Insulin Resistance Panel - Powered by Fittr near me in Vaishali
The Insulin Resistance Panel - Powered by Fittr is tailored to assess insulin sensitivity and detect early metabolic imbalances that may lead to prediabetes, type 2 diabetes, or metabolic syndrome. This panel includes HOMA-IR (Insulin Resistance Index), a key indicator of how effectively the body is using insulin. It also includes the HbA1c (Glycosylated Hemoglobin) test to evaluate long-term blood sugar control; Vitamin D (25-Hydroxy) test, as low levels are often linked to insulin resistance and impaired glucose metabolism; Vitamin B12 test to assess deficiencies that may affect energy levels and nerve health, particularly in those on long-term diabetes medications; and ESR (Erythrocyte Sedimentation Rate) helps identify underlying inflammation that can worsen insulin resistance. This panel is ideal for individuals with risk factors such as obesity, family history of diabetes, or unexplained fatigue. Getting tested aids in early intervention through lifestyle changes and personalized care.
What does Insulin Resistance Panel - Powered by Fittr measure?
Contains 31 testsThe CBC (Complete Blood Count) test measures the number of red blood cells (RBCs), white blood cells (WBCs), and platelets. Each of these blood cells performs essential functions–RBCs carry oxygen from your lungs to the various body parts, WBCs help fight infections and other diseases, and platelets help your blood to clot. Therefore, determining their levels can provide significant health information. A CBC test also determines the hemoglobin level, a protein in RBC that carries oxygen from the lungs to the rest of your body. Evaluating all these components together can provide important information about your overall health.
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Differential Leukocyte Count
- Differential Neutrophil Count
- Differential Lymphocyte Count
- Differential Monocyte Count
- Differential Eosinophil Count
- Differential Basophil Count
There are five types of WBCs: neutrophils, lymphocytes, monocytes, eosinophils, and basophils. A Differential Leukocyte Count test measures the percentage of each type of WBC in the blood. Leukocytes or WBCs are produced in the bone marrow and defend the body against infections and diseases. Each type of WBC plays a unique role to protect against infections and is present in different numbers.
This further contains
Red Blood Cell Count
The Red Blood Cell Count test measures the total number of red blood cells in your blood. RBCs are the most abundant cells in the blood with an average lifespan of 120 days. These cells are produced in the bone marrow and destroyed in the spleen or liver. Their primary function is to help carry oxygen from the lungs to different body parts. The normal range of RBC count can vary depending on age, gender, and the equipment and methods used for testing.
Hb (Hemoglobin)
The Hb (Hemoglobin) test measures the concentration of hemoglobin in your blood. Hemoglobin binds oxygen molecules and carries them to body tissues while removing carbon dioxide. Low hemoglobin suggests reduced oxygen-carrying capacity. It can be due to anemia, bleeding, nutritional deficiencies (iron, vitamin B12, folate), or chronic disease. High hemoglobin may occur in dehydration, living at high altitudes, smoking, or diseases like polycythemia vera.
Platelet Count
The Platelet Count test measures the average number of platelets in the blood. Platelets are disk-shaped tiny cells originating from large cells known as megakaryocytes, which are found in the bone marrow. After the platelets are formed, they are released into the blood circulation. Their average life span is 7-10 days.
Platelets help stop the bleeding, whenever there is an injury or trauma to a tissue or blood vessel, by adhering and accumulating at the injury site and releasing chemical compounds that stimulate the gathering of more platelets. A loose platelet plug is formed at the site of injury and this process is known as primary hemostasis. These activated platelets support the coagulation pathway that involves a series of steps, including the sequential activation of clotting factors; this process is known as secondary hemostasis. After this step, there is a formation of fibrin strands that form a mesh incorporated into and around the platelet plug. This mesh strengthens and stabilizes the blood clot so that it remains in place until the injury heals. After healing, other factors come into play and break the clot down so that it gets removed. In case the platelets are not sufficient in number or not functioning properly, a stable clot might not form. These unstable clots can result in an increased risk of excessive bleeding.
