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21.
为进一步揭示紫外辐射的变化规律,更好地为生产和人们的生活服务,基于锡林浩特国家气候观象台2007—2012年太阳紫外辐射观测资料,运用数理统计学方法与SPSS 11.5软件,分析了锡林浩特地区不同云况条件下太阳紫外辐射规律及与气象要素的相互关系。结果表明:太阳紫外辐射存在明显的日、季、年变化规律。一日内早晚小,中午大。一年内最高值出现在6—8月,最低值出现在11—12月。且与太阳总辐射、光合有效辐射、空气温度、空气湿度、地温0~5 cm存在较显著的相关性。目前锡林浩特地区紫外辐射强度(UV-B)1—3、10—12月最大值范围分别为0.20~1.91、0.13~1.43 W/m~2,低于人和动物的安全标准2 W/m~2,4—9月可出现最大值范围为2.02~3.39 W/m~2,容易对人和动物造成威胁和伤害。 相似文献
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古河洛地区,即黄河与洛水交汇之流域,远古及夏商周先民在这片中华民族的中原腹地开创灿烂农业文明的同时,开创了领先世界的历法文明。他们以卓越的智慧造就了天象历法、干支纪日和四分历法,以及24节气历法,极大地推动了社会的进步与发展。随着河洛文明不断向域外扩展,气象历法也紧跟民族融合的步伐传入台湾地区,在该地区生根生长,发挥着其独特的动能。台湾历法文明根在河洛。 相似文献
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为了探讨玉米不同自交系对UV-B辐射增强的响应,在摸拟光照培养条件下,研究了增强UV-B辐射对玉米不同自交系气体交换参数的影响。结果表明,五叶期UV-B辐射处理6 d后,供试的48个自交系中近一半以上材料的幼苗叶片光合速率、气孔导度和蒸腾速率显著降低10%以上,其材料比例分别为64.6%,47.9%,54.2%;而有62.5%的材料胞间CO2浓度表现为显著增加;相关分析发现,气孔导度与蒸腾速率对UV-B辐射增强的响应值间存在极显著正相关关系;根据气体交换参数对UV-B辐射增强的响应程度将48个材料分成6类,其中对增强UV-B辐射反应比较敏感的材料和能够忍耐UV-B辐射增强的材料均占12.5%。说明玉米不同自交系幼苗叶片气体交换参数对UV-B辐射增强反应敏感程度具有显著的基因型差异,从中能够筛选出对UV-B辐射增强反应敏感和有忍耐能力的材料。 相似文献
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高产棉花太阳辐射能利用率及干物质分配规律研究 总被引:6,自引:0,他引:6
通过对1988~1989年高产棉花栽培试验结果进行分析发现,棉花的太阳辐射利用率在叶面积系数小于2.0时随叶面积系数的增加而线性增加,大于2.0时增加变缓。从生育时间看,7月中旬前太阳辐射利用率指数上升,7月中旬至8月底相对稳定在1.2~1.4克/兆焦左右,9月以后又不同程度线性下降。生长季内子棉太阳辐射经济效率1988和1989年分别为0.14和0.15克/兆焦。收获指数与最大叶面积系数呈显著负相关;盛花期之前棉株各器官之间的同伸关系或明显,盛花期后器官的生长相互间无明显的确定性关系。如能调节密度与叶面积系数的关系,使得既提高5~6月的辐射能利用率,同时使7~8月叶面积系数维持在3.0~3.5的适宜范围内,9~10月群体又不早衰,则有利于获得高产。 相似文献
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INVITED REVIEW—IMAGE REGISTRATION IN VETERINARY RADIATION ONCOLOGY: INDICATIONS,IMPLICATIONS, AND FUTURE ADVANCES 下载免费PDF全文
Yang Feng Jessica Lawrence Kun Cheng Dean Montgomery Lisa Forrest Duncan B. Mclaren Stephen McLaughlin David J. Argyle William H. Nailon 《Veterinary radiology & ultrasound》2016,57(2):113-123
The field of veterinary radiation therapy (RT) has gained substantial momentum in recent decades with significant advances in conformal treatment planning, image‐guided radiation therapy (IGRT), and intensity‐modulated (IMRT) techniques. At the root of these advancements lie improvements in tumor imaging, image alignment (registration), target volume delineation, and identification of critical structures. Image registration has been widely used to combine information from multimodality images such as computerized tomography (CT), magnetic resonance imaging (MRI), and positron emission tomography (PET) to improve the accuracy of radiation delivery and reliably identify tumor‐bearing areas. Many different techniques have been applied in image registration. This review provides an overview of medical image registration in RT and its applications in veterinary oncology. A summary of the most commonly used approaches in human and veterinary medicine is presented along with their current use in IGRT and adaptive radiation therapy (ART). It is important to realize that registration does not guarantee that target volumes, such as the gross tumor volume (GTV), are correctly identified on the image being registered, as limitations unique to registration algorithms exist. Research involving novel registration frameworks for automatic segmentation of tumor volumes is ongoing and comparative oncology programs offer a unique opportunity to test the efficacy of proposed algorithms. 相似文献
27.
