Korean melon (Cucumis melo L.) is an environment in which most farming work can affect the increase in musculoskeletal diseases, and the stems are attracted to the ground in order to grow no-heating cultivation. In this study, growth and productivity were compared according to the type of high-bed. The narrower the surface area at the bottom of the high-bed, the faster the initial growth, which was advantageous. The bed is which the height if 70 cm, the surface temperature has risen due to the increase in direct solar radiation inflow since April, requiring side light blocking to block the inflow of solar radiation. In terms of fruit quality, the 200 cm width treatment had higher fruit sugar content and better hardness than the 160 cm treatment. From April to September, the total yield was 6.8 kg/plant of treatment A, 8.7 kg/plant of treatment B, 5.8 kg/plant of treatment C, treatment B mainly 50% higher than treatment C, and 27% higher than treatment A. Therefore, the bed form suitable for Korean melon high bed is 200 cm wide, 40 cm high between the surface and the bed, and the surface of the passage between the beds is 30cm high from the ground to the bed.
참외는 동북아시아 지역에서 대부분 재배되고 있고, 한국에 서 주로 생산되는 과일로서 단위면적당 수확량은 지속적으로 향상되고 있지만 재배방식은 토경재배에 국한되어 있기 때문 에 규모화, 생력화를 위한 수경재배 기술 개발이 필요하다. 본 연구에서는 보온부직포를 이용한 수경재배로 참외를 재배할 때 영양생장기 배양액 내 질산태질소 비율에 따른 참외 생육 의 변화를 확인했다. 배양액에서 질산태질소 비율이 증가할 수록 초장은 길어지고, 엽장, 엽폭, 절간장도 함께 증가하였다. 생육 30일차의 SPAD값은 질산태질소 비율이 증가할수록 감 소하였다. 질산태질소 비율에 낮을수록 암꽃 개화가 빨리 되 었고, 과실 성숙에서는 처리 간 차이가 없었다. 질산태질소 비 율에 따른 과실의 형태는 차이가 없었고, 경도는 질산태질소 의 비율이 낮을수록 높아 과실이 단단하였다. 3월에서 7월까 지 총 수확량은 KM3 5,650kg/10a, KM1 4,439kg/10a로 KM3가 27% 높았고 특히, 참외 가격이 높은 3월에서 5월까지 수량은 KM3가 KM1보다 36% 높았다. 따라서 12월 정식되 어 봄철부터 생산되는 참외의 수경재배에 적합한 질산태질소는 6.5-10me·L-1 수준으로 공급하는 것이 적당할 것으로 판 단되었다.
Technegas를 사용한 검사는 단순 확산 누적을 통해 폐 영상을 이미지화하기 때문에 검사를 마친 후에 검 사실이 오염될 수 있다. 따라서 방사선 작업 종사자와 검사를 기다리는 환자는 technegas 흡입으로 인한 내 부 피폭의 영향을 받게 된다. 이에 중력환기 전후의 시간경과에 따른 공간선량율 분포를 비교, 분석함에 따 라 방사선사, 의료진, 대기 환자의 피폭선량 저감화 방법을 모색하고자 한다. 중력환기 전후 환자의 호흡기 위치에서 거리별, 각도별로 공간선량율을 10분 동안 측정하고 평균값, 표준 편차 및 감소율을 계산하였다. 실험 결과, 중력 환기 전후 감소율은 최고 95.31%였고 가장 높은 감소율은 1 ∼ 3분 사이에서 나타났다. 중 력환기를 통해서 방사선 작업종사자, 대기환자, 환자 보호자 및 간호사의 피폭선량을 감소시킬 수 있다. 결 론적으로 중력환기를 통한 피폭선량 감소 결과는 방호 최적화를 이루는 역할을 할 것이며 ICRP 103에서 권고한 의료 피폭 저감화에 부합된다.
Background: The growth process of ginseng seedlings is very important in producing good quality ginseng. This study was carried out to investigate the effects of different microclimates on the growth characteristics of ginseng seedlings in a multi-layer bed facility.
