• Title/Summary/Keyword: Patient Monitor

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The study of correlations between clinical balance scales and balance performance monitor parameters in patients with adolescent idiopathic scoliosis (청소년기 특발성 척추측만증 환자의 임상적 균형 평가지수와 균형 수행 모니터 측정값의 상관성 연구)

  • Shin, Seung-Sub
    • PNF and Movement
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    • v.8 no.3
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    • pp.39-47
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    • 2010
  • Purpose : The purpose of this study was to investigate the correlations between clinical balance scales and Balance Performance Monitor parameters in patient with adolescent idiopathic scoliosis (AIS). Methods : Twenty AIS subjects (age, $14.26{\pm}1.93yrs$; height, $160.56{\pm}7.98cm$; weight, $47.54{\pm}6.94kg$)were participated in this study. Postural sway(mean balance, sway angle, sway area, sway path, maximal sway velocity) were were evaluated by balance performance monitor. Measurements for clinical balance scales were Functional reach test (both side), the Lateral reach test (both side) and One leg standing test (both legs). Results : The results were as follows. There were positive strong correlation between major curve direction and left-right sway angle, sway path, maximal sway velocity. There were negative strong correlation between the functional reach and left-right sway angle, sway area, sway path, maximal sway velocity. And the lateral reach were also showed negative strong correlation parameters of balance performance monitor. One leg standing were negatively correlated with left-right sway angle, sway path, maximal sway velocity. Conclusion : The clinical balance scales will be useful tools for balance measurements, and basic tools for clinical setting for patient with AIS.

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Remote Patient Monitoring through the Internet (인터넷을 통한 원격환자 모니터링)

  • 박승훈
    • Journal of Biomedical Engineering Research
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    • v.22 no.4
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    • pp.377-383
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    • 2001
  • In this paper, we present an intensive patient monitoring service through the Internet, which enables medical doctors to watch their patients in a remote site, to monitor their vital signs and to give them some advices for first-aid treatment. The service consists of three service objects: Monitoring Information Service(MIS), Vital Sign Monitoring Service(VSMS) and Multimedia Consulting (MCS). Through the MIS, medical doctors can get information about the patients currently under monitoring, including their names, ages, genders, symptoms, current main complaints and current locations. The VSMS enables medical doctors to monitor in real-time patients' vital signs such as electrocardiogram (ECG), respiration, temperature, blood oxygen saturation (SpO$_{2}$), invasive blood pressure (IBP), and non-invasive blood pressure (NIBP). It also generates alarms when the patients are likely to be in a critical situation. The MCS provides a real-time multimedia desktop conferencing facility for watching patients and instructing attendants to administer some first-aid treatment. We carried out some experiments according to two different scenarios. The intensive patient monitoring service was functioning well in a 100Base-T Ethernet LAN environment.

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A Study on the Development of Patient Monitoring System (환자 감시장치의 국산화 개발에 관한 연구)

  • 홍승홍;김재현
    • Journal of Biomedical Engineering Research
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    • v.2 no.2
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    • pp.117-126
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    • 1981
  • Patient monitoring system, which is one of widly used medical electronic equipment in clinics, is developed. This prototype bedside monitor is considered that can measure electrocardiograph, photoplethysmograph, heart rate, respiratory, body temperature, and etc. Some clinical tests are performed and considered with its usefulness for patient monitoring items.

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The Gaurantee of Real-Time Vital Sign Information Service Message of Patient Monitoring System in Distributed Network Systems (분산 네트워크 시스템에서 환자 모니터링 시스템의 실시간 생체정보 서비스 메시지 보장)

  • Lim, Se-Jung;Kim, Gwang-Jun
    • The Journal of the Korea institute of electronic communication sciences
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    • v.4 no.2
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    • pp.162-167
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    • 2009
  • In this paper, we present a patient real-time vital sign information transmission system to effectively support developing real-time communication service by using a real-time object model named TMO (Time-Triggered Message-Triggered Object). Also, we describes the application environment as the PMS(Patient Monitoing System) to guarantee real-time service message with TMO structure in distributed network systems. We have to design to obtain useful vital sign information, which is generated at parsing data receiver modulor of HIS with TMO structure, that is offered by the central monitor of PMS. Vital sign informations of central monitor is composed of the raw data of several bedsite patient monitors. We are willing to maintain vital sign information of real time and continuity that is generated from the bedsite patient monitor. In the real time simulation techniques based on TMO object modeling, we have observed several advantages to the TMO structuring scheme. TMO object modeling has a strong traceability between requirement specification and design.

