• Title/Summary/Keyword: Bio-medical Devices

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Characteristics of Abutment Screw Structure for Dental Implant (치과용 임플란트 지대주 나사 구조에 관한 연구)

  • Song, Jong-Beop;Choi, Il-kyung;Jung, Hyo-kyung;Kwon, Soon-Hong;Kwon, Soon-Gu;Park, Jong-Min;Kim, Jong-Soon;Jung, Sung-Won;Choi, Won-Sik
    • Journal of the Korean Society of Industry Convergence
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    • v.20 no.2
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    • pp.169-176
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    • 2017
  • Dental implants are required to have biomechanical functions and biostability in order to perform authoring, pronunciation, and aesthetic functions in the oral cavity. In terms of biostability, pure titanium for medical have good biostability and no rejection in the alveolar bone. with appropriate strength in terms of strength as well as biocompatibility. In recent years, various surgical methods and devices have been developed to improve the convenience and safety of the procedure. However, as the number of procedures increases, the screw loosening of the abutment screw connecting the artificial root and the abutment There are many reports of artificial root and abutment fracture. Fig. 1 is an example of a case where the upper part of the abutment screw is arbitrarily modified to remove the abutment by the abutment fracture due to the loosening of the abutment screw. The fundamental cause of abduction of the abutment screw is caused by the slight movement due to the lowering of the retention force of the abutment screw. It is necessary to minimize loosening of the abutment screw to avoid problems such as fracture during the period of using the implant. The purpose of this study is to investigate the structure of the abutment screw to prevent the loosening of the abutment screw by forming 0.5mm slot.

Effects of DBD-bio-plasma on the HSP70 of Fibroblasts: A New Approach on Change of Molecular Level by Heat Shock in the Cell (Fibroblasts 세포주의 HSP70에 대한 DBD-bio-plasma의 effects: Cell에서 Heat Shock에 의한 Molecular Level 변화로의 새로운 접근법)

  • Kim, Kyoung-Yeon;Yi, Junyeong;Nam, Min-Kyung;Choi, Eun Ha;Rhim, Hyangshuk
    • KSBB Journal
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    • v.30 no.1
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    • pp.21-26
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    • 2015
  • Plasma is an ionized gas mixture, consisting of neutral particles, positive ions, negative electrons, electronically excited atoms and molecules, radicals, UV photons, and various reactive species. Also, plasma has unique physical properties distinct from gases, liquids, and solids. Until now, non-thermal plasmas have been widely utilized in bio-medical applications (called bio-plasma) and have been developed for the plasma-related devices that are used in the medical field. Although numerous bio-plasma studies have been performed in biomedicine, there is no confirmation of the nonthermal effect induced by bio-plasma. Standardization of the biological application of plasma has not been evaluated at the molecular level in living cells. In this context, we investigated the biological effect of bio-plasma on living cells. Hence, we treated the fibroblasts with Dielectric Bauvier Discharge bio-plasma (DBD), and assessed the characteristic change at the molecular level, one of the typical cellular responses. Heat shock protein 70 (HSP70) regulates its own protein level in response to stimuli. HSP70 responds to heat shock by increasing its own expression at the molecular level in cells. Hence, we confirmed the level of HSP70 after treatment of mouse embryonic fibroblasts (MEFs) with DBD. Interestingly, DBD-plasma induced cell death, but there was no difference in the level of HSP70, which is induced by heat shock stimuli, in DBD-treated MEFs. Our data provide the basic information on the interaction between MEFs and DBD, and can help to design a molecular approach in this field.

A Survey on the Utilization and Demand of Thermotherapy Devices in Korean Medical Institutions (한방의료기관의 온열 치료 기기 활용 현황 및 개발 수요에 대한 조사 연구)

  • So-Young In;Su-Ran Lim;Ji-Yeun Park;Jung-Hwan Park;Song-Yi Kim
    • Korean Journal of Acupuncture
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    • v.40 no.4
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    • pp.194-205
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    • 2023
  • Objectives : This study investigated the current utilization status of thermotherapy devices in Korean medicine (KM) institutions and identified areas for improvement and further development, as perceived by KM doctors (KMDs). Methods : An online survey was conducted, targeting KMDs primarily engaged in clinical patient care. The questionnaire included items about respondents' clinical practices, the extent of thermotherapy device usage, their opinions on these devices, and perceived improvement needs. The collected data underwent quantitative analysis. Results : From the 1,025 respondents, data from 862 respondents who provided complete responses were analyzed. On average, respondents utilized thermotherapy treatments for 80% of their patients. Infrared (IR) phototherapy unit, electrical moxibustion apparatus, and heater-based thermotherapy devices were predominantly owned by respondents, with IR being the most frequently used. The average satisfaction score for current thermotherapy devices was 79. A significant concern raised was the necessity for improved health insurance coverage and efficacy evaluation. Conclusions : This research has confirmed that the extensive use of thermotherapy devices by KMDs in treating primarily musculoskeletal and gastrointestinal ailments - common conditions among patients in KM institutions. The main areas identified for improvement encompass safety, cost-effectiveness, and device efficacy. Future enhancements in thermotherapy devices should address these crucial aspects.

Flexible Modules Using MEMS Technology (MEMS 기술을 이용한 Flexible Module)

  • 김용준;황은수;김용호;이태희
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2003.06a
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    • pp.223-227
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    • 2003
  • A new flexible electronic packaging technology and its medical applications are presented. Conventional silicon chips and electronic modules can be considered as "mechanically rigid box." which does not bend due to external forces. This mechanically rigid characteristic prohibits its applications to wearable systems or bio-implantable devices. Using current MEMS (Microelectromechanical Systems) technology. a surface micromachined flexible polysilicon sensor array and flexible electrode array fer neural interface were fabricated. A chemical thinning technique has been developed to realize flexible silicon chip. To combine these techniques will result in a realization of truly flexible sensing modules. which are suitable for many medical applications.

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Biometric information database and service modelling in digital patch system

  • Lee, Tae-Gyu
    • International journal of advanced smart convergence
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    • v.7 no.4
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    • pp.161-168
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    • 2018
  • Recently, the bio-sensing information systems for collecting and analysing human body information of a patient in real time in the field of medical information and healthcare information service are continuously increasing. Specially, various wearable devices such as a wrist, a garment, and a skin attachment type for supporting health information of a mobile user are rapidly increasing. Until now, there is no patch-type biometric information service model. Therefore, this paper presents a biometric information system model and the application examples to support biometric information sensing and health information service of mobile user with digital patch system as a new biometric information system. As a result, through this research, research issues based on digital patch system are searched to suggest the direction of continuous research.

Novel Fabrication Process for Micro-Fluidic Channels and the Effect of the Surface States on the Fluid Flow (미세유로채널의 새로운 제작공정 및 표면상태가 유동에 미치는 영향)

  • 박미석;김진산;성인하;김대은;신보성
    • Journal of the Korean Society for Precision Engineering
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    • v.21 no.1
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    • pp.87-93
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    • 2004
  • Recently, with the development of bio-technology the interests in the micro-fluidic devices for analysis in the fields of biology and medical science have been steadily increasing. Although polymer is considered as one of the best materials for micro-fluidic devices. glass or silicon molds fabricated by photo-lithographic technique have been commonly used. However, it is generally perceived that the conventional photolithographic technique has the limitation for fabricating micro-channels for micro-fluidic devices. In this work, the possibility of fabrication of micro-fluidic channels on PDMS by using the mechano-chemical process and the effect of surface states on the fluid flow were investigated. Experimental results revealed that PDMS mold fabricated by the mechano-chemical process could be used effectively to replicate micro-fluidic channels with high reproducibility and dimensional accuracy. It was also found that the fluid flow generation and flow speed were largely affected by the hydrophilicity and the surface roughness of the micro-channel surfaces.

PDMS Surface Modification for hydrophilicit Using 2-Hydroxyethyle Methacrylate without Monomethyl Ether Hydroquinone (친수성 유지를 위해 Monomethyl Ether Hydroquinone이 제거된 2-Hydroxyethyle methacrylate로 처리하는 PDMS 표면개질)

  • Kim, Sang-Cheol;Yang, Sang-Sik
    • Proceedings of the KIEE Conference
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    • 2003.10a
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    • pp.36-38
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    • 2003
  • In this paper, the surface modificatioin of PDMS (polydimethyl-siloxane) which is a useful material of microfluidic devices is presented. PDMS-based devices can be fabricated by casting the polymer in a mold, but the porosity and the hydrophobicity of PDMS make difficult to use as bio-medical devices. To overcome these disadvantages, the PDMS surface is grafted with HEMA (2-Hydroxyethyle methacrylate) treatments and $O_2$ plasma process. The $O_2$ plasma process is performed for 20 sec after curing PDMS, and PDMS is put in the prepared HEMA without Monomethyle Ether Hydroquinone. Residual monomers and homopolymers of HEMA-treated PDMS surface are removed using soxhlet extractor. The PDMS surface modification using HEHA without Monomethyle Ether Hydroquinone is experimented, and compare to when additing $FeCl_2{\cdot}2H_2O$. A method with a soxhlet extractor compare to the existing rinse method. The hydrophilicity is confirmed by the measurement of a contact angle, and we observe whether the hydrophilicity is retained.