Methods and Results: Ginseng seedlings were cultivated in a three-layer bed facility. The air temperatures on the first and second floors were similar, while that on the third floor was about 1 - 4℃ higher than that on the other floors. The vapor pressure deficit (VPD) was higher inside than on the outside of the facility, and that on third floor was the highest in the multi-layer bed system. The photosynthetic rate, chlorophyll fluorescence, and growth characteristics of ginseng seedlings did not significantly differ among the three floors. The yield of ginseng seedlings was the highest at 721 g/1.62 ㎡ on the first floor
Conclusions: It was found that microclimate plays an important role in growing ginseng seedlings in multi-layer bed facilities, and therefore proper environmental control is important. In addition, producing ginseng seedlings using multi-layer bed facilities is a technology that is expected to provide a way to overcome climate change and stabilize ginseng production.
방사선사는 일반촬영 시에 다양한 환자를 만나게 된다. 노령환자, 유아 등 몸이 불편한 환자를 검사하게 된다. 소규모의 병·의원에는 방사선사가 혼자 업무를 보는 경우가 자주 발생한다. 이러한 경우 방사선사의 두 손은 환자의 자세를 유지하는데 사용되어지기 때문에 촬영에 있어서 어려움을 느끼게 된다. 본 연구는 이러한 문제점을 극복하고자 진단용 방사선 발생 발판 스위치를 고안하여 실험하였다. 제작한 발판 스위치를 진단용 엑스선 촬영장치에 장착하여 조사선량 재현성 시험, kVp, mAs, 백분율평균오차와 같은 정량적 평가를 실시하였다. 결과적으로 발판 스위치 사용에 대한 정량적 평가는 조사선량 재현성 시험에서 변동계수가 0.05이하로 측정되었고 kVp 시험에서는 백분율 평균오차가 ± 10% 이내로 측정되었다. mAs 시험에서도 백분율 평균오차가 ± 20% 이내로 측정되었다. 이는 진단용 방사선 발생장치의 검사기준 범위에 모두 부합하여 사용상 문제점은 제시되지 않았다. 또한 현재 근무 중인 방사선사를 상대로 유용성에 관한 정성적 평가를 실시하였다. 결론적으로 발판스위치의 엑스선 발생효율의 정량적 평가에서는 실험된 검사가 엑스선 발생장치 장비 기준 범위에 부합하였으며 설문을 통한 평가에서도 먼저 병·의원에서 근무하는 방사선사를 상대로 발판 스위치를 사용한 이후 설문을 통해 발판 스위치에 대한 편리성과 활용성에 대해 설문 실시한 결과는 발판스위치 사용은 임상에서 많은 도움을 줄 수 있는 긍정적인 결과로 나타내었다. 그러므로 진단용 엑스선 촬영용 발판 스위치를 사용하면 방사선 기술자 작업의 신속성과 정확성을 효과적으로 향상 시킬 수 있으므로 의료 서비스 만족도를 높이는 데 효과적으로 사용할 수 있을 것이다.
Background : Ginseng (Panax ginseng C. A. Meyer) is a multi-year-cultivated plant that causes many insects and disease damage during the growing season. The Ginseng Rain-sheltered Shade House is one of the efficient cultivation techniques as reducing the damages caused by natural disaster such as blight, high temperature & humidity, dry, and heavy rain & snow. This study was conducted to investigate the growth characteristics of 4-years-old ginseng using rain-sheltered shade house suitable shading materials for the Gyeongsangbuk-do.
Methods and Results : The rain-sheltered shade house shading materials were PE film with layered polyethylene net 90%, Light diffusion film with layered polyethylene net 75%, blue-white duplicated film. In order to determine proper shading materials of the rain-sheltered shade house, ginseng growth characteristics such as plant length, stem diameter, leaf length, root length and root diameter were investigated at 4-years-old ginseng. As a result, the evaluations of aerial part growth by measurements were good in the following order: PE film + polyethylene net 90%, Blue-white duplicated film and light diffusion film + polyethylene net 75%. The evaluations of root weight by measurements were heavy in the following order: Blue-white duplicated film, PE film + polyethylene net 90% and light diffusion film + polyethylene net 75%. The net photosynthetic rate was higher in blue-white duplicated film than other shading materials treatments during growth season including summer high-temperature period.
Conclusion : In the 4-years-old ginseng cultivation in Gyeongsangbuk-do using the rain-sheltered shade house, aerial part growth in PE film + polyethylene net 90% was better than other shading materials. In addition, root weight in Blue-white duplicated film was heavier than other shading materials. It will be possible to know which shading material is the most suitable for Gyeongsangbuk-do area after further growth.
