Blood Glucose Measuring Device with Integrated Patch Antenna
| AUTHOR | Parfilo, ?nna; Bogomolov, Mikola |
| PUBLISHER | Our Knowledge Publishing (08/01/2024) |
| PRODUCT TYPE | Paperback (Paperback) |
Description
Most methods of express glucose do not require a finger prick, which may not be difficult for people with diabetes. Much research has focused on finding an alternative, a painless, minimally invasive method for glucose monitoring.Meta: Non-invasive measurement of glucose in the blood with vicarious patches. To achieve this goal, the following tasks have been set: 1. Conduct a patent search for glucometers and a literary search for non-invasive methods for monitoring blood glucose. 2. Analyze the variation of antennas as a method of vibrating glucose in the blood and create formulas for the breakdown of parameters and specifications. 3. Create a block diagram of a cortical model of a device for vibrating glucose in the blood with an integrated patch antenna. 4. Develop a patch antenna model and analyze its type of planned technical characteristics. 5. Create a model of the phantom finger and change parameter S11 for different glucose concentrations in the phantom finger in different positions near the antenna.
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Product Format
Product Details
ISBN-13:
9786207908820
ISBN-10:
6207908821
Binding:
Paperback or Softback (Trade Paperback (Us))
Content Language:
English
More Product Details
Page Count:
80
Carton Quantity:
88
Product Dimensions:
6.00 x 0.19 x 9.00 inches
Weight:
0.28 pound(s)
Country of Origin:
US
Subject Information
BISAC Categories
Medical | General
Descriptions, Reviews, Etc.
publisher marketing
Most methods of express glucose do not require a finger prick, which may not be difficult for people with diabetes. Much research has focused on finding an alternative, a painless, minimally invasive method for glucose monitoring.Meta: Non-invasive measurement of glucose in the blood with vicarious patches. To achieve this goal, the following tasks have been set: 1. Conduct a patent search for glucometers and a literary search for non-invasive methods for monitoring blood glucose. 2. Analyze the variation of antennas as a method of vibrating glucose in the blood and create formulas for the breakdown of parameters and specifications. 3. Create a block diagram of a cortical model of a device for vibrating glucose in the blood with an integrated patch antenna. 4. Develop a patch antenna model and analyze its type of planned technical characteristics. 5. Create a model of the phantom finger and change parameter S11 for different glucose concentrations in the phantom finger in different positions near the antenna.
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Your Price
$57.00