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Multi-channel Unconstrained Heart Rate Monitoring System for Exercising Rehabilitation Patients (재활 훈련중인 환자를 위한 다채널 무구속 심박동수 모니터링 시스템)

  • Cho, J.M.;Choi, J.H.;Park, J.H.;Nam, T.W.;Eun, J.M.
    • Journal of Biomedical Engineering Research
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    • v.29 no.3
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    • pp.191-197
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    • 2008
  • This research focused on the development of wireless telemetry system that can monitor heart rates of multiple rehabilitation patients in real time without constraint. The whole system consists of the multiple patient's side devices (PSDs) and one central monitoring system (CMS). The PSD consists of a microphone, amplifier, filter, microcontroller, and RF (Radio Frequency) modem. In addition, the PSD was designed to be wearable and low power consumption. The CMS consists of an RF modem and general PC and it was designed to monitor heart rates from multiple patients simultaneously. The system warns an alarm signal when a patient's heart rate exceeds the pre-set range for each patient. This system can be useful to monitor the heart rate of exercising rehabilitation patients and control the patients condition and the exercising level.

Development of Portable Wireless Emergency Units and Integrated System (휴대용 무선 응급 단말기 및 통합 시스템 개발)

  • Song, M.H.;Myoung, H.S.;Lee, K.J.
    • Proceedings of the KIEE Conference
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    • 2006.07d
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    • pp.2161-2162
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    • 2006
  • In this study, we developed five mobile units and an integrated system which can manage vital signs from each unit using Bluetooth wireless communication. The five kinds of mobile unit were so designed that each has different function to be applied according to the condition of patient properly. The mobile units can measure ECG signal of single or 12 channel, blood pressure, pulse and SpO2 signal from a patient. Also, to reduce the uncomfortable measurement, several types of units such as belt type, wrist type and necklace type were designed. Our proposed system can integrate and monitor several biological signals from different patient by using Bluetooth wireless communication simultaneously. The developed system was evaluated in the simulated emergent situation and showed the system can monitor 5 patients in maximum according to the data quality. It showed the possibilities that the developed system can be used effectively for emergency situation or in- or out-hospital transport of patient. In future, with the combination of mobile communication technique, a patient who is in emergency situation can be provided with proper first-aid and a doctor can pile information of patient and give better diagnosis and treatments.

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Design of a Portable Patient Monitor (휴대용 환자 감시장치의 설계)

  • Kim, E.S.;Lee, E.P.;Gil, Mun-Jong;Lee, K.J.;Yoon, H.R.
    • Proceedings of the KOSOMBE Conference
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    • v.1997 no.11
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    • pp.407-410
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    • 1997
  • In this paper, we have designed a portable patient monitor that monitors both ECG and NIBP(Non-Invasive Blood Pressure) for a patient who is bring moved around inside a hospital. System hardware consists of the one-chip microcomputer(80c251), A/D converter, ROM, RAM, LCD diplsy, two channel ECG module and NIBP module. NIBP module was calibrated to the values found in NIBP analyzer. ECG module detects QRS complex and compute heart rate. NIBP module measures the blood pressure by oscilometric method.

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Ubiquitous Sensor Network-based Rehabilitation Center

  • Jarochowski, Bart;Kim, Hyung-Jun;Ryu, Dae-Hyun;Shin, Seung-Joong
    • Journal of information and communication convergence engineering
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    • v.5 no.1
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    • pp.73-77
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    • 2007
  • This paper discusses the implementation of a rehabilitation center based on a ubiquitous sensor network. This paper discusses the implementation of a rehabilitation center based on a ubiquitous sensor network. We recognize that certain mild conditions requiring rehabilitation may be treated with minimal human supervision. In place of this constant human supervision, a variety of sensors are used to monitor the patient and rehabilitation progress. These sensors send data through a wireless Zigbee network to a server which stores the data and makes it available to a rehabilitation expert for analysis. This rehabilitation expert also issues rehabilitation prescriptions which are created based on the expert's determination of the patient's condition. By having the ability to control the rehabilitation equipment used, strictly enforce the assigned prescription, and constantly monitor the patient for any warning signs, the system ensures a safe and optimal rehabilitation session.

Intrabed Networks in a Patient Monitoring System (환자 모니터링 시스템에서의 통신 방식(I) : 인트라베드 통신망)

  • 우응제;박승훈;김경수;최근호;김승태;이희철;서재준;김형진
    • Journal of Biomedical Engineering Research
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    • v.18 no.4
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    • pp.373-380
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    • 1997
  • In this paper, we describe the intrabed network in a patient monitoring system we developed The intrabed network handles data communication between the main unit of a bedside patient monitor and parameter modules plugged in it. We designed the intrabed network based on RS-485 and HDLC protocol with 1 Mbps data rate. Message exchanges are implemented based on three data structures of packet frame. and stream. We present the specification and the performance of the data communication network for the developed patient monitor.

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