Nagoya University · 지구·행성과학
마사키 사노 교수의 연구실은 나무 고리의 산소 동위원소 비율(δ¹⁸O)을 활용해 동아시아 monsoon 지역의 수문기후 변화를 고분기 기록으로 복원하는 데 주력하고 있습니다. 특히 히말라야와 동남아시아의 다양한 수종을 대상으로 신뢰도 높은 나무고기록을 구축하고, 강수량, 습도, 가뭄 지수(PDSI) 등과의 상관관계를 분석하여 기후 변화의 역사적 패턴을 규명하고자 합니다. 또한 나무 성장량과 기후 요인 간의 상관관계를 분석함으로써 기후 모델링 및 기후 변화 영향 평가에 기여하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
A tree-ring δ 18 O chronology of Abies spectabilis from the Nepal Himalaya was established to study hydroclimate in the summer monsoon season over the past 223 years (ad 1778–2000). Response function analysis with ambient climatic records revealed that tree-ring δ 18 O was primarily controlled by the amount of precipitation and relative humidity during the monsoon season (June–September). Since tree-ring δ 18 O was simultaneously correlated with temperature, drought history in the monsoon season
We developed a 50‐year tree ring δ 18 O chronology for each of three tree species ( Juniperus indica , Larix griffithii , and Picea spinulosa ) using a total of 12 trees (four trees per species) from the Bhutan Himalaya. Despite originating from different species sampled at two different altitudes, the δ 18 O chronologies are highly correlated with one another ( r = 0.76–0.89). Response analyses reveal that tree ring δ 18 O values are controlled mainly by summer precipitation, irrespective of sp
A tree ring δ 18 O chronology is developed for the past 300 years (1705–2004) using 6 cypress trees from northern Vietnam to reconstruct long‐term hydroclimatic variations in the summer monsoon season. To the best of our knowledge, this is the first well‐replicated tree ring δ 18 O chronology from Southeast Asia, as well as the longest yet produced. Response analyses reveal that tree ring δ 18 O is significantly correlated with temperature, precipitation, and the Palmer Drought Severity Index (P
The oxygen isotope ratio (δ18O) of tree-ring cellulose is known to be a reliable proxy for hydroclimate in monsoon Asia. However, tree-ring δ18O data are still spatially and temporally limited, so a denser tree-ring network in Asia is required to better understand the dynamics of the monsoon circulation and its past variability. Here, we present a 242-year δ18O chronology calculated from five silver fir trees collected in the western (Indian) Himalaya, a region located on the northwestern periph
We developed a 378-year tree-ring-width chronology based on 110 core samples from 55 individual trees of Larix gmelinii (Rupr.) Rupr. growing in a wide open forest close to the tree line in the Kronotsky National Park. Reflecting strong climatic control over tree growth not only within the study area but also more extensively over central Kamchatka, our chronology was well correlated with those from other larch sites. Response analysis with 10-day mean temperature revealed that the ring width wa
Activity time allocations and diets of males and females in the pinguipedid fish Parapercis polyophthalma, which has haremic social groