The Journal of the Korean bone and joint tumor society
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v.3
no.1
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pp.39-46
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1997
The pasteurization of bone tumor shows necrosis of tumor tissue and it is used widely as one of the options of limb salvage operation. However malignant tumors of the extremities commonly involve major neurovascular structures and pasteurization of this structure will make limb salvage operation much easier and safer than autogenous vein graft or artificial vessel graft. So the purpose of this study is to evaluate that the pasteurization can be applied in the limb salvage surgery of malignant tumor involving major vessels by means of studying the patency of pasteurized femoral vessels of the dogs. The right femoral arteries of 5 to 7 mm in diameters and veins of 7 to 10 mm in diameters of five dogs were pasteurized with sterile $60^{\circ}C$ saline for 30 minutes. Contralateral femoral vessels were evaluated for the control study. After one month, the changes in the pasteurized femoral vessels were evaluated by physical examinations, femoral angiography, gross findings, and pathologic findings on the each side. One month after pasteurization, the pulse of the femoral and popliteal arteries was palpated with normal tone on the each side of the all five experimental animals, and there was no gross swelling or necrotic changes in the legs. Femoral angiography showed a good patency of femoral and popliteal arteries. On the gross examinations at time of sampling of the specimen for the pathologic examinations, there was a good patency of femoral artery and vein, and mild fibrous adhesion was noted around the pasteurized femoral vessels. On the pathologic examinations, the more fibrotic adhesion and neocapillarization were noted in the outer layer of adventitia of the pasteurized femoral arteries and veins than the control sides. The vascular lumina were also patent in all cases. With these results, we suggest that the malignant tumor of the extremity involving major vessels is possibly treated by the limb salvage operation using the pasteurization of the involved vessels.
The chemical composition of natural powder dye $Pinux^{TM}$ manufactured from Pinus radiata bark and dyeability of dyed silk fabrics with $Pinux^{TM}$ were examined. It is made up of the optimum dyeing condition of silk fabric according to the dyeing concentration, dyeing time, and dyeing temperature. Also, we examined the colorfastness and antibiosis of dyed silk fabrics to washing, rubbing, perspiration and light. For the analysis of the chemical composition of $Pinux^{TM}$, the total contents of phenolic compound, proanthocyanidin(PA) and anti-oxidative activities of the dye were analyzed. As a result, it was found that the main components of the $Pinux^{TM}$ manufactured from Pinus radiata bark is proanthocyanidin, mostly a flavonoid containing a procyanidin structure, and it consists of approximately 63% phenol. As a result of examining the dyeability of silk fabrics with $Pinux^{TM}$, it showed that the dyeability was best under the conditions of the concentration of dye $1{\sim}1.5%$(wt/v%), dyeing time of 90 minutes, and dyeing temperature at $90^{\circ}C$. It was found that the colorfastness of dyed silk fabrics, colorfastness to washing, perspiration for acidic and rubbing were as good as grade 4 or 4-5. However, the colorfastness to light was low at grade 1, the same as the results of other natural dyed fabrics. As a result of the antibiosis measurement for the $Pinux^{TM}$-dyed silk fabrics, it showed high antibacterial properties to Staphylococcus sureus at 99.6%.
Brettanomyces custersii CBS 5512 which has reported as a thermotolerant glucose-cellobiose co-fermentable yeast strain was mutated with UV and NTG to improve ethanol yield at higher than 4$0^{\circ}C$ B. custersii H1-23, H1-39, H1-55 and H1062 were finally selected for hyper-fermentable strains at higher than 4$0^{\circ}C$ from thermotolerant 7510 colonies through 5th selection. Among the selected strains, H1-39 mutant had better fermentability at 4$0^{\circ}C$ and 43$^{\circ}C$ from different concentrations of glucose. H1-39 and H1-23 mutants yielded more than 70% of the theoretical ethanol yield in 4 and 8% mixed sugars at above 4$0^{\circ}C$, which was 5-11% higher than those by original strain. Especially, H1-39 mutant had better fermentability in 4% mixed sugar. It showed 78.5% of the theoretical yield at 4$0^{\circ}C$ and 72.2% of the theoretical yield at 43$^{\circ}C$. On the other hand, theoretical yield of ethanol by H1-39 mutant in 8% mixed sugar at 4$0^{\circ}C$ and 43$^{\circ}C$ were 75.2% and 70.2%, respectively. Theses values increased up to 7-11% as compared to those by orginal strain. By the simultaneous saccharification and fermentation, ethanol production by H1-39 mutant increased up to more than 23% as compared to that by original strain.
