• Title/Summary/Keyword: Stress scale

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The Healing Effects of the Agro-Healing Program Using Insect Resources (곤충자원을 이용한 농가형 치유농업프로그램의 치유효과 분석)

  • So-Yun Kim;Sun Young Kim;Hyun-Myung Choi;Sangmin Ji
    • Journal of Agricultural Extension & Community Development
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    • v.30 no.1
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    • pp.1-13
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    • 2023
  • This study aims to examine the effect of healing program using insect. For the insect resources, the program uses 3 species of emotional insects. The subjects were a total of 29, the elderly with mild dementia and adults with developmental disabilities in the facility. The activities are 9 programs in total and each program takes 2 hours once a week. For data collection, we measured a blood pressure, stress level using autonomic nervous system activity, and scale of happiness, depression and insomnia by a survey. The datas were collected every week before and after the program. As a result of paired-sample t-test analysis, the participants of the agro-healing program using insects had positive effects as follows: reducing a depression, relieving a symptom of insomnia and stabilizing a blood pressure. Through the results of this study, it was possible to confirm the positive effects of the agro-healing program using insects. If farms lead agro-healing program using insects on their own, it could be expected to contribute to improve the quality of life through agriculture as well as to improve the farms' income.

The Effects of Supportive Nursing Management on Postpartum Depression of Mothers with Premature Infants (지지간호가 미숙아 어머니의 산후 우울에 미치는 효과)

  • Kim, Eun Sook;Kim, Eun Young;Lee, Ji Yeon;Kim, Jin Kyoung;Lee, Hyun Ju;Lee, Seung Hee;Kim, Ji Young;Won, Ha Yeon
    • Journal of Korean Clinical Nursing Research
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    • v.15 no.3
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    • pp.157-170
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    • 2009
  • Purpose: This quasi-experimental study was conducted to investigate the effects of supportive nursing management on postpartum depression in the mothers with premature infants. Methods: The subjects were 21 mothers who delivered premature babies in a university hospital. The experimental group of 10 mothers was provided with supportive nursing management program by nurses in neonatal ICU and the control group of 11 mothers was provided with usual management only. The designed programs were given 4 times to the experimental group while their babies were hospitalized, and telephone consultation was provided 3 times after discharge. The stress, anxiety, identity, support from their husbands & family members, and postpartum depression were measured 3 times using Edinburgh Postnatal Depression Scale (the 4th day of premature's hospitalization, the day of discharge and the day of 4 weeks after discharge). Results: There was no significant difference in general characteristics and the influential factors of postpartum depression between the two groups, so they were homogeneous. There was no significant difference in depression (F=0.01, p=.917). However there was significant difference over time (F=6.74, p=.003) and the interaction between measurement time and treatment (F=3.59, p=.037). Conclusion: The supportive nursing management on postpartum depression of mothers with premature infants is considered effective and useful in reducing postpartum depression. Further research is warranted to investigate paternal depression and the program's long-term effects.

Effects of High-Frequency Treatment using Radiofrequency on Autonomic Nervous System and Pain in Women with Dysmenorrhea

  • Sungeon Park;Seungwon Lee;Inok Kim
    • Physical Therapy Rehabilitation Science
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    • v.11 no.4
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    • pp.493-501
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    • 2022
  • Objective: The purpose of this study is to present basic data for appropriate therapeutic intervention by confirming changes in the autonomic nervous system and pain by applying high-frequency deep diathermy to the lower abdomen in patients with primary dysmenorrhea. Design: A randomized controlled clinical trial. Methods: Thirty-eight women aged 18-50 years who complained of regular menstrual cycles (24-32 days) and primary dysmenorrhea symptoms were randomly assigned to a high-frequency therapy group (5, 7, or 9 mins) and a superficial heat therapy group (20 min). High frequency treatment group: The subject was in a supine position, and radio frequency was applied to the lower abdomen below the umbilicus. The radio frequency therapy device used in this study uses a 300 kHz capacitive electrode and a 500 kHz resistive electric transfer to deliver deep heat. Superficial heat treatment Group: Subjects applied a hot pack to the lower abdomen for 20 minutes while lying on their back. Evaluations were made of Heart rate variability and Visual Analogue Scale. Results: In subjects with menstrual pain, there was a significant difference in pain between the high-frequency therapy group and the superficial heat therapy group (p=0.026). However, there was no significant difference between the autonomic nervous system and the stress resistance (p>0.05). Conclusions: As a result of this study, high-frequencytreatment using radiofrequency was effective in relieving pain because it can penetrate deeper tissues than conventional hot packs using superficial heat. In particular, it was found that the optimum effect was obtained when high frequency was applied forfive-seven minutes.

