• Title/Summary/Keyword: TRS

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A Study on the Petal Micromorphological Characteristics of the Tribe Sorbarieae (Rosaceae) (쉬땅나무족(장미과) 화판표피의 미세형태학적 특성에 관한 연구)

  • Song, Jun-Ho;Hong, Suk-Pyo
    • Korean Journal of Plant Resources
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    • v.29 no.4
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    • pp.376-384
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    • 2016
  • A comparative petal micromorphology of 15 taxa of tribe Sorbarieae was carried out using scanning electron microscopy (SEM) in order to evaluate their taxonomic and systematic implication. The characteristics of both adaxial and abaxial side of petal epidermal cells such as shape, arrangement, anticlinal wall and cuticular sculpture were described in detail. The Sorbarieae petal epidermal cells were identified as papillate or conical papillate (PCS) and rectangular-rugose tabular (TRS). Three types of petal micromorphology were found within the tribe based on the cell patterns of adaxial and abaxial side. Type I. PCS-TRS, Type II. PCS-PCS, Type III. TRS-TRS (adaxial-abaxial side). The petal epidermal cell types, anticlinal cell wall, and cuticular sculpture represent not only taxonomical importance for identification between or within the genera but also systematic implication. Moreover, this study provides a relation between petal epidermal cell pattern and insect pollinator (entomophily; melittophily) as an additional case.

Channel Capacity Design in TRS Network (TRS 기반 무선망 용량 설계)

  • Lee, Jin-Kee;Sung, Kee-Hyuk;Park, Myung-Hye;Jung, Young-Ho;Yoo, Dong-Hee;Jung, Kang-Sik;Kim, Mi-Young;Park, Seng-Kyun;Kim, Hong-Ic
    • Proceedings of the KIEE Conference
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    • 2003.07d
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    • pp.2624-2626
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    • 2003
  • TRS 무선망은 셀룰라 시스템과 동일한 네트워크 교환 기술로서 다수의 기지국으로 배치된 광역의 서비스 시스템에 의해 그 내에서는 어디를 가더라도 교신이 가능하도록 되어 있다. TRS 시스템 설계에서 고려해야 하는 우선사항은 용량에 관한 설계이다. 예상된 가입자로부터 지역별 통화량을 조사와 가입자당 통화량을 조사한 후, 각 세부 구역별 통화량 값을 구한 다음 가용 주파수 대역과 가입자당 수용 가입자의 값으로부터 FA당 통화 용량 및 기지국 유형별 가입자 수용용량을 계산한다. 더불어 통화품질 수준을 고려하는 엔지니어링이 필요하게 된다. 본 논문은 TRS 무선망에서의 용량설계 연구내용의 일부로, 최종적인 채널용량을 산정함으로써 최종적 목표인 기지국 수/유형/용량을 결정하는 것을 목표로 한다.

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Current Status of Clozapine for Treatment-Resistant Schizophrenia (치료저항성 조현병에서 클로자핀 치료의 현황)

  • Kim, Se Hyun
    • Korean Journal of Schizophrenia Research
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    • v.24 no.1
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    • pp.1-7
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    • 2021
  • Clozapine is the first and most effective atypical antipsychotic drug for treatment-resistant schizophrenia (TRS). After withdrawal of clozapine due to concerns of agranulocytosis, clozapine was reintroduced with a comprehensive safety monitoring system, the clozapine patient monitoring system (CPMS). The reintroduction was a response to the pressure from psychiatrists and patients with TRS and their families. Clozapine is still the best single agent for the treatment of TRS. However, approximately 30% of patients with TRS still show psychotic symptoms. In patients with clozapine-resistant schizophrenia (CRS), augmentation of other antipsychotic agents could be considered after a thorough evaluation of proper clozapine treatment. In this review, the status of clozapine in patients with TRS and CRS will be discussed.

Treatment-Resistant Schizophrenia: Terminology and Clinical Features (치료저항성 조현병: 정의와 임상양상)

  • Lee, Kounseok
    • Korean Journal of Schizophrenia Research
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    • v.23 no.2
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    • pp.45-50
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    • 2020
  • Schizophrenia is one of serious mental illnesses and is often described as a heterogeneous disorder. Approximately one-third of schizophrenia cases are treatment-resistant schizophrenia (TRS). The aim of this study was to review the definitions and clinical features of TRS. Though it was found that the criteria for TRS were considerably diverse, the Treatment Response and Resistance in Psychosis (TRRIP) consensus criteria were recently introduced. According to the TRRIP criteria, TRS should be suspected if symptoms persist alongside psychotic symptoms despite sufficient treatment for ≥12 weeks, or two or more symptoms persist significantly for ≥6 weeks. The clinical characteristics of TRS includes an earlier age of onset, more severe and familial form, possibly more rural residence, unlikely association with male sex, and an increase in cognitive deficits.

