• Title/Summary/Keyword: monitor function

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A Preliminary Study of the Effects of Monitor-Based Virtual Reality Games on the Cognition & Activities of Daily Living for Acute Stroke : A Double-blind Randomized Controled Trial (모니터기반 가상현실게임을 이용한 중재가 급성기 뇌졸중 환자의 인지 기능과 일상생활활동에 미치는 영향에 대한 사전연구: 이중 맹검 무작위 대조 시험 연구)

  • Choi, Bong-Geun;Kwon, Jae-Sung
    • The Journal of the Korea Contents Association
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    • v.20 no.9
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    • pp.531-540
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    • 2020
  • Objectives: This study aimed to investigate the effects of a 4-weeks intervention using a monitor-based virtual reality game intervention(VRI) on the cognitive function and activities of daily living of individuals with acute stroke. Methods: For this study, 19 individuals with acute stroke were recruited. To compare the effectiveness of the VRI and the computer based cognitive intervention(CBCI), Each of the two groups were provided different interventions a 30 minutes a day, 5 times per week for 4 weeks, and to measure the effects of the intervention, the TMT A&B, DST, RKMT and K-MBI were performed before and after interventions. Results: Both the VRI and the CBCI were found to have significantly improved the cognitive function and activities of daily living, and the difference in change compared between groups showed that the effectiveness of the VRI was significantly higher. Conclusion: Based on the findings of this study, the monitor-based VRI is anticipated to prove useful as an effective intervention for the cognitive function and activities of daily living of stroke patients. Furthermore, the utility of monitor-based VRI is likely to be high in clinical occupational therapy.

The Design and Implementation of On-Line Performance Monitor for JaNeC (JaNeC을 위한 온라인 성능감시기의 설계 및 구현)

  • Kim, Myung-Ho;Kim, Nam-Hoon;Choi, Jae-young
    • The KIPS Transactions:PartA
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    • v.9A no.4
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    • pp.563-572
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    • 2002
  • A performance monitor is indispensable to trace and evaluate performance of a program under distributed processing environment. A performance monitor il classified as off-line and on-line according to its output method. An off-line performance monitor analyzes its performance after a program terminates, and an on-line performance monitor analyzes its one while a program runs. Therefore, the on-line function is essential to analyzing and debugging the program fast. JaNeC, distributed processing environment that is implemented in Java, contains an off-line performance monitor for this. However, this performance monitor may not analyze the program running on JaNeC efficiently. Consequently, this paper explains that an on-line performance monitor is designed and implemented for fast analysis and debugging of the program running on JaNeC. This on-line performance monitor is designed to minimize effects on a program to analyze, and provides various forms of graphic output, to analyze the program effectively. In addition, even after a program terminates, it provides interface with the off-line performance monitor, to analyze again.

Evaluation of color CRT monitor by MTFA (MTFA에 의한 칼라 CRT의 화질 평가)

  • 김태희
    • Korean Journal of Optics and Photonics
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    • v.9 no.3
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    • pp.205-211
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    • 1998
  • The MTF(modulation transfer function) measuring system with a linear CCD(charge coupled-device) was constructed to cvaluate a color CRT(catode ray tube). The measured MTF values were corrected by considering the spectral response and the pixel sizes of CCD. The effects of a spot size, video bandwidth, pitch of shadow mask holes, display luminance, and ambient illumination on image quality were studied. The uniformity of resolution and the contrast Ioss by ambient light of the color CRT monitor were measured, and the results were analyzed by MTFA(modulation threshold area).

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Development and Research of SMT(Smart Monitor Target) Game Interface for Airsoft Gun Users (AirSoft Gun 사용자를 위한 SMT(Smart Monitor Target)게임 인터페이스 개발 연구)

  • Chung, Ju Youn;Kang, Yun Geuk
    • Journal of Information Technology Applications and Management
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    • v.28 no.1
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    • pp.83-93
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    • 2021
  • The purpose of this study was to develop a personalized SMT (smart monitor target) game interface for game users who enjoy airsoft sports as individual purchases of SMT have increased since the advent of the untouched era. For this study, the UX (user experience) of the game interface was designed based on previous research. In particular, the personalized game service was reinforced by adding the CP (command post) of the SMT system that performs the home function of the console game, which was intended to help the user maintain immersed in the game in the personalized space of the SMT. Major design elements for the SMT game interface included layout, color, graphics, buttons, and text, and the interface design was proceeded based on them. After composing a grid with a layout in which the tab function was applied to the interface with a vertical three-segment structure and the outer margin value secured, the military camouflage pattern and texture were applied to the colored tone to perform graphics work. Targets and thumbnails were produced as illustrations using experts to ensure the consistency of the interface, and then function buttons and texts on each page were used concisely for intuitive information delivery. The design sources organized in this way were developed using the Unity engine. In the future, we hope that game user-centered personalized interfaces will continue to develop and provide differentiated services unique to SMT systems in the airsoft gun market.