Background : Foliar fertilizer materials are used in the field of ginseng farming to enhance the growth of ginseng. The law for ginseng industry prohibits the use of chemical fertilizer as a material for growing ginseng, but in recent years, various organic materials derived from natural materials have been produced and used in farming sites. The purpose of this study was to investigate the effects of foliar fertilizer on the growth and soil properties of ginseng during continuous use.
Methods and Results : For the test materials, native seedlings were used and the amino acid solution, liquid silicate, microbial liquid and fermentation enzyme were treated from 2 to 5– year-old ginseng after transplantation. The test plots were carried out to 3 repetitions by randomized block design. The area of one plot was 3.24 ㎡. The treatments were foliar application three times at intervals of 10 days from the late of May when leaf development was completed. The chemical properties of each foliar fertilizer pH was the highest at 9.63 for liquid silicate and lowest at 5.85 for amino acids. Ammonium nitrate had the highest amino acid content (56 ㎎/ℓ). Phosphorus was the highest with 113.7 ㎎/ℓ of fermentation enzyme. As a result of foliar fertilization for 4-years up to 5-years of ginseng, the pH was similar in soil chemical properties. EC and nitrate nitrogen contents tended to be higher in foliar application than in non-treatment. In the photosynthesis of ginseng, fermentation enzyme and microbial treatment tended to be high. Thickness of ginseng leaf was the thickest in microbial treatment. Microbial treatment was the highest in the underground part. Soil chemical properties were also affected but there was no significant change to inhibit the growth of ginseng.
Conclusion : The treatments of the foliar fertilizer were more effective than the no treatment on the growth of ginseng. Among the foliar fertilizers distributed on the market, those derived from natural products can be used in ginseng cultivation.
Background : The chlorophyll fluorescence imaging as non-destructive imaging methods have been used widely for efficiently early detection of plant responses to various stresses. The information from images acquired from different condition has the potential to generate specific signatures for particular stresses. Light-energy absorbed by plants is distributed over three competing processes: photosynthesis, thermal dissipation and chlorophyll fluorescence emission. An increase in Chl-FI thus implies a decrease in photosynthesis. The stresses in growing stage will change the efficacy of photosynthesis. As a example, Chl-FI of plant infections was carried out previously for a number of different viral and fungal plant–pathogen systems. Therefore, image can be used for differentiation of various stress index.
Methods and results : 2-years-old ginseng plants were transplanted to plastic pots and each stress factors were treated. The stress factors used in this study were high temperature, low temperature, fungicide, and fungal pathogen. High temperature stress was induced by placing pots inside incubator adjusted at 35℃. For treatment of low temperature stress, ginseng plants were stored at 5℃ refrigerator for 5 minutes. Pathogen stress was carried to inoculate mycelial disk. Alternaria panax was inoculated potato-dextrose-medium and cultured for 10 days at 25℃. Mycelial disk obtained from cultured plate were placed on the one leaf of ginseng. Azoxystrobin wp was diluted 500, 1,000 times in tap water and sprayed to ginseng plants. Chlorophyll fluorescence image was acquired from each plant that stress treated and analyzed with sigma plot software.
Conclusion : Important value, Fv/Fm (maximum efficiency of photosystem II), Fp (peak fluorescence during the initial phase of the operating efficiency of the Kautsky effect), NPQ-lss (steady-state, non-photochemical), etc., were significantly changed by variable stress index. But it was impossible to differentiate kind of stress by acquired value.
국가직무능력표준 NCS(National Competency Standard)은 고등직업교육기관인 전문대학을 기반으로 하여 시행되어 지고 있다. 전문대학은 학생들이 졸업과 동시에 근무현장에서 최대한의 역량을 수행할 수 있도록 지식. 기술. 태도라는 3가지의 영역을 편성하여 집중적인 교육을 하고 있다. 전문대학 중에서 보건계열은 의료기사 영역을 포함한 다양한 의료 인력을 양성하고 있다. 특별하게도 의료기사 및 의료 분야들은 반드시 면허를 필수적으로 취득해야 의료분야에서 근무를 할 수 있다. 따라서 방사선사면허 국가시험의 합격은 취업의 전제조건이다. 이번연구에서는 방사선사면허 국가시험을 앞둔 D 전문대학 방사선과 3학년 학생들 (229명)의 보건법규 점수를 주차별로 분석하였다. 이러한 주차별 점수획득은 학생들의 개개인별 학습 성취 패턴을 분석할 수 있다. 더 나아가 이러한 결과는 학생들 개인별 방사선사면허 국가시험 합격의 가·부를 예측할 수 있게 해준다.