Park, In-Woo;Hwang, Gye-Soon;Hong, Young-Ki;Bae, Han-Soo;Bae, Kie-Seo
Textile Coloration and Finishing
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v.21
no.1
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pp.38-45
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2009
First of all, the properties imparted to PET fabrics are resistance to and recovery from creasing or wrinkling when wet or dry; high resistance to stretch in the filament yarns but not in the staple; high abrasion resistance; good texture and appearance; resistance to heat ageing; good chemical resistance and good resistance, behind glass, to sunlight. But, the low moisture regain of PET fabric conduces to static troubles in textile processing. Furthermore, garments made from PET may, during wear, develop electric charges which attract to the fabric particles of soil(dirt, swarf, dust) flying in the air, so that the cuffs of shirts, for example, become soiled quickly and are not easily laundered clean. The sericin constitutes 25$\sim$30% of silk protein and surrounds the fibroin fiber with sticky layer that supports the formation of a cocoon. The useful biochemical properties of sericin protein are oxidation resistant, antibacterial, UV resistant, hydrophilic property, and good affinity with hydrophobic material. These properties can be used as an improving reagent or a coating agent for natural and synthetic fibers, fabrics, and other intermediate products. The sericin is also applied to cross-link, and can be blended with other materials. In this study, we modified the surface of PET fabric by mixture of sericin finishing agent; sericin, polyuretane binder and 1,2,3,4-butanetetracarboxylic acid (BTCA) cross-link agent. Also, we investigated the finshing effect; moisture regain, stiffness, handle, drape and electrostatic. The moisture regain of PET fabric treated with sericin finishing agent was higher than that of untreated PET fabric. As a result of evaluating influence about handle of PET fabrics treated with sericin finishing agent, it was confirmed that the sericin finishing agent could be use as a linen like finishing agent.
The purpose of this study is to investigate the dyeability, and the hand of soybean/cotton blended fabric after dyeing with natural and synthetic dyes. Soybean/cotton blended fabrics dyed with extracted solution from turmeric, sappan wood, gardenia and synthetic dyes(weak-acid dyes, reactive dyes, direct dyes). The hand value of soybean/cotton blended fabrics dyed with 6 different dyes was measured using Kawabata Evaluation System. The results are as follows; 1. The K/S value of the soybean/cotton blended fabric dyed with sappan wood extracts was the highest. 2. The color fastness of the soybean/cotton blended fabric dyed with reactive dyes was excellent. The fastness to the light of the same fabric was much better than the other fabrics. 3. Linearity of load-extension and tensile energy of the soybean/cotton blended fabric dyed with sappan wood extracts showed very high. Shear stiffness of the soybean/cotton blended fabric dyed with weak-acid dyes was much higher than that of fabric of dyed with reactive dyes. Bending property of the fabrics dyed with natural colorants(sappan wood, gardenia) showed very high, but that the fabric dyed with reactive dyes was very poor. 4. In the primary hand value, stiffness and anti-drape stiffness of the fabric dyed with weak-acid dyes showed the highest. Fullness and softness of the fabric dyed with weak-acid dyes showed very low.
In human walking, muscle co-contraction which produces simultaneous activities of multiple muscles is important in motor control mechanism of the central nervous system. This study aims to understand positive and negative covariation mechanism of inter-muscle activities during walking. In this study, we measured electromyography (EMG) in leg muscles. To identify motor modules, we recored EMG from 4 leg muscles bilaterally (the tibialis anterior, medial gastrocnemius, rectus femoris and medial hamstring muscles) and performed non-negative matrix factorization (NMF) and principa component analysis (PCA). Then, we computed covariation values from various combinations between muscles or motor modules and used two-way repeated measures analysis of variance to identify significantly different covariation patterns between muscle combinations. As the results, we found significant differences between covariation values of muscle combinations (p < 0.05). muscle groups within the same motor modules produced the positive covariations. However, there were strong negative covariation between motor modules. There was negative covariation in all muscle combination. Stable inter-module negative covariation suggests that motor modules may be the control unit in the complex motor coordination.