Flexural Capacity of Precast Concrete Triple Ribs Slab (프리캐스트 콘크리트 트리플 리브 슬래브의 휨성능)

  • Hwang, Seung-bum;Seo, Soo-yeon;Lee, Kang-cheol;Lee, Seok-hyun
    • Journal of the Korea Concrete Institute
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    • v.28 no.1
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    • pp.3-11
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    • 2016
  • The concern about hollow core PC slab has been increased to improve the workability during a construction of building by reducing self weight of structural members. In this manner, recently, TRS (Tripple Ribs Slab) was developed as a new type of half PC slab system. TRS member consists of the triple webs and the bottom flange prestressed by strands. The slab system is completed by casting of topping concrete on the TRS after filling styrofoam between the webs. This paper, presents a flexural experiment to investigate the flexural capacity of the TRS. Five full scale TRS members were made and tested under simple support condition to be failed by flexure and their strength was evaluated by code equations; the variables in the test are the depth and the presence of topping or raised spot formed when slip-forming. In addition, a nonlinear sectional analysis was performed for the specimens and the result was compared with the test results. From the study, it was found that the TRS has enough flexural strength and ductility to resist the design loads and its strength can be suitably predicted by using code equations. The raised spot did not affect the strength so that the spot need not to be removed by doing additional work. For the more accurate prediction of TRS's flexural behavior by using nonlinear sectional analysis, it is recommended to consider the concrete's brittle property due to slip-forming process in the modeling.

Study on the Evaluation of TRS-398 Quality Factors with Central Electrode Corrections for Small Cylindrical Chambers (소형 전리함에 대한 TRS-398 선질인자 계산과 중심전극 보정에 관한 연구)

  • Kang, Yeong-Rok;Lee, Chang-Yeol;Kim, Jin-Ho;Moon, Young-Min;Kwak, Dong-Won;Kang, Sang-Koo;Kim, Jeung-Kee;Yang, Kwang-Mo;Jeong, Dong-Hyeok
    • Progress in Medical Physics
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    • v.22 no.3
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    • pp.148-154
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    • 2011
  • The quality factors ($k_{Q,Q_0}$) were evaluated by appling the results recently studied for the effect of central electrode in TRS-398 protocol. The PTW-31010 and IBA-CC13 chambers were used in this study. The quality factors were calculated as a function of beam quality for high energy electron and photon beams and compared with data currently used in TRS-398 protocol. In the PTW-31010 chamber using aluminium electrode, appling the new central electrode collections, the quality factors were 0.4% and 0.9% higher than current TRS-398 data for high energy photon and electron beams respectively. In the IBA-CC13 chamber using C-552 electrode, there are no variations in quality factors compared to TRS-398 data currently used.

Brain-wave Analysis using fMRI, TRS and EEG for Human Emotion Recognition (fMRI와 TRS와 EEG를 이용한 뇌파분석을 통한 사람의 감정인식)

  • Kim, Ho-Duck;Sim, Kwee-Bo
    • Journal of the Korean Institute of Intelligent Systems
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    • v.17 no.6
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    • pp.832-837
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    • 2007
  • Many researchers are studying brain activity to using functional Magnetic Resonance Imaging (fMRI), Time Resolved Spectroscopy(TRS), Electroencephalography(EEG), and etc. They are used detection of seizures or epilepsy and deception detection in the main. In this paper, we focus on emotion recognition by recording brain waves. We specially use fMRI, TRS, and EEG for measuring brain activity Researchers are experimenting brain waves to get only a measuring apparatus or to use both fMRI and EEG. This paper is measured that we take images of fMRI and TRS about brain activity as human emotions and then we take data of EEG signals. Especially, we focus on EEG signals analysis. We analyze not only original features in brain waves but also transferred features to classify into five sections as frequency. And we eliminate low frequency from 0.2 to 4Hz for EEG artifacts elimination.

QUANTITATIVE MONITORING OF TISSUE OXYGENATION BY TIME-RESOLVED SPECTROSCOPY

  • Yamashita, Yutaka;Oda, Motoki;Ohmae, Etsuko;Tsuchiya, Yutaka
    • Proceedings of the Korean Society of Near Infrared Spectroscopy Conference
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    • 2001.06a
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    • pp.2101-2101
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    • 2001
  • Near-infrared spectroscopy is now being used in clinical diagnosis as a non-invasive monitor of tissue oxygenation state. However, due to lack of the optical pathlength information within tissues, it is still difficult to quantitate the hemoglobin concentration with present CW techniques. Time-resolved spectroscopy (TRS), which measures temporal profiles of emerging light from tissues, enables to estimate the pathlength distribution within tissues by converting time to distance. Consequently, quantitative measurement of tissue oxygenation is possible by analyzing the data with optical diffusion equation 1) or our Microscopic Beer-Lambert law2). Time-Resolved Spectroscopy System : TRS-1O3) Our TRS-10 system consists of a three-wavelength (759, 797, 833 nm) PLP as pulsed light source, a high speed PMT with high sensitivity and three signal-processing circuits for time-resolved measurement (CFD/TAC, A/D converter and histogram memory). Optical pulse train consisting of 759, 797 and 833nm is generated by PLP at 5㎒ repetition rate and irradiated a sample through a single optical fiber. The diffuse-reflected light from the sample is collected by a bundle fiber and then detected by the PMT for single photon measurement. After being amplified by a following fast amplifier, the electrical signals for each wavelength are picked out by CFD/TAC module. Then, a signal processing circuit integrated the TRS data for each wavelength individually. The simultaneous TRS measurement for three wavelengths achieved without any optical or mechanical switch. Experiment and Results Input and detection fibers of TRS-10 were attached at the human forehead with a fiber separation of 3cm. TRS measurements were continuously performed for about 20 minutes including 2 minutes hyper ventilation. It was observed that the total hemoglobin concentration was decreasing during the hyper ventilation and recovered until 2 minutes after hyper ventilation. On the other hand, the deoxy-hemoglobin concentration began to increase after hyper ventilation and had its peak at around 2 minute later, showing 502 drop from 75% to 60% due to inhibition of breathing by performing hyper ventilation. The results showed that this system might be able to quantitate the concentrations of oxy- and deoxy-hemoglobin in the human brain.

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