Background : Multi-stage system were used for development of stable ginseng seedling production. Bed-soil for the production of ginseng seedling in the multi-stage was similar to the conventional bed-soil but the weight of the bed-soil was high and the efficiency of operation in the multi-stage was lowered. In this study, the yield and quality of ginseng seedling was investigated by commercial lightweight bed-soil in the multi-stage facilities, and the possibility of application of lightweight bed-soil.
Methods and Results : This study was carried out by a 3-stage cultivation bed using a 50 ㎜ sandwich panel in a house shaded with 85% light-shielding net. The width of the cultivating bed was 90 ㎝, the height was 30 ㎝, and the height of each stage was 50 ㎝. In the first and second stages, the amount of light was insufficient, so two rows of fluorescent lamps were installed and the third stage was used natural light. Ginseng seeds were sown on the cultivating bed in November 2016, and ginseng seeds (native species) were sown with a density of 3 × 3 ㎝. The chemical properties of lightweight bed-soil were pH 5.11, and EC 0.76 dS/m. It was suitable for ginseng seedling cultivation. The bulk density was 0.21 Mg/㎥. Among the growth characteristics of the ginseng seedlings, the root length was the longest as 17.0 ㎝ in the conventional cultivation, and the second stage was the longest at 14.8 ㎝ in the multi-stage facility. The root diameter in the multi-stage system was 0.2 - 0.4 ㎜ thicker than the conventional one. Root weights of lightweight bed-soil were similar to those of conventional cultivation. The yield of ginseng seedlings in the 1 st, 2 nd and 3 rd stage was 721.3 g, 692.0 g, and 394.7 g/1.62 ㎡ respectively.
Conclusion : In the production of ginseng seedling using multi-stage facilities, the commercial bed-soil was better than the conventional bed-soil (light, workability). The differences in yields in the multi-stage facilities can be overcome if the growth management such as moisture management is more systematic. If we develop the technology to reuse the bed-soil after harvesting the ginseng seedling, it will be economical and able to supply to farmers.
Background : Ginseng is becoming depleted of virgin cultivation area due to the problem of replant failure. Ginseng farmers have become more burdensome in operating expense because they are more likely to go out to other cities in search of virgin cultivation area. In addition, the quality and yield of ginseng cultivated in one place for many years depend on the rapidly changing climate every year. The purpose of this study was to develop a method for continuous production of ginseng in a facility by solving the problems of replant failure and investigating basic soil composition and growth characteristics of ginseng for 2 - 6 years. Methods and Results : This study was carried out in a 90 ㎝ wide, 50cm deep and 22 m long bed made of sandwich panels in a 90% shaded facility for ginseng cultivation. In the lower part of the bed, a 100 ㎜ pipe for drainage and steam sterilization was installed, and the pearlite was filled at a height of 100 ㎜ as a drainage material. The soil for ginseng cultivation was put into the bed. Soil composition was tested in five combinations including virgin soil, yokto, peat moss, pearlite, and vermiculite with different composition ratios including control. The native seedlings were transplanted and grown from 2 years to 6 years. In the growth characteristics and yield of ginseng, the best treatments were virgin soil 55%, yokto 10%, Peatmoss 25%, Perlite 5% and 5% vermiculite. Also, the bulk density was reduced by 30% compared to the control. Soil pH and EC tended to increase slightly during all treatments. In the ginsenoside analysis, there were no unusual results for the soil composition and they were almost similar. Conclusion : As a method to continuously grow ginseng in the facility, we tried to grow ginseng by filling the soil in the bed. Soil composition should be within the range of chemistry and physics suitable for cultivation of ginseng, and it is necessary to analyze the economy and reduce the operating expense. In the future, researches on soil disinfection and nutrient management methods for continuous use should be continued.