Kim, Yong-Duck;Park, Eun-Hee;Yoo, Kwan-Soon;Lee, Seo-Hee;Yi, Hee-Seung;Hong, Young-Ki
Journal of the Korean Society of Fashion and Beauty
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v.2
no.1
s.1
/
pp.103-109
/
2004
It surveyed consumers between 20s and 60s to understand how often they wear ramie clothes and what they are dissatisfied with wearing ramie clothes. First, people who are older than 50 have more ramie clothes than people who are younger than 50. They purchased ramie clothes at a store of Korean traditional costumes(35.1%) and special sales shops including departments(33.8%). People older than 50 washed ramie clothes with hands in their houses. But people younger than 40 washed their ramie clothes in a laundry. Third, it surveyed what was their dissatisfaction with ramie clothes. They responded that the type and design is limited.(44.4%) There isn't a design for young people.(33.3%) In the survey of color and patterns, they responded that the colors are not classified for people of different ages.(57.7%) The others complained that the patterns are not enough.(22.5%) They are dissatisfied with ramie clothes as it is easy to have wrinkle and it isn't elastic.(66.7%) Fourth, it surveyed the tendency to purchase ramie clothes based on different four factors. The factor 1 is the tendency to have good quality. Factor 2 is the tendency of reluctant purchasing. Factor 3 is the tendency of variety of distribution routes. Factor 4 is the tendency of design.
Kim, SeongJin;Lee, YongKyung;Choi, Jaehyuck;Hong, YoungKi;Kim, JungSung
Journal of Biomedical Engineering Research
/
v.40
no.5
/
pp.158-164
/
2019
The interbody fusion cage used to replace the degenerative intervertebral disc is largely composed of titanium-based biomaterials and biopolymer materials such as PEEK. Titanium is characterized by osseointergration and biocompatibility, but it is posed that the phenomenon such as subsidence can occur due to high elastic modulus versus bone. On the other hand, PEEK can control the elastic modulus in a similar to bone, but there is a problem that the osseointegration is limited. The purpose of this study was to implement titanium material's stiffness similar to that of bone by applying cellular structure, which is able to change the stiffness. For this purpose, the cellular structure A (BD, Body Diagonal Shape) and structure B (QP, Quadral Pod Shape) with porosity of 50%, 60%, 70% were proposed and the reinforcement structure was suggested for efficient strength reinforcement and the stiffness of each model was evaluated. As a result, the stiffness was reduced by 69~93% compared with Ti6Al4V ELI material, and the stiffness most similar to cortical bone is calculated with the deviation of about 12% in the BD model with 60% porosity. In this study, the interbody fusion cage made of Ti6Al4V ELI material with stiffness similar to cortical bone was implementing by applying cellular structure. Through this, it is considered that the limitation of the metal biomaterial by the high elastic modulus may be alleviated.
Driving on irregular and inclined roads using agricultural machinery such as spraying machines or trucks in orchards causes farmer casualties associated with the overturning of agricultural machinery. In addition, the harm to agricultural workers caused by the excessive inhalation of the scattered pesticide frequently occurs during pest control processes. To address these problems, we introduced precision agricultural technology that could selectively spray pesticides only where the fruit is present by recognizing the presence or shape of the fruit in the orchard. In this paper, a 16-channel LIDAR (VLP-16) made of Velodyne was used to identify the shape of fruit trees. Solenoid valves were attached to the end parts of 12 nozzles of the orchard spraying machine for on/off control. The smart spraying machine implemented in this way was mounted on a vehicle capable of autonomous travel and performed selective control depending upon the shape of the fruit trees while traveling in the orchards. This is expected to significantly reduce the amounts of pesticides used in orchards and production costs.
Currently, in the field of spinal surgery around the world, various new technologies have been rapidly developed and applied to patients. The author believes that it is necessary to discuss whether these new technologies are being fully reviewed for efficacy and safety before being applied to patients. To consider this issue, the author analyzed the basic research data and clinical application process of the intradiscal electrothermal therapy, which was developed as a new technology for discogenic pain disease in the 2000s and has been widely used worldwide. As a result, it was found that this procedure has been performed on patients in a state where there is insufficient base research on efficacy and safety. The author judges that this case reveals an essential problem related to the clinical operation of new medical technologies in the field of spine surgery. Therefore, the author believes that in order to minimize the side effects that new medical technology in the field of spinal surgery may have on patients, more full-fledged basic research and higher clinical acceptance standards should be established.
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