In vitro electro-magnetism excitation positioning system for remotely monitoring capsule swallowed in digestive tract

A positioning system and digestive tract technology, applied in the field of in vitro positioning systems, can solve problems such as lack of accurate quantitative correspondence, positioning accuracy and precision to be verified, complex system structure, etc., to avoid the influence of a large number of uncertain factors, and to carry and fix easily , The effect of simple system structure

Inactive Publication Date: 2005-06-01
SHANGHAI JIAO TONG UNIV
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  • Abstract
  • Description
  • Claims
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Problems solved by technology

These two positioning methods use the electromagnetic signals emitted by capsules in the body. Since the human body is a very complex electromagnetic structure, the propagation of electromagnetic waves in human tissue is affected by the position, direction, electromagnetic characteristics of the tissue, tissue structure, etc. of the radiation source. Therefore, there is no accurate quantitative correspondence between the electromagnetic field strength at the body surface and the radiation source in the body so far
At the same time, using the electromagnetic field method to locate involves the calculation of a large number of electromagnetic positive problems, which makes the system structure extremely complex, and the positioning accuracy and precision need to be verified.

Method used

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  • In vitro electro-magnetism excitation positioning system for remotely monitoring capsule swallowed in digestive tract
  • In vitro electro-magnetism excitation positioning system for remotely monitoring capsule swallowed in digestive tract
  • In vitro electro-magnetism excitation positioning system for remotely monitoring capsule swallowed in digestive tract

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Embodiment Construction

[0014] The technical solutions of the present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0015] The in vitro tracking and positioning system of the whole digestive tract miniature telemetry capsule of the present invention is composed of two parts inside the body and outside the body. The part inside the body includes a three-axis magnetic field sensor sealed in the capsule, a signal processing module, and a wireless communication module, such as figure 1 shown. The three-axis magnetic field sensor is connected to the signal processing module, and the output of the signal processing module is connected to the wireless communication module, and the wireless communication module transmits detection signals to the outside body.

[0016] In vitro parts of the present invention such as figure 2 As shown in the overall structure diagram of , it includes three toroidal coils 1 and an in vitro data recorder 3 for genera...

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Abstract

The digestive tract remote measuring capsule electromagnetically positioning system includes sealed capsule with three-axis magnetic field sensor, signal processing module and radio communication module; three extracorporeal ring static magnetic field exciting coils; and extracorporeal data record instrument comprising monochip computerized control circuit, constant-current source circuit, multiplex switch, radio communication module, memory and power source module. During system operation, the three coils are fixed onto the surface of body to produce magnetic field under the excitation of the current from the instrument successively, the intracorporeal capsule detects the magnetic fields and produces and emits digital signal, and the instrument receives, saves and processes the signal, so as to obtain the 3D locus of the capsule.

Description

technical field [0001] The invention relates to an in vitro positioning system for swallowable capsules, in particular to a positioning system for in vitro tracking of miniature swallowable telemetry capsules for the entire digestive tract by means of electromagnetic excitation, and belongs to the technical field of micro-electromechanical systems or biomedical engineering. Background technique [0002] With the acceleration of people's life rhythm and the continuous change of diet structure, the incidence of functional diseases of digestive tract is increasing to the first place. Modern science believes that there is a close relationship between digestive tract diseases and pressure changes in the human intestinal tract. Due to the unknown value of the correct value of the intestinal pressure in healthy people and the various changes in the intestinal cavity pressure under physiological conditions, there is a lack of Fixed objective indicators for the diagnosis of gastroint...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B5/00A61B5/06A61K49/00
CPCA61B1/00158A61B1/041
Inventor 颜国正姜萍萍
Owner SHANGHAI JIAO TONG UNIV
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