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A Study on the Development of Pulse Oximeter based on Standard Protocol (표준 프로토콜 기반의 산소포화도 계측기(SPo2) 개발에 관한 연구)

  • Kang, Sung-In;Park, Yoon-A;Oh, Am-Suk;Jean, Je-Hwan
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2011.05a
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    • pp.751-753
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    • 2011
  • Pulse Oximeter is used two different wavelength light sources. Two signals measured by light transmission in the body parts. SPo2 is calculated from the measured signal. These optical methods is have the light absorption properties of oxygen in the blood. SPo2 is to be called vital signs of $5^{th}$and important in modern medical. But, exist pulse oximeter was used just user for viewing the SPo2. That was a lack of used communication Monitoring function. In this paper using the Bluetooth feature on the exist pulse oximeter to communicate with the outside of the Gateway for design medical devices standards protocol IEEE 11073-10404 built-in pulse oximeter. Also user can be monitoring the U-Health Gateway through the pass SPo2 information.

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TaqMan probe real-time PCR for quantitative detection of bovine adenovirus type 1 during the manufacture of biologics and medical devices using bovine-derived raw materials (소유래 성분 원재료 사용 생물의약품과 의료기기 제조 공정에서 bovine adenovirus type 1 정량 검출을 위한 TaqMan probe real-time PCR)

  • Ko, Woon Young;Noh, Na Gyeong;Kim, In Seop
    • Korean Journal of Microbiology
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    • v.51 no.3
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    • pp.199-208
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    • 2015
  • Biologics and medical devices manufactured with bovine-derived raw materials have the risk of viral contamination. Therefore, viral validation study is essential to ensure the safety of the products. Bovine adenovirus type-1 (BAdV-1) is one of the common bovine viral pathogens. For quantitative detection of BAdV-1 during the manufacture of biologics and medical devices, a TaqMan probe real-time PCR method was developed. Specific primers and TaqMan probe for amplifying and detecting BAdV-1 DNA were designed. Specificity, limit of detection (LOD), and robustness of the method was validated according to international guideline on the validation of nucleic acid amplification tests for the pathogen detection. The sensitivity of the assay was found to be $7.44{\times}10^1\;TCID_{50}/ml$. The real-time PCR method was reproducible, very specific to BAdV-1, and robust. Moreover, the method was successfully applied to the validation of Chinese Hamster Ovary (CHO)-K1 cells artificially infected with BAdV-1, a commercial CHO master bank, and bovine type 1 collagen. The overall results indicate that this rapid, specific, sensitive, and robust assay can be reliably used for quantitative detection of BAdV-1 contamination during the manufacture of biologics and medical devices using bovine-derived raw materials.

Medical Information Dynamic Access System in Smart Mobile Environments (스마트 모바일 환경에서 의료정보 동적접근 시스템)

  • Jeong, Chang Won;Kim, Woo Hong;Yoon, Kwon Ha;Joo, Su Chong
    • Journal of Internet Computing and Services
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    • v.16 no.1
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    • pp.47-55
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    • 2015
  • Recently, the environment of a hospital information system is a trend to combine various SMART technologies. Accordingly, various smart devices, such as a smart phone, Tablet PC is utilized in the medical information system. Also, these environments consist of various applications executing on heterogeneous sensors, devices, systems and networks. In these hospital information system environment, applying a security service by traditional access control method cause a problems. Most of the existing security system uses the access control list structure. It is only permitted access defined by an access control matrix such as client name, service object method name. The major problem with the static approach cannot quickly adapt to changed situations. Hence, we needs to new security mechanisms which provides more flexible and can be easily adapted to various environments with very different security requirements. In addition, for addressing the changing of service medical treatment of the patient, the researching is needed. In this paper, we suggest a dynamic approach to medical information systems in smart mobile environments. We focus on how to access medical information systems according to dynamic access control methods based on the existence of the hospital's information system environments. The physical environments consist of a mobile x-ray imaging devices, dedicated mobile/general smart devices, PACS, EMR server and authorization server. The software environment was developed based on the .Net Framework for synchronization and monitoring services based on mobile X-ray imaging equipment Windows7 OS. And dedicated a smart device application, we implemented a dynamic access services through JSP and Java SDK is based on the Android OS. PACS and mobile X-ray image devices in hospital, medical information between the dedicated smart devices are based on the DICOM medical image standard information. In addition, EMR information is based on H7. In order to providing dynamic access control service, we classify the context of the patients according to conditions of bio-information such as oxygen saturation, heart rate, BP and body temperature etc. It shows event trace diagrams which divided into two parts like general situation, emergency situation. And, we designed the dynamic approach of the medical care information by authentication method. The authentication Information are contained ID/PWD, the roles, position and working hours, emergency certification codes for emergency patients. General situations of dynamic access control method may have access to medical information by the value of the authentication information. In the case of an emergency, was to have access to medical information by an emergency code, without the authentication information. And, we constructed the medical information integration database scheme that is consist medical information, patient, medical staff and medical image information according to medical information standards.y Finally, we show the usefulness of the dynamic access application service based on the smart devices for execution results of the proposed system according to patient contexts such as general and emergency situation. Especially, the proposed systems are providing effective medical information services with smart devices in emergency situation by dynamic access control methods. As results, we expect the proposed systems to be useful for u-hospital information systems and services.