Total Leukocyte Count
The Total Leukocyte Count test measures the numbers of all types of leukocytes, namely neutrophil, lymphocyte, monocyte, eosinophil, and basophil, in your blood. Leukocytes or WBCs are an essential part of our immune system. These cells are produced in the bone marrow and defend the body against infections and diseases. Each type of WBC plays a unique role to protect against infections and is present in different numbers.
Hematocrit
The Hematocrit test measures the proportion of red blood cells (RBCs) in your blood as a percentage of the total blood volume. It is a crucial part of a complete blood count (CBC) and helps in assessing your blood health. RBCs are responsible for carrying oxygen from the lungs to different parts of the body. The hematocrit test provides valuable information about your blood's oxygen-carrying capacity.
Higher-than-normal amounts of RBCs produced by the bone marrow can cause the hematocrit to increase, leading to increased blood density and slow blood flow. On the other hand, lower-than-normal hematocrit can be caused by low production of RBCs, reduced lifespan of RBCs in circulation, or excessive bleeding, leading to a reduced amount of oxygen being transported by RBCs. Monitoring your hematocrit levels is essential for diagnosing and managing various blood-related disorders.
Mean Corpuscular Volume
The Mean Corpuscular Volume test measures the average size of your red blood cells, which carry oxygen through your body. This test tells whether your RBCs are of average size and volume or whether they are bigger or smaller.
Mean Corpuscular Hemoglobin
An MCH test measures the average amount of hemoglobin in a single red blood cell (RBC). Hemoglobin is an iron-containing protein in RBCs, and its major function is to transport oxygen from the lungs to all body parts. This test provides information about how much oxygen is being delivered to the body by a certain number of RBCs.
Mean Corpuscular Hemoglobin Concentration
An MCHC test measures the average amount of hemoglobin in a given volume of RBCs. MCHC is calculated by dividing the amount of hemoglobin by hematocrit (volume of blood made up of RBCs) and then multiplying it by 100.
Absolute Leucocyte Count
- Absolute Lymphocyte Count (ALC)
- Absolute Neutrophil Count
- Absolute Basophil Count
- Absolute Monocyte Count
- Absolute Eosinophil Count
The Absolute Leucocyte Count test measures the total number of white blood cells (leucocytes) in the given volume of blood. It examines different types of white blood cells such as neutrophils, lymphocytes, monocytes, basophils and eosinophils. These cells tell about the status of the immune system and its ability to fight off infections and other conditions like inflammation, allergies, bone marrow disorders etc.
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Mean Platelet Volume
An MPV test measures the average size of the platelets in your blood. Platelets are disk-shaped tiny cells originating from large cells known as megakaryocytes, which are found in the bone marrow. After the platelets are formed, they are released into the blood circulation. Their average life span is 7-10 days.
Platelets help stop bleeding whenever there is an injury or trauma to a tissue or blood vessel by adhering and accumulating at the injury site, and by releasing chemical compounds that stimulate the gathering of more platelets. After these steps, a loose platelet plug is formed at the site of injury, and this process is known as primary hemostasis. These activated platelets support the coagulation pathway that involves a series of steps including the sequential activation of clotting factors; this process is known as secondary hemostasis. After this, there is a formation of fibrin strands that form a mesh incorporated into and around the platelet plug. This mesh strengthens and stabilizes the blood clot so that it remains in place until the injury heals. After healing, other factors come into play and break the clot down so that it gets removed. In case the platelets are not sufficient in number or are not functioning properly, a stable clot might not form. These unstable clots can result in an increased risk of excessive bleeding.
PDW
The PDW test reflects variability in platelet size, and is considered a marker of platelet function and activation (clot formation in case of an injury). This marker can give you additional information about your platelets and the cause of a high or low platelet count. Larger platelets are usually younger platelets that have been recently released from the bone marrow, while smaller platelets may be older and have been in circulation for a few days. Higher PDW values reflect a larger range of platelet size, which may result from increased activation, destruction and consumption of platelets.