Background : This study was carried out to investigate the changes of the growth of ginseng in the house when the light intensity was increased. Three shading screens were used: shading materials 85%, 77%, and 55% net. Changes in the growth of ginseng and the quality of red ginseng were investigated in these shading materials. Methods and Results : The test site was a three house constructed in the Punggi Ginseng Research Institute, Gyeongsangbuk - do Agricultural Research and Extension Services. The entrance to the house is located east-west, and the structure is double steel frame. The inside of the house is covered with vinyl, and 85%, 75%, 55% shading net is installed for each shading treatment. From the end of June to the middle of August, a 55% shading net was double covered to reduce the high temperature damage. The test material was grafted on March 20, 2013. The management of the irrigation water was from 30 kPa to 10 kPa. The aM-21A data log of Wise Sensing Co., Ltd. was used to measure the cultivation environment in the house. Photosynthesis was measured using Lci Compact Photosyntheisi System, adc, UK. Surveys were carried out in accordance with the inspection standards of the Rural Development Administration. The data were analyzed statistically using SPSS. Conclusion : The summer temperature of shading method was more than 2℃ higher than other treatments in 55% shading treatment and more than 6℃ in autumn. The light intensity of 90 μmol/s/㎡ was lower than that of August, and the light intensity was higher than 400 μmol at the end of September. The 55% shading method showed twice as much light in summer and more than four times in autumn. The amount of photosynthesis increased due to the light intensity of 55% treatment, especially in the morning of May. In the light of shading method, 85% light shading method showed the best growth at 2 years, but 55% at 3 years and more, and 5 years at 5 years.
최근 동위원소를 이용한 뼈 스캔 (Bone Scan)검사 후 골밀도 (BMD; Bone Mineral Density)검사를 당일검사로 병행한 경우 이로 인한 골밀도 측정값에 오차 발생 가능성이 제기되고 있으나 방사성의약품 표지화합물 투여 후 이중에너지 X선을 이용한 골밀도 측정값 변화에 대한 임상적 자료가 미비하여 핵의학 체내 검사 후 당일 골다공증 검사의 측정값에 대한 논란의 소지가 있다. 따라서 동위원소 표지화합물인 99mTc-MDP가 골밀도 측정값에 영향을 미치는지 임상적 측면에서 실험하였다. 실험에 참가한 대상자의 평균 나이는 35.17±9.45세로 실험 대상자 17명 중 대사성 질환과 골밀도 측정에 영향을 줄 수 있는 허리뼈 압박골절 및 몸쪽 넓적다리뼈 골절이 있는 자를 제외한 12명 중 정상 골밀도 T-scores〉-1.0의 환자 6명을 대상으로 99mTc-MDP 투여 전·후 측정값을 분석한 결과 허리뼈에서 전·후 각각 평균 0.975±0.084 g/cm², 0.966±0.078 g/cm²으로 0.009 g/cm² 증가, 우측 몸쪽 넓적다리뼈에서는 전·후 각각 평균 0.909±0.078 g/cm², 0.913±0.086 g/cm²으로 0.004 g/cm² 감소, 좌측 몸쪽 넓적다리뼈에서는 각각 평균 0.887±0.099 g/cm², 0.881±0.103 g/cm²으로 0.007 g/cm²의 증가를 보여 몸쪽 넓적다리뼈 보다 허리뼈에서 더 큰 골밀도 변화를 보여주었다. 그러나 허리뼈와 몸쪽 넓적다리뼈 전체에서 전·후 변화 평균은 0.0038±0.014 g/cm²으로 골밀도 측정값에 유의한 영향이 없음을 알 수 있으며, 또한 두 실험간 전체 상관계수는 0.987으로 방사성동위원소 표지화합물인 99mTc-MDP 투여가 골밀도 측정값에 영향을 주지 않았다. 따라서 140 keV의 감마선 에너지를 방출하는 테크네슘 표지화합물을 이용한 뼈 스캔검사 후 골밀도 측정값에 유의한 영향을 미치지 않음을 확인하였다. 그러나 핵의학적 체내검사와 골다공증 검사를 당일로 검사함으로 인한 환자의 피폭을 고려한다면 시간 간격을 두고 검사를 시행하는 것이 좋을 것으로 사료된다.