Analysis on the Influence and Reinforcement Effect of Adjacent Pier Structures according to the Underpass Construction (지하차도 시공에 따른 인접 교각구조물 영향 및 보강효과 분석)

  • Lee, Donghyuk
    • Journal of the Korean GEO-environmental Society
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    • v.23 no.4
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    • pp.29-39
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    • 2022
  • In order to solve the serious traffic congestion in seoul metropolitan city, large-scale underground space development such as underpasses, deep underground roads, and GTX (Great Train eXpress) is being carried out. In order to minimize the impact of the adjacent seoul metro line A pier foundation and stability due to the construction of the underground road in Seoul, earth retaining structures were reinforced and the foundation was reinforced as well. In this study, three-dimensional finite element mehtod analysis was performed to evaluate the effect on adjacent construction and to review the stability of the underpass excavation work. The reinforcement effect was quantitatively analyzed through numerical analysis. As a result of the analysis, compared to the result of performing the existing reinforcement when overlapping CIP and ground reinforcement grouting were performed, the displacement of the earth retaining structures was reduced by more than 50%, and stress of the foundation piles were also reduced by more than 45%. Based on the analysis of the numerical analysis results, it was confirmed that the displacement of the walls of earth retaining structures during adjacent construction should be strictly controlled.

Geotechnical Characteristics of DCM-Improved Specimen Under Artesian Pressure (피압 작용에 따른 DCM 개량체의 지반공학적 특성)

  • Yun, Dae-Ho;Kim, Yun-Tae
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.42 no.2
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    • pp.187-195
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    • 2022
  • This study investigated the effect of artesian pressure on mechanical properties of deep cement mixing (DCM)-improved specimens. Various laboratory tests such as unconfined compression test and scanning electron microscope (SEM) were conducted on DCM specimens which curied in a water tank with different artesian pressures. The artesian pressure was determined in consideration of the laboratory scale and the hydraulic gradient in field conditions. Results of experimental tests indicated that unconfined compressive strength, secant modulus, and unit weight of specimen decreased and water content tended to increase as an artesian pressure increased. The stress-strain behavior changed brittle to ductile behaviors as an artesian pressure increased. The outflow water from the water tank reacted with the phenolphthalein solution due to the leaching phenomenon of the improved specimen. SEM analysis also confirmed that a small amount of ettringite was formed between soil particles in the specimens with artesian pressure.

Durability Evaluation of Hybrid Expansion Joint System with Improved Replacement (보수성을 개선한 복합형 신축이음장치(HRS) 내구성 평가)

  • Jung Woo Lee
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.27 no.2
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    • pp.1-7
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    • 2023
  • Durability was evaluated by performing a full-scale vertical load fatigue test and a wheel load performance test on the HRS, which reduces the replacement time of the existing expansion joint and improves serviceability to allow partial replacement by lane. As a result of the vertical load fatigue test, the maximum stress of the rail-type expansion joint is 170 MPa, which is about 47.8% of the yield strength of the HRS expansion joint rail 355 MPa. The vertical load fatigue test of the HRS expansion joint with improved serviceability set the size and load of the load plate according to the road bridge design standards, did not show any fracture behavior in the vertical load fatigue test and the wheel load performance test 2 million times, and its durability and safety were verified.

Layered Section Analysis for PSC Girder with Variable Cross Section Using SI Technique (SI기법을 이용한 변단면 PSC 거더의 층상화 단면해석)

  • Kim, Byeong Hwa;Park, Taehyo;Jeon, Hye-Kwan
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.30 no.6A
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    • pp.581-590
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    • 2010
  • This study introduces a layered sectional analysis for a PSC girder with a vaiable cross section and curved tendons. To consider the shear equilibrium at a concrete layer with curved tendons, the shear stress distribution has been computed at each section. In addition, to improve the convergence to the solution, a system identification technique is newly adopted in the solution process for strain computation. To examine the feasibility of the proposed approach, a static load test has been conducted for a full scale PSC girder with variable cross section. The prediction shows a good agreement with experiment. It is seen that a uniform cross section has the same moment capacity with a variable cross section while the variable cross section has more shear capacity than the uniform cross section. It is also noted that the maximum displacement of a variable cross section is a little smaller than a uniform cross section.

