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| 1 | Effects of climate change on potential habitats of the cold temperate coniferous forest in Yunnan province, southwestern China显示文摘We built a classification tree(CT) model to estimate climatic factors controlling the cold temperate coniferous forest(CTCF) distributions in Yunnan province and to predict its potential habitats under the current and future climates, using seven climate change scenarios, projected over the years of 2070-2099. The accurate CT model on CTCFs showed that minimum temperature of coldest month(TMW) was the overwhelmingly potent factor among the six climate variables. The areas of TMW<-4.05 were suitable habitats of CTCF, and the areas of -1.35 < TMW were non-habitats, where temperate conifer and broad-leaved mixed forests(TCBLFs) were distribute in lower elevation, bordering on the CTCF. Dominant species of Abies, Picea, and Larix in the CTCFs, are more tolerant to winter coldness than Tsuga and broad-leaved trees including deciduous broad-leaved Acer and Betula, evergreen broadleaved Cyclobalanopsis and Lithocarpus in TCBLFs. Winter coldness may actually limit the cool-side distributions of TCBLFs in the areas between -1.35°C and -4.05°C, and the warm-side distributions of CTCFs may be controlled by competition to the species of TCBLFs. Under future climate scenarios, the vulnerable area, where current potential(suitable + marginal) habitats(80,749 km^2) shift to nonhabitats, was predicted to decrease to 55.91%(45,053 km^2) of the current area. Inferring from the current vegetation distribution pattern, TCBLFs will replace declining CTCFs. Vulnerable areas predicted by models are important in determining priority of ecosystem conservation. | LIWang-jun PENG Ming-chun Motoki HIGA Nobuyuki TANAKA Tetsuya MATSUI Cindy Q. TANG OU Xiao-kun ZHOU Rui-wu WANG Chong-yun YAN Hai-zhong | 2016 | Journal of Mountain Science2016,13,8: | 5 |
| 2 | Interventional oncology: new options for interstitial treatments and intravascular approaches显示文摘 | Osamu Matsui Shiro Miyayama Jyun-ichiro Sanada Satoshi Kobayashi Wataru Khoda Tetsuya Minami Kazuto Kozaka Toshifumi Gabata | 2010 | Journal of Hepato-Biliary-Pancreatic Sciences2010,,4: | 2 |
| 3 | Guidelines for gastroenterological endoscopy in patients undergoing antithrombotic treatment显示文摘 | Kazuma Fujimoto Mitsuhiro Fujishiro Mototsugu Kato Kazuhide Higuchi Ryuichi Iwakiri Choitsu Sakamoto Shinichiro Uchiyama Atsunori Kashiwagi Hisao Ogawa Kazunari Murakami Tetsuya Mine Junji Yoshino Yoshikazu Kinoshita Masao Ichinose Toshiyuki Matsui | 2014 | Digestive Endoscopy2014,,: | 2 |
| 4 | Assessing the potential impacts of climate change on the alpine habitat suitability of Japanese stone pine (Pinus pumila)显示文摘 | Masahiro Horikawa Ikutaro Tsuyama Tetsuya Matsui Yuji Kominami Nobuyuki Tanaka | 2009 | Landscape Ecology2009,,1: | 1 |
| 5 | Hepatic pseudolymphoma: imaging–pathologic correlation with special reference to hemodynamic analysis显示文摘 | Kotaro Yoshida Satoshi Kobayashi Osamu Matsui Toshifumi Gabata Junichiro Sanada Wataru Koda Tetsuya Minami Yasuji Ryu Kazuto Kozaka Azusa Kitao | 2013 | Abdominal Imaging2013,,6: | 1 |