Development of the Patient Monitor Using Microprocessor(II) (Microprocessor를 이용한 Patient Monitor 개발(II))

  • Kim, Nam-Hyun;Kim, Jeong-Lae;Huh, Jae-Man
    • Journal of Biomedical Engineering Research
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    • v.16 no.1
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    • pp.101-106
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    • 1995
  • In this paper, the patient monitor consisting of ECG/Respiration Amplification, Front end CPU, Main CPU, Main Controller, Video Amplifier, Display Controller, Waveform Generator, Bus & Power Supply, 8097 Processor was developed. This patient monitor measures the patient's states in the hospital such as elecctro-cardiography, respiration, blood pressurae and temperature. The control and processing methods based on micro-processor employ the flexibility, extensibility over other conventional system. The followings are incorporated in this system. First, ECG/RESP measures the respiration by impedence pneumography. Second, FECPU utilizes an Intel 8031 microcontroller. Third, Controller function originate from a LSI CRT controller.

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Implementation of a Re-coloring System on Monitor for Red-green Color Vision Deficiency (적록 색각이상자를 위한 모니터 색 보정 시스템 구현)

  • Cho, Kyung-Seon;Ko, Sung-Jea
    • Journal of the Institute of Electronics and Information Engineers
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    • v.52 no.5
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    • pp.165-173
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    • 2015
  • People with color vision deficiency (CVD) experience difficulties in discriminating some color combinations and color differences due to the abnormal retinal cone systems. While there exist smartphones with a re-coloring function for CVD, monitors do not provide the re-coloring function. In this paper, we propose a new re-coloring algorithm that adjusts the displayed colors for CVD using a color controller embedded in the monitor. The proposed algorithm converts the hue and saturation in HSV color space, according to the type and strength of the color deficiency. The results of the performance evaluation with a certain number of people with CVD show that the proposed system can convert colors imperceptible into perceptible.

Chaff-outlet Grain Loss of Head-feed Combine -Development of a Monitor for Detecting Chaff-outlet Grain Loss of Head-feed Combine- (자탈형(自脱型) 콤바인의 배진손실(排塵損失)에 관(關)한 연구(硏究)(I) -자탈형(自脱型) 콤바인의 배진손실(排塵損失) 모니터 개발-)

  • Chung, C.J.;Choe, J.S.;Choi, Y.S.
    • Journal of Biosystems Engineering
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    • v.14 no.4
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    • pp.251-261
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    • 1989
  • The amount of grain loss incurred during harvesting operation through the chaff-outlet of combine may not be negligible. To minimize this grain loss and optimize condition of combining, it may be necessary that the amount of chaff-outlet loss dependent on varying crop condition is to be estimated as exactly as possible. This study was thus intended to develop the monitor that could indicate the amount of grain loss occurred through the chaff-outlet of combine during harvesting operation. The function of this monitor is to measure at the sounding board the impact sound of paddy kernels which could be distinguished from those of other threshing products through chaff-outlet, and from vibration or noise created by the combine engine and other moving parts. To develop such monitor, the frequency distributions of each sound generated by the impact of grain and chaff, the sound generated by the impact of the mixture of grain and chaff, and vibration or noise created by the combine engine and other moving parts were investigated experimentally. From the results of frequency analyses, the trainsducer adequate for the monitering system was selected and sounding board was constructed. The grain loss monitor thus obtained was tested by attaching the sounding board to the chaff-outlet of combine.

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Development of Interferometer for Performance Assessment of IR Optical System (적외선 광학계통 성능평가를 위한 간섭계 개발)

  • 홍경희;고재준;이성태;장세안;오명호
    • Korean Journal of Optics and Photonics
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    • v.2 no.4
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    • pp.179-185
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    • 1991
  • Twyman-Green interferometer is developed for assessment of IR optical system performance. Light source is $CO_2$ gas laser which has 10.6$\mu \textrm m$ wavelength. The light beam is expanded to 2.5 cm dia by Ge lens and splitted by ZnSe parallel plane plate. One of the beams is reflected by refernce mirror which is operated PZT. The fringe will be detected by a pyro-electric vidicon camera and displayed by a CRT monitor. Here, the IR firinge is recorded on the thermal paper. In visible region, the light source is He-Ne laser. The fringe is detected by a CCD camera and displayed by the CRT monitor. The intensity of the fringe is digitized by a image card and processed by a PC. The wavefront aberration function, PSF and OTF are calculated. The results are displayed in 3-D graphs on the monitor or printed out by a line printer.

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Implementation of WDM/SCM multi channel monitoring function based on IEEE 1149.1 (IEEE 1149.1 기반의 WDM/SCM 다채널 모니터링 기능 설계)

  • Jung, E.S.;Lee, C.S.;Jang, S.H.;Kim, B.W.
    • Proceedings of the KIEE Conference
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    • 2005.10b
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    • pp.472-474
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    • 2005
  • In WDM/SCM-PON system more than thousand signals must be gathered to monitor for operation. We have implemented IEEE STD 1149.1 JTAG serial interface bus to gather and monitor analog signals. Required area is just $5{\times}5mm^2$. Gathering time per one signal is $1.75{\mu}$ second. Performance to gather is better than that defined in SFF-8472.

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