엑스선을 이용한 방사선검사에서 전리함 방식의 면적선량계를 이용하여 흡수선량과 면적선량을 측정하고, 교정계수를 측정하였다. 간접선량측정법은 엑스선발생장치의 방사부에 검출기를 설치, 측정치를 조사부위에서의 선량으로 산출하였다. 교정계수를 산출하기 위해 사용된 기기는 엑스선 발생장치로 (DK-550R/F, DongKang Medical Co. Ltd., Seoul, Korea)를 이용하였고, 교정계수를 위한 교정방법은 면적선량계와 교정선량계를 연결하고 관전압 70 kV, 관전류 500 mA, 0.158 sec로 79 mAs 조건을 이용하였다. 면적선량계 (PD –8100, Toreck Co. Ltd. Japan)을 이용하였고, 기준선량계는 반도체검출기 (DOSIMAX plus A, Scanditronix, Wellhöfer, Germany)를 이용하였다. 면적선량계를 전리함의 다중조리개 전면에 설치 후 정확한 선량 측정을 위해 기준선량계를 이용하여 선량계의 교정계수를 구하였다. 실험적으로 노출하여 측정된 값과 교정선량계에서 나온 값에 각각의 교정계수를 곱하여 산출하였다. 교정계수는 1.045로 산출되었다. 전리함 방식의 면적선량계에서 관전압에 따른 교정계수를 산출하기 위해 흡수선량과 면적선량을 구하여 교정상수를 산출하였다. 면적선량계의 교정계수를 구하여 정확한 면적선량을 산출하여야 한다.
방사선장해 극복을 위한 조직공학실험에서는 다양한 실험방법이 존재한다. 그중에서도 방사선 장해모델을 구현함에 있어서 쥐는 가장 많이 사용되는 실험동물이다. 이번 실험에서는 쥐 피부를 벗긴 후 일정한 두께로 만든 후에 피부 두께에 따른 방사선량을 측정하였다. 또한 쥐의 피부 두께에 따른 방사선 흡수선량을 유추해 날수 있는 수식을 도식화 하였다. 결론적으로 이러한 수식을 적용한다면 방사선장해극복을 위한 조직공학 연구에서 사용하는 다양한 지지체삽입시에 지지체가 받을 수 있는 방사선량의 정도를 유추해 낼 수 있으며 이것을 통하여 쥐 피부두께 피하에 관한 체내 (in-vitro)실험모델 구현 시 방사선량의 정보를 제공하고자 한다. 따라서 이번 연구의 결과를 기반으로 사용한다면 방사선이 노출된 쥐의 피하조직 체내 (in-vitro) 조직공학 실험에서 효과적으로 사용 될 수 있을 것이다.
Background : The area of ginseng cultivation has nearly exhausted in the main ginseng growing area in Korea but virgin fields need for ginseng cultivation due to continuous cropping injury. To count for the decrease of the virgin fields of ginseng cultivation, technical improvement to increase, or maintain the amount of harvest are necessary in ginseng cultivation. The Ginseng Rain-sheltered Shade House is one of the efficient cultivation techniques as reducing the damages caused by natural disaster such as blight, high temperature & humidity, dry, and heavy rain & snow. However a soil description needs to be developed to reduce the period of re-cultivation because ginseng has to be cultivated at the only one ginseng rain-sheltered house without soil or cultivation change. Methods and Results : This study was carried out in the ginseng rain-sheltered house where ginseng had cultivated and harvested one time. Each section of Cultivation of sudan grass+flooding, rice straw+flooding, and flooding was covered with vinyl and then, all areas were solarized through the summer season. The soil temperature was inspected at 5cm, 10cm, 15cm, and 20cm below ground. As a result, the soil temperature of the place with vinyl covered and solarized was approached to 40℃ regularly during the period of high temperature in July and August. After the solarization, the inspection result of Cylindrocarpon destructans spore density checked by Real time PCR was that C. destructans spores were not found at the place where sudan glass+flooding and rice straw+flooding were used. However, the detected number of C. destructans spores in the inspection condition was roughly 9 at the soil samples from the fields which were flooded and solarized, and 33 at those from the repeatedly cultivated fields. The evaluations of aerial part growth by measurements were good in the following order: Sudan grass+flooding, rice straw+flooding, and flooding. Conclusion : The purpose of this study was to reduce the period of ginseng re-cultivation in a ginseng rain-sheltered shade house. The incidence rate of the pathogens distantly decreased by the treatments of sudan glass + flooding, rice straw+flooding, and solarization.