diff --git a/Samsung Researchers%E2%80%99 Non-Invasive Blood Glucose Monitoring Method Featured In %E2%80%98Science Advances%E2%80%99.-.md b/Samsung Researchers%E2%80%99 Non-Invasive Blood Glucose Monitoring Method Featured In %E2%80%98Science Advances%E2%80%99.-.md new file mode 100644 index 0000000..b978e9e --- /dev/null +++ b/Samsung Researchers%E2%80%99 Non-Invasive Blood Glucose Monitoring Method Featured In %E2%80%98Science Advances%E2%80%99.-.md @@ -0,0 +1,7 @@ +
With diabetes and its associated costs on the rise around the world, effective blood glucose monitoring is considered more necessary than ever. While typical strategies have required people with diabetes to prick their finger to extract blood drops, non-invasive options, [BloodVitals insights](https://ncsota.org/ceramic-vase-with-turned-wood-base/) which reduce patients’ ache and discomfort, have been a long-standing dream in diabetes administration. Recently, researchers on the Samsung Advanced Institute of Technology (SAIT), Samsung Electronics, in collaboration with the Massachusetts Institute of Technology (MIT), developed an innovative, non-invasive methodology for monitoring blood glucose ranges that makes use of a way often known as Raman spectroscopy. On January 24, the researchers introduced their findings in Science Advances, a scientific journal from the American Association for the Advancement of Science. Raman spectroscopy is a spectroscopic technique that utilizes lasers for chemical composition identification. Previous research that utilized Raman spectroscopy for glucose sensing in latest a long time demonstrated a functionality to measure glucose mainly by presenting statistical correlations to the reference glucose concentration. However, those research raised questions concerning the effectiveness and accuracy of using Raman spectroscopy for glucose measurement attributable to an absence of direct evidence for [BloodVitals SPO2](https://myhomemypleasure.co.uk/wiki/index.php?title=Revolutionizing_Home_Health_Monitoring_With_BloodVitals_SPO2) glucose sensing. To break through the limitations that arose in prior research, Samsung’s researchers developed an off-axis Raman spectroscopy system that allows the direct commentary of glucose Raman peaks from in vivo skin. Utilizing this system, they demonstrated certainly one of the best prediction accuracies among non-invasive technologies. The research crew additionally developed an innovative technique for decreasing the effects of movement artifacts on glucose sensing in Raman spectroscopy. "Non-invasive blood glucose monitoring has been a subject of nice discussion for many years, and that i believe that our findings will help guide the course of future research for non-invasive glucose sensing," stated Dr. Sung Hyun Nam, Master at SAIT’s Mobile Healthcare Lab.
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Lindsay Curtis is a health & medical writer in South Florida. She labored as a communications professional for health nonprofits and the University of Toronto’s Faculty of Medicine and Faculty of Nursing. Hypoxia is a condition that happens when the physique tissues do not get enough oxygen provide. The human body depends on a gentle stream of oxygen to function properly, and when this provide is compromised, it will probably significantly have an effect on your well being. The symptoms of hypoxia can range however generally embody shortness of breath, confusion, dizziness, and blue lips or fingertips. Prolonged hypoxia can result in lack of consciousness, seizures, organ injury, or demise. Treatment is determined by the underlying cause and will embody medication and oxygen therapy. In severe cases, hospitalization may be necessary. Hypoxia is a comparatively frequent situation that can have an effect on folks of all ages, especially those that spend time at high altitudes or [real-time SPO2 tracking](https://url7x.com/sebastian82662) have lung or coronary heart situations. There are four essential forms of hypoxia: hypoxemic, hypemic, stagnant, and histotoxic.
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