Surgical instrument and management system thereof

A technology of surgical instruments and management systems, applied in the directions of instruments, data processing applications, resources, etc., can solve the problems of loss of tracking function, easy detachment of wristbands, inability to achieve single-piece tracking, etc., to improve standardization and realize personnel matching management. Effect

Inactive Publication Date: 2017-05-31
HANGZHOU DIANZI UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The Chinese invention patent with the application number 201520606532.X uses redundant calibration of weight sensors to track surgical instruments. This method can only detect missing parts in batches, but cannot track single items, and cannot determine which single product is missing
The Chinese invention patent with the application number 201420467094.9 discloses a flexible wristband RFID tag for tracking instruments. In this method, the flexible wristband is fixed on the surgical instrument with male and female buckle tapes to track the surgical instrument. The operation will bring inconvenience, and the wristband is easy to fall off, once it falls off, the tracking function will be lost

Method used

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  • Surgical instrument and management system thereof
  • Surgical instrument and management system thereof
  • Surgical instrument and management system thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0031] For the metal scalpel of this embodiment, a 6×4×3mm ceramic anti-metal UHF RFID tag is mounted on its handle, and the ceramic anti-metal UHF RFID tag is made of special medical two-component epoxy glue. The label is attached to the center of the scalpel handle and pressed flat; the entire surface of the ceramic is glued. Dry naturally at room temperature for 48 hours. After the glue is cured, test its shear strength after high temperature and high pressure sterilization at 121°C. The shear strength is >20MPa as qualified.

[0032] The surgical instrument with the packaged label is subjected to a drop collision test, and the instrument is dropped from a height of 1 meter. The test observes whether the surface of the ceramic label is peeled off, loosened, cracked or falls off, and the reading and writing operation is performed through the reader. Devices that can read and write normally and have no peeling, looseness, cracking or falling off on the surface are qualified. ...

Embodiment 2

[0037] Such as figure 1 As shown, the ceramic anti-metal UHF RFID tag is loaded into the first plastic buckle 1, and the temperature-resistant plastic buckle 1 is stuck on the handle of the vascular forceps 2, and then bonded and cured with special medical glue. Such as figure 2 As shown, the ceramic anti-metal UHF RFID tag 11 is loaded into the second plastic buckle 21 of the cuboid hollow buckle structure, and the scalpel handle is inserted and stuck along the scalpel handle insertion bayonet 31, and then locked with a special Medical glue bonding and curing. In a similar way, the ceramic anti-metal UHF RFID tags are respectively embedded in the plastic buckle of the U-shaped hollow buckle structure, and then fixed on the parts of various surgical instruments that do not affect the operation. The size of the plastic buckle is not more than 15×10×8mm, and the material of the plastic buckle is high-density polyethylene (HDPE), polypropylene (PP), nylon (PA), polytetrafluoro...

Embodiment 3

[0041] Such as image 3 As shown, the management system of surgical instruments in this embodiment includes a hardware part and a software part. The hardware part includes a local server, an RFID reader, a cloud server, and a mobile phone, and the software part includes a database module on a local server and a library registration module. And the warehouse-in registration module, the warehouse-out registration module and the warehouse-in registration module are all connected with the database module. The database module is used to record relevant information of surgical instruments, and the relevant information specifically includes information such as classification, product name, current status, borrower, borrowing date, and use records of surgical instruments.

[0042] Such as Figure 4 As shown, the database module has the following functions:

[0043] Inventory query function, which can query the existing inventory and distribution location of surgical instruments, the...

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Abstract

The invention belongs to the technical field of Internet of Things, also belongs to the technical field of medical instrument management, and in particular to a surgical instrument. The surgical instrument comprises a body and an ultrahigh frequency RFID (Radio Frequency Identification Device) tag; and the ultrahigh frequency RFID tag is fixed on a preset position of the body through an adhesive or a plastic package buckle. The invention also discloses a management system of the surgical instrument. The surgical instrument is provided with the ultrahigh frequency RFID tag; the management system comprises a local server, an RFID reader-writer and a cloud server; the local server is connected with the cloud server for data sharing; the local server is connected with the RFID reader-writer for data transmission; and the RFID reader-writer is used for reading the ultrahigh frequency RFID tag. The ultrahigh frequency RFID tag is fixed on a position of the surgical instrument body and does not affect the normal use of the surgical instrument; the ultrahigh frequency RFID tag endows a traceable function to the surgical instrument; the corresponding numerical information can be managed in real time; big data management is realized so that the surgical instrument is intelligent.

Description

technical field [0001] The invention belongs to the technical field of the Internet of Things and also belongs to the technical field of medical device management, and specifically relates to a surgical device and a management system thereof. Background technique [0002] Compared with the management of other large medical equipment, the management of surgical instruments is particularly difficult due to the harsh environment in which they are used. [0003] Traditional surgical instrument management generally relies on manual counting and accounting or computer processing of manually entered data to achieve data collection and statistical collation. Human error can occur when counting instruments and comparing count and inventory lists; furthermore, time is of the essence when performing a procedure. Before the operation, compare the operation instruction list to quickly determine the type and quantity of surgical instruments required for the operation, and quickly find th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06Q10/06G06K17/00
CPCG06K17/0029G06Q10/06313
Inventor 黄爱宾刘彩凤谷一鸣甄鑫王康野马方舟
Owner HANGZHOU DIANZI UNIV
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