| 6 | Long-Term Effect of TMD on Vibration Control of An MDOF Offshore Fixed Platform显示文摘A three-dimensional fixed offshore platform in deep water modeled by the finite element method is studied in this paper. Analysis of the dynamic response of the MDOF structure is realized taking the non-linearity of the wave drag force and the wave-structure interaction into account. The structural response statistics, which have Gaussian distributions, are used to evaluate the vibration effect of the structure without TMD and with TMD. And an optimal method to design TMD controlling the first mode of the multi-mode structure is proposed. Moreover, the probabilities of occurrence of sea states at the platform site are considered for prediction of the long-term effect of a TMD. Simulation results demonstrate that the long-term effect of a well-designed TMD is good and the practical use is possible due to the good stability of its optimal parameters under different sea states. | 石湘 Tetsuya MATSUI WU Minger | 2003 | China Ocean Engineering2003,18,4: | 1 |
| 7 | Intranodular signal intensity analysis of hypovascular high-risk borderline lesions of HCC that illustrate multi-step hepatocarcinogenesis within the nodule on Gd–EOB–DTPA-enhanced MRI显示文摘 | Satoshi Kobayashi Osamu Matsui Toshifumi Gabata Wataru Koda Tetsuya Minami Yasuji Ryu Kazuto Kozaka Azusa Kitao | 2012 | European Journal of Radiology2012,,12: | 1 |
| 8 | Preoperative Embolization Significantly Decreases Intraoperative Blood Loss During Palliative Surgery for Spinal Metastasis显示文摘 | Kato Satoshi Murakami Hideki Minami Tetsuya Demura Satoru Yoshioka Katsuhito Matsui Osamu Tsuchiya Hiroyuki | 2012 | EN2012,,: | 1 |
| 9 | Detection of denervated but viable myocardium in cardiac sarcoidosis with I-123 MIBG and TI-201 SPECT imaging显示文摘 | Shinro Matsuo Yasuyuki Nakamura Toshiki Matsui Tetsuya Matsumoto Masahiko Kinoshita | 2001 | Annals of Nuclear Medicine2001,,4: | 1 |
| 10 | Gender differences in cerebral glucose metabolism: a PET study显示文摘 | Takashi Kawachi Kazunari Ishii Setsu Sakamoto Mieko Matsui Tetsuya Mori Masahiro Sasaki | 2002 | Journal of the Neurological Sciences2002,,: | 1 |
| 11 | Forest characteristics,population structure and growth trends of threatened relict Pseudotsuga forrestii in China显示文摘Pseudotsuga forrestii is a relict evergreen coniferous tree species in Pinaceae endemic to China.P.forrestii tree numbers have greatly decreased due to deforestation,over-utilization and habitat degradation.Here we clarify P.forrestii community types,structure,species diversity,seedling recruitments and growth trends.We identified four P.forrestii community types:(1)Pseudotsuga forrestii-Quercus guyavifolia-Acer davidii evergreen coniferous and broad-leaved mixed forest;(2)Pseudotsuga forrestii-Pinus yunnanensis-Quercus guyavifolia evergreen coniferous and broad-leaved mixed forest;(3)Pseudotsuga forrestii evergreen coniferous forest;(4)Pseudotsuga forrestii-Abies georgei var.smithii evergreen coniferous forest.P.forrestii forests are characterized by both warm temperate and temperate affinities.Simpson diversity,Pielou evenness,Shannon-Wiener diversity indices ranged from 0.75 to 0.76,0.74-0.81,and 1.62-1.93,respectively,with no significant differences among the four forest types.The forest stratification was multilayered.The canopy layer was generally 10-25 m tall,with the emergent layer reached 25-42 m.DBH and age structures of P.forrestii showed multimodal distributions.Its maximum age P.forrestii was 570 years with a DBH of 143 cm.The growth of annual ring width of P.forrestii was slow,and generally decreased with age,whereas the basal area at the breast height increased with age.Established seedlings/saplings were mainly found in unstable micro-habitats.Regeneration of P.forrestii depends on moderate natural disturbances.Finally,we provide recommendations for P.forrestii conservation. | Cindy Q.Tang Shi-Qian Yao Peng-Bin Han Jian-Ran Wen Shuaifeng Li Ming-Chun Peng Chong-Yun Wang Tetsuya Matsui Yong-Ping Li Shan Lu Yuan He | 2023 | Plant Diversity2023,45,4: | 0 |