Management of anxiety using eye movement desensitization and reprocessing therapy in children undergoing extraction: a randomized controlled pilot study

  • Namita Kalra;Apoorva Rathore;Rishi Tyagi;Amit Khatri;Deepak Khandelwal;Padma Yangdol
    • Journal of Dental Anesthesia and Pain Medicine
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    • v.23 no.6
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    • pp.347-355
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    • 2023
  • Background: Eye movement desensitization and reprocessing (EMDR) therapy has been reported to be very efficacious for treating post-traumatic stress disorder (PTSD) and other anxiety-related conditions. However, a review of the literature reveals the sparse use of this therapy in the field of pediatric dentistry. This study aimed to evaluate anxiety trends in pediatric dental patients during local anesthesia and extraction with and without EMDR therapy. Methods: Children in the age range of 8-12 years who required dental extractions were assigned randomly into two groups: an EMDR group (group 1) and a routine behavior management therapy group (group 2; receiving more traditional interventions such as tender love and care behavioral modeling, and distraction). Anxiety scores were recorded at four levels using the visual facial anxiety scale (VFAS) preoperatively, after therapy, after the administration of local anesthesia (LA), and after extraction. Results: Reduced anxiety was observed after the delivery of EMDR therapy, after LA administration, and post-extraction in the EMDR group compared to pre-operative anxiety scores of anxiety (P < 0.001; unpaired Student's t and Mann-Whitney U tests). In the control group, mild reductions in anxiety after routine behavior management therapy were observed, accompanied by spikes in anxiety levels after LA and extractions. Conclusion: EMDR therapy was found to be valuable for reducing anxiety among pediatric dental patients during tooth extraction procedures.

Surface Engineering of GaN Photoelectrode by NH3 Treatment for Solar Water Oxidation

  • Soon Hyung Kang;Jun-Seok Ha
    • Journal of Electrochemical Science and Technology
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    • v.14 no.4
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    • pp.388-396
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    • 2023
  • Photoelectrochemical (PEC) water splitting is a vital source of clean and sustainable hydrogen energy. Moreover, the large-scale H2 production is currently necessary, while long-term stability and high PEC activity still remain important issues. In this study, a GaN-based photoelectrode was modified by an additional NH3 treatment (900℃ for 10 min) and its PEC behavior was monitored. The bare GaN exhibited a highly crystalline wurtzite structure with the (002) plane and the optical bandgap was approximately 3.2 eV. In comparison, the NH3-treated GaN film exhibited slightly reduced crystallinity and a small improvement in light absorption, resulting from the lattice stress or cracks induced by the excessive N supply. The minor surface nanotexturing created more surface area, providing electroactive reacting sites. From the surface XPS analysis, the formation of an N-Ga-O phase on the surface region of the GaN film was confirmed, which suppressed the charge recombination process and the positive shift of EFB. Therefore, these effects boosted the PEC activity of the NH3-treated GaN film, with J values of approximately 0.35 and 0.78 mA·cm-2 at 0.0 and 1.23 VRHE, respectively, and an onset potential (Von) of -0.24 VRHE. In addition, there was an approximate 50% improvement in the J value within the highly applied potential region with a positive shift of Von. This result could be explained by the increased nanotexturing on the surface structure, the newly formed defect/trap states correlated to the positive Von shift, and the formation of a GaOxN1-x phase, which partially blocked the charge recombination reaction.

Experimental study on variation in rheological properties of concrete subjected to pressure and shearing by pumping

  • Jung Soo Lee ;Kyong Pil Jang ;Chan Kyu Park ;Seung Hee Kwon
    • Advances in concrete construction
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    • v.16 no.1
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    • pp.59-68
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    • 2023
  • In the pumping process, concrete moves along the pipe and experiences both pressure and shear. This changes the workability and flow characteristics of the concrete. However, the effect of pressure and shear on the change in properties of concrete during the pumping process has not yet been accurately identified. This study analyzed the effects of pressure and shear on the properties of concrete during pumping. For quantitative tests, lab-scale test equipment capable of simulating the pressure and shear applied to concrete during pumping was used. For one coarse aggregate type, two paste types, three mortar types, and five concrete types, the effects of pressure, shear, and shear under pressure conditions were examined by varying the maximum pressure (0 to 200 bar) and the rotational speed of the vane for shear (0 to 180 rpm). Under the maximum pressure condition of 200 bar, the water absorption of coarse aggregate increased by 0.62% and that of fine aggregate also increased. When the concrete was under pressure, significant changes (a reduction in a slump and an increase in viscosity and yield stress) compared with the effect of the elapsed time occurred owing to an increase in the water absorption of the aggregates. When both pressure and shear were applied to concrete, both the slump and viscosity decreased. As the rotational speed of the vane increased, changes in properties became significant. Shearing in the absence of pressure maintained the properties of concrete. However, shearing under pressure conditions caused a reduction in slump and viscosity.