28 Sep What is a Continous Glucose Monitor? A Beginner’s Guide to CGM
Notice: This post is provided for background information only. Continuous glucose monitors are medical devices — appropriate use, indications, and monitoring requirements vary by individual and device. Consult your healthcare provider for specific medical advice regarding glucose monitoring and diabetes management.
Continuous glucose monitoring has changed the way many people with diabetes can follow their glucose levels throughout the day. Instead of relying only on occasional finger-stick measurements, a continuous glucose monitor (CGM) can provide ongoing information about glucose levels and show how those levels change over time. For someone considering a CGM for the first time, however, the technology can seem complicated — what exactly does a CGM measure, how does the sensor work, and how does it differ from a traditional blood glucose meter? According to the CDC (Centers for Disease Control and Prevention), continuous glucose monitors measure glucose from interstitial fluid rather than blood, which means readings can differ from fingerstick measurements, and users should discuss with their healthcare provider when traditional blood glucose testing may still be appropriate alongside CGM use.
Dr. Klonoff[/caption]
Dr. Hagobian[/caption]
Todd Hagobian, Ph.D.
pronouns he/him/his
Department Chair & Professor, Kinesiology and Public Health
Cal Poly, San Luis Obispo, CA
MedicalResearch.com: What is the background for this study?
Response: Previous observational studies have shown that urinary BPA is related to Type 2 diabetes risk. Meaning, higher urinary BPA is related to an increased risk of Type 2 diabetes. However, no published study to date has determined whether several days of BPA administration (participants consume BPA) increases the risk of Type 2 diabetes.
MedicalResearch.com: Where is bisphenol found? Can exposure to bisphenol be limited in everyday life?
Response: BPA and other bisphenols are found in canned foods and plastics. BPA is one of the most widely used synthetic chemicals and we consume foods that are packed in this chemical. Most of BPA exposure comes from canned foods, and 93% of the US populations has detectable urine levels of BPA. We can limit BPA by reducing canned foods (or purchased BPA free cans) and plastic use.
Dr. Magruder[/caption]
Matthew Magruder, MD PGY3
Orthopaedic Residency Program
Department of Orthopaedic Surgery and Rehabilitation
Maimonides Medical Center
MedicalResearch.com: What is the background for this study?
Response: The prevalence of obesity and diabetes mellitus has reached epidemic proportions. Approximately 37.3 million people in the United States, accounting for 11.3% of the total population, have diabetes, and 100.1 million, or 41.9%, of all US citizens are obese. Furthermore, these numbers are only projected to increase in the coming decades. This is an issue for orthopaedic surgeons because diabetes and obesity have consistently been demonstrated to be risk factors for complications following total joint replacements, especially total hip replacements. Therefore, we are in desperate need of new and more effective tools in mitigating the risk of poor outcomes in our joint replacement patients.
Semaglutide, and other GLP-1 agonists, are potentially a new tool that can be used to help decrease the risks following joint replacement surgery. Initially a medication to treat diabetes, semaglutide has recently been approved by the FDA to treat obesity as well, as randomized controlled trials have consistently demonstrated significant weight loss with minimal side effects. The purpose of our study was to see what effect the use of semaglutide had on total hip arthroplasty patient outcomes.
Dr. Hafezi-Moghadam[/caption]
Ali Hafezi-Moghadam, Ph.D., M.D
Director, Molecular Biomarkers Nano-Imaging Laboratory (MBNI)
Associate Professor of Radiology, Harvard Medical School
Brigham and Women’s Hospital
MedicalResearch.com: What is the background for this study?
Response: “It is very easy to answer many fundamental biological questions” said Richard Feynman in his 1959 address, where he also offered his simple and ingenious solution: “you just look at the thing!”