FEASIBILITY FOR USING HYPOFRACTIONATED STEREOTACTIC VOLUMETRIC MODULATED ARC RADIOTHERAPY (VMAT) WITH ADAPTIVE PLANNING FOR TREATMENT OF THYMOMA IN RABBITS: 15 CASES 下载免费PDF全文
Mario Dolera Luca Malfassi Giovanni Mazza Gaetano Urso Massimo Sala Silvia Marcarini Nancy Carrara Simone Pavesi Sara Finesso Michael S. Kent 《Veterinary radiology & ultrasound》2016,57(3):313-320
Thymoma is a relatively common tumor in rabbits. Treatment with surgery, radiation therapy, and chemotherapy alone or in combination has been reported with varying outcomes. Stereotactic volumetric modulated arc radiotherapy delivered in a hypofractionated manner allows high doses of radiation to be delivered to the target volume while allowing sparing of adjacent critical structures. This therapy is ideally suited for thymomas in rabbits given their size, the difficulty of multiple anesthesia episodes and the complexity of the radiotherapy plans required due to the tumor's proximity to the heart, lungs, and mediastinal structures. Fifteen rabbits with thymoma were prospectively recruited for this observational, single institution, single arm clinical study. All rabbits were imaged with both computed tomography (CT) and magnetic resonance imaging (MRI). A total dose of 40 Gy in six fractions was delivered using a single arc over an 11‐day period with repeat CT simulation done every other fraction for adaptive planning. Follow‐up evaluation was done through repeat CT and MRI imaging and revealed complete responses using the Response Evaluation Criteria in Solid Tumors (RECIST) criteria. Two rabbits had died at 618 and 718 days, 10 were alive and three were lost to follow‐up. Observed acute and late effects were graded according to the Veterinary Radiation Therapy Oncology Group (VRTOG) criteria and were found to be minimal. 相似文献
28.
针对我国内陆干旱区人工草地生产管理粗放及气候资源利用不充分等问题,探究合理的牧草种植与水氮供应模式,以充分挖掘区域牧草的生产潜力。采用3 a生(2018年播种)紫花苜蓿(简称‘苜蓿’)和无芒雀麦,分析种植模式(苜蓿与无芒雀麦混播,D1;无芒雀麦单播,D2)、施氮量(低氮量N1:60 kg·hm-2;高氮量N2:120 kg·hm-2)和灌水量(以灌水下限占田间持水量θf的百分比计,分枝期均充分灌水(75%~85%θf),现蕾和初花期轻度亏水W1:65%~75%θf、中度亏水W2:55%~65%θf、重度亏水W3:45%~55%θf,灌水上限均为85%θf)对牧草叶面积指数(LAI)、干物质累积量、累积截获光合有效辐射量(CIPAR)、辐射利用效率(RUE)、产量(Y)、耗水量(ETa)、水分利用效率(WUE)和氮肥偏生产力(PFPN)的影响。结果表明:(1)牧草LAI和... 相似文献
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Distribution Network Structure planning is a complex combinatorial optimization problem,which is difficult to solve properly by using traditional optimization methods.In order to solve this problem,Improved Immune Genetic Algorithm is introduced to the distribution network optimal planning. Improved Immune Genetic Algorithm draws into the immune diversity and antibody's density mechanism to maintain the individual's diversity and remains evolution algorithm's global stochastic searching ability,so it can promote diversity and the whole optimal-searching ability of genetic algorithm.The optimal module takes the minimum annual cost as its object,and the capacity and voltage drop of feeder and the radiation of distribution network as its restrictions.According to the require of radiation of distribution network,the spanning tree of the alternative network is taken as the initial solution to speed up the calculation.And the branch-exchange method is used in designing crossover operator and mutation operator to avoid the radiation checking and enhance the optimizing ability.This algorithm has been illustrated effectively by examples,at the same time,the calculation example demonstrates that,the algorithm has higher calculation speed than the traditional immune genetic algorithm. 相似文献