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The devices provide real-time measurements, and reduce the need for fingerprick testing of glucose levels. A drawback is that the meters are not as accurate because they read the glucose levels in the interstitial fluid which lags behind the levels in the blood. [22] [23] Continuous blood glucose monitoring systems are also relatively expensive.
Furthermore, a recent study showed that patients described as being "Uncontrolled Diabetics" (defined in this study by HbA1C levels >8%) showed a statistically significant decrease in the HbA1C levels after a 90-day period of seven-point self-monitoring of blood glucose (SMBG) with a relative risk reduction (RRR) of 0.18% (95% CI, 0.86–2.64% ...
Continuous glucose monitoring has some important limitations: CGM systems are not sufficiently accurate for detecting hypoglycemia, a common side-effect of diabetes treatment. [5] This is especially problematic because some devices have alarm functions to warn users about a hypoglycemic condition, and people might rely on those alarms.
For those with diabetes, monitoring blood glucose is an essential part of disease management, but unfortunately, the methods for tracking glucose each have their own downsides. Finger-pricking can ...
Diabetes patients need to be capable of testing blood sugar at home at the recommended frequency. [6] Frequent self- monitoring of blood glucose and record keeping is key to identifying the possibility of hypoglycemia. [11] Diabetes patients should be able to know how to respond when blood sugar levels are too high or too low. [6]
The normal level for fasting blood sugar in non-diabetic patients is 70 to 99 mg/dL (3.9 and 5.5 mmol/L). Another useful test that has usually done in a laboratory is the measurement of blood HbA1c (hemoglobin A1c) levels. In the blood, there is a molecule called hemoglobin which carries oxygen to the cells. Glucose can attach itself to this ...
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