RDW CV
The RDW CV test which is part of red cell indices, helps identify characteristics of red blood cells. RDW (red cell distribution width) measures the variations in the sizes of red blood cells, indicating how much they differ from each other in a blood sample. RDW is expressed as RDW-CV, a coefficient of variation. A higher RDW may suggest more variation in red cell sizes, while a lower RDW indicates more uniform red cell sizes.
The Vitamin D (25-Hydroxy) test measures the levels of vitamin D in the body. Vitamin D is an essential nutrient that can be synthesized in the body upon healthy exposure to sunlight or absorbed from dietary sources. It exists in two forms: vitamin D2 (ergocalciferol) and vitamin D3 (cholecalciferol). Vitamin D2 is present in plants, such as yeast or mushrooms, and is available as a supplement in fortified foods. Vitamin D3 is found in foods like cheese, green vegetables, mushrooms, egg yolks, and fatty fish.
Both forms of vitamin D need to be converted in the liver and kidneys before the body can use them effectively. This test shows the total level of vitamin D (D2 + D3) circulating in the body and guides your doctor in recommending the right treatment or lifestyle changes if needed.
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The HbA1c (Glycosylated Hemoglobin) test precisely measures the percentage of sugar-coated or glycated hemoglobin in your blood. The test results represent the proportion of hemoglobin in your blood that has been glycated.
Hemoglobin, a vital protein found in red blood cells, is responsible for transporting oxygen throughout the body. Hemoglobin A is the most abundant form of hemoglobin, and when blood sugar levels increase, a higher proportion of hemoglobin A becomes glycated. As red blood cells have a lifespan of approximately 120 days, the sugar molecules remain attached to the hemoglobin for the duration of the cell's life. Consequently, the HbA1c (Glycosylated Hemoglobin) test offers insight into your average blood sugar levels over the past 8 to 12 weeks.
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The Vitamin B12 measures the amount of vitamin B12 in your blood. Vitamin B12 is important for a healthy nervous system, making red blood cells, and creating DNA in your cells. Low B12 levels are common in older adults, children, vegans or vegetarians, people with diabetes, those who had gastric bypass surgery, breastfeeding women, and people with conditions like Crohn’s disease that affect vitamin absorption. High B12 levels can occur in liver diseases, certain blood disorders, or from taking vitamin supplements. Usually, high levels from supplements are not harmful, as extra B12 is removed through urine.
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The HOMA IR; Insulin Resistance Index is a blood test used to assess an individual's insulin resistance, a fundamental aspect of metabolic health crucial for regulating blood sugar levels. The test is based on the principle that the body's glucose and insulin levels are closely related. When the body is functioning normally, glucose and insulin levels should be in balance. Through a mathematical model utilizing fasting insulin and glucose levels, this test provides a quantitative assessment of insulin sensitivity. This index helps doctors gauge how effectively the body processes glucose in response to insulin. Getting tested offers insights into the risk of developing type 2 diabetes and other metabolic disorders.
Moreover, the HOMA IR; Insulin Resistance Index test helps in personalized health management. By identifying individuals with insulin resistance early on, doctors can implement targeted strategies. These may include lifestyle modifications and medication therapy to improve insulin sensitivity and prevent complications. However, in individuals taking insulin injections, HOMA IR cannot be used to assess pancreatic beta cell function accurately. For such individuals, the HOMA IR-C peptide model is recommended.
Also, checking HOMA-IR levels regularly helps doctors see if the treatment is working. Overall, the HOMA IR; Insulin Resistance Index test empowers individuals and doctors to proactively address metabolic health concerns, paving the way for improved overall well-being and reduced risk of chronic diseases.
