulent flow is the opposite: blood flow that's disrupted.
Learn more: https://t.co/hWiKPRn3Fn

Today's #PhysiologyFeature is on body fluid compartments. Assuming that total body water is ~60% of body mass, roughly 2/3 (40%) is intracellular fluid, and the other 1/3 (20%) is extracellular fluid. This is known as the 60-40-20 rule.
Learn more: https://t.co/2C7NoDtH8d

Today's #PhysiologyFeature is all about oxytocin and prolactin, two hormones involved with producing and releasing milk. During pregnancy, the two hormones, along with estrogen and progesterone, stimulate the growth of milk-producing alveoli.
Learn more: https://t.co/c5EYciqxBu

Today's #PhysiologyFeature is about insulin, a hormone that lowers blood sugar levels (glycemia) after a meal. Beta cells are in charge of producing insulin, which is first synthesized as a single polypeptide called preproinsulin.
Learn more: https://t.co/LkR3IyvU5Y

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