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Diabetes Mellitus Collection

Background imageDiabetes Mellitus Collection: Sir Frederick Grant Banting (born 14 November 1891 in Alliston - died 21 February 1941 near Musgrave Harbour)

Sir Frederick Grant Banting (born 14 November 1891 in Alliston - died 21 February 1941 near Musgrave Harbour) was a Canadian surgeon and physiologist

Background imageDiabetes Mellitus Collection: Diabetes education, blood viscosity

Diabetes education, blood viscosity
MODEL RELEASED. Diabetes education. Nurse using models to demonstrate high blood viscosity to a diabetic patient

Background imageDiabetes Mellitus Collection: Insulin molecule C014 / 2121

Insulin molecule C014 / 2121
Insulin molecule. Molecular module of insulin showing its secondary structure. Insulin is a hormone produced by the pancreas

Background imageDiabetes Mellitus Collection: Diabetes insulin pens and equipment

Diabetes insulin pens and equipment. Range of diabetes pens (left) for the injection of insulin

Background imageDiabetes Mellitus Collection: Diabetes clinic, waist measurement

Diabetes clinic, waist measurement
MODEL RELEASED. Diabetes clinic, waist measurement. Nurse using a tape to measure the circumference of a womans waist

Background imageDiabetes Mellitus Collection: Diabetic woman, artwork C016 / 9367

Diabetic woman, artwork C016 / 9367
Diabetic woman. Computer artwork showing sugar (white dots) entering the blood stream of a diabetic woman as she eats an apple. Some of the sugar is used by mitochondria (blue) to produce energy

Background imageDiabetes Mellitus Collection: Insulin molecule C014 / 2122

Insulin molecule C014 / 2122
Insulin, molecular module. Insulin is a hormone produced by the pancreas. It consists of two peptide chains, A (blue) and B (yellow), which are linked by disulphide bridges

Background imageDiabetes Mellitus Collection: Insulin molecule C014 / 2290

Insulin molecule C014 / 2290
Insulin molecule. Molecular module of insulin showing its primary structure over a background of the molecules electron density map

Background imageDiabetes Mellitus Collection: Insulin molecule C014 / 2120

Insulin molecule C014 / 2120
Insulin molecule. Molecular module of insulin showing its primary structure. Insulin is a hormone produced by the pancreas

Background imageDiabetes Mellitus Collection: Blood glucose test C018 / 2287

Blood glucose test C018 / 2287
Blood glucose test. Diabetic lancing their finger to test their blood glucose (sugar) level. Diabetics have to measure their blood glucose levels regularly

Background imageDiabetes Mellitus Collection: Blood glucose test strips C018 / 2286

Blood glucose test strips C018 / 2286
Blood glucose test strips in their packaging. Diabetics have to measure their blood glucose levels regularly

Background imageDiabetes Mellitus Collection: Artwork of diabetic retinopathy ophthalmoscope view

Artwork of diabetic retinopathy ophthalmoscope view
Diabetic retinopathy. Artwork of the retina of the eye (ophthalmoscope view) in a diabetic patient

Background imageDiabetes Mellitus Collection: Diabetes mellitus, computer artwork

Diabetes mellitus, computer artwork. Diabetes is caused by low levels of the hormone insulin and resistance to insulin by the body cells

Background imageDiabetes Mellitus Collection: Vildagliptin diabetes drug molecule

Vildagliptin diabetes drug molecule, computer model. Vildagliptin, which is marketed as Galvus by Novartis, belongs to the dipeptidyl peptidase-4 (DPP-4) inhibitor class of drugs


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EDITORS COMMENTS

"Diabetes Mellitus: A Lifeline for Insulin-Dependent Individuals" In the realm of diabetes management, the insulin molecule C014/2121 plays a pivotal role. With its ability to regulate blood sugar levels, it has become an indispensable tool in combating this chronic condition. Diabetes insulin pens and equipment have revolutionized treatment methods, providing convenience and ease for patients worldwide. The process of insulin injection in diabetes is not just a routine but a lifeline for those who depend on it. Through careful administration, individuals can maintain stable glucose levels and prevent complications associated with high or low blood sugar. Education is key when it comes to managing diabetes effectively. Understanding concepts like blood viscosity helps individuals grasp how their bodies respond to different foods and medications. Regular visits to the diabetes clinic often involve waist measurements as part of comprehensive care plans tailored specifically to each patient's needs. Artwork featuring a diabetic woman (C016/9367) serves as a reminder that despite facing daily challenges, individuals with diabetes continue to thrive creatively and contribute meaningfully to society. Insulin molecules such as C014/2122, C014/2290, and C014/2120 are constantly being researched and developed by scientists striving for better treatments. These advancements aim at improving efficacy while minimizing side effects. Monitoring blood glucose levels is crucial in maintaining optimal health for diabetics. Blood glucose tests (C018/2287) using test strips (C018/2286) provide real-time information about one's metabolic status, allowing adjustments in medication dosages or dietary choices accordingly. Insulin pens (C018/2886), compact devices resembling writing instruments, have replaced traditional syringes due to their user-friendly design and portability. They offer discreetness while ensuring accurate dosage delivery throughout the day. While living with diabetes may present challenges, modern medical innovations empower individuals by providing them with tools necessary for effective self-management. By embracing these advancements, individuals can lead fulfilling lives while keeping their diabetes under control.

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