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FBS (Fasting Blood Sugar)
The FBS (Fasting Blood Sugar) test measures the glucose level in the body under overnight fasting conditions. Glucose is the body's energy currency and is broken down through metabolism to produce energy. Hormones and enzymes produced by the liver and pancreas control this process. The hormone insulin, produced by the pancreas, regulates blood glucose levels. When these levels are high, such as after a meal, insulin is secreted to transport glucose into cells for energy production. Elevated glucose levels in the body after fasting may indicate a risk of developing prediabetes or diabetes, which can be of two types: type 1, caused by little or no insulin production, and type 2, caused by insulin resistance or decreased insulin production.
Insulin, Fasting
The Insulin, Fasting test evaluates the body's ability to regulate blood sugar levels by measuring the amount of insulin in the blood after an overnight fast. Glucose is a source of energy that helps the body perform daily activities. Your body gets glucose from carbohydrates that are consumed in the diet. These carbohydrates are digested and converted into simple sugar (glucose). The cells then absorb the required amount of glucose to produce energy, and the remaining amount is stored in other forms, like fats. The insulin hormone helps the cells to uptake glucose from the blood for utilization and storage. Thus, it is necessary to maintain insulin levels in your body.
Beta Cell Function
Insulin Sensitivity
HOMA-IR Index
The ESR (Erythrocyte Sedimentation Rate) test measures how fast red blood cells (erythrocytes) settle in a tube over one hour.
When your body is inflamed, certain proteins, mainly fibrinogen, increase in the blood. These proteins cause the red blood cells to stick together in stacks. These stacks settle faster, leading to a higher ESR.
The ESR test shows that inflammation is present. However, it cannot tell you exactly where the inflammation is or what is causing it. That’s why doctors usually do this test along with other tests. This helps them understand and treat your health problems.
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The C-Peptide, Fasting test measures the level of C-peptide in the blood. C-peptide is a byproduct of insulin production in the pancreas. When the pancreas releases insulin into the blood, it also releases C-peptide in equal amounts. Therefore, measuring C-peptide levels can provide valuable insights into the body's natural production of insulin. This test is particularly useful in individuals with diabetes, as it helps determine how well their pancreas is functioning in producing insulin.
By assessing C-peptide levels, doctors can better understand an individual's insulin production capacity. This information is crucial for diagnosing and managing diabetes effectively. Additionally, the C-Peptide, Fasting test can help differentiate between type 1 and type 2 diabetes, guide treatment decisions, monitor the effectiveness of diabetes therapies, and evaluate overall pancreatic function Moreover, the C-Peptide, Fasting test plays a vital role in tailoring personalized treatment plans for individuals with diabetes, ensuring optimal management of their condition.
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Insulin Resistance Panel - Powered by Fittr test price for other cities
| Price in | Jaipur | Rs. 2250 |
| Price in | Aligarh | Rs. 2250 |
| Price in | Dhakaoli | Rs. 2250 |
| Price in | Asansol | Rs. 2250 |
| Price in | Bangalore | Rs. 2250 |
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- CBC (Complete Blood Count)
- FBS (Fasting Blood Sugar)
- Thyroid Profile Total (T3, T4 & TSH)
- HbA1c (Glycosylated Hemoglobin)
- PPBS (Postprandial Blood Sugar)
- Lipid Profile
- Vitamin D (25-Hydroxy)
- Urine R/M (Urine Routine & Microscopy)
- Coronavirus Covid -19 test- RT PCR
- LFT (Liver Function Test)
- KFT (Kidney Function Test)
- TSH (Thyroid Stimulating Hormone) Ultrasensitive
- ESR (Erythrocyte Sedimentation Rate)
- Uric Acid, Serum
- Vitamin B12
- CRP (C-Reactive Protein), Quantitative
- Urine C/S (Urine Culture and Sensitivity)
- Serum Electrolytes
- Serum Calcium
- Serum Creatinine
- Diabetes Screening (HbA1C & Fasting Sugar)
- KFT with Electrolytes (Kidney Function Test with Electrolytes)
- Cholesterol - Total
- Hb (Hemoglobin)
- Complete Hemogram (CBC & ESR)