Device and method for simulating dose absorbing rate of thyroid

A technology for absorbing dose and thyroid, which is applied in the field of medical devices, can solve problems such as no way to detect the final condition of thyroid, and achieve the effect of correcting detection errors and accurate experimental data

Pending Publication Date: 2018-02-09
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Problems solved by technology

[0002] The thyroid gland is a very important gland in vertebrates, which is an endocrine organ. The human thyroid gland is shaped like a butterfly, like a shield, so it is named after it. The thyroid gland controls the speed of energy use, produces protein, and regulates the body’s sensitivity to other hormones. The thyroid gland relies on Thyroid hormones are produced to regulate these responses. There are triiodothyronine (T3) and thyroxine, also known as tetraiodothyronine (T4), which regulate metabolism, growth rate, and mediate other body systems. When the thyroid gland becomes inflamed or has other problems, it needs Medication is used for the thyroid gland, but the drugs used and whether they are suitable for the thyroid gland or how much the thyroid gland can absorb can only get an approximate situation through external instrument tests, and there is no way to detect the final situation of the thyroid drug administration by entering the body. Improve

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  • Device and method for simulating dose absorbing rate of thyroid

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Embodiment Construction

[0022] The present invention will be further described below through specific embodiments.

[0023] refer to figure 1 As shown, a device for simulating the absorbed dose rate of the thyroid gland is used for the research on the absorbed dose rate of thyroid radiation after radioactive iodine treatment for hyperthyroidism, including a model formed with an accommodating cavity 11, a drug package 4 arranged in the accommodating cavity 11, and a A plurality of thermoluminescent elements 2 on the inner wall of the housing cavity 11, and a drainage device 3 connected to the drug pack 4 to discharge the drug solution of the drug pack 4 in a regular and quantitative manner. Specifically, the drug pack 4 contains radioactive iodine;

[0024] The model consists of two modules 1 that can be buckled relative to each other. The structures of the two modules 1 are consistent. The accommodation cavity 11 is arranged on the module 1 and extends downward along the top surface of the module 1. ...

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Abstract

A device and method for simulating the absorbed dose rate of the thyroid gland, a device for simulating the absorbed dose rate of the thyroid gland, comprising a model formed with an accommodating chamber, a drug pack arranged in the accommodating chamber, and a plurality of thermoluminescence devices arranged on the inner wall of the accommodating chamber The component and the connected drug pack can regularly and quantitatively discharge the drainage device of the drug liquid in the drug pack. When working, put the drug pack into the containing chamber, and at this time, the thermoluminescence element arranged on the inner wall of the containing chamber is attached, and the drainage device is regularly and quantitatively discharged. The drug solution in the drug pack can better simulate the metabolism of the thyroid gland, and then periodically take out several thermoluminescent elements. Compared with the experimental data obtained by testing the drug status of the thyroid gland through external instruments in the prior art, this model is more accurate.

Description

technical field [0001] The invention belongs to the field of medical devices, and in particular relates to a device and method for simulating the absorbed dose rate of the thyroid gland. Background technique [0002] The thyroid gland is a very important gland in vertebrates, which is an endocrine organ. The human thyroid gland is shaped like a butterfly, like a shield, so it is named after it. The thyroid gland controls the speed of energy use, produces protein, and regulates the body’s sensitivity to other hormones. The thyroid gland relies on Thyroid hormones are produced to regulate these responses. There are triiodothyronine (T3) and thyroxine, also known as tetraiodothyronine (T4), which regulate metabolism, growth rate, and mediate other body systems. When the thyroid gland becomes inflamed or has other problems, it needs Medication is used for the thyroid gland, but the drugs used and whether they are suitable for the thyroid gland or how much the thyroid gland can a...

Claims

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Application Information

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IPC IPC(8): A61B5/00
CPCA61B5/4839A61B5/4848
Inventor查金顺蒋艳顾庭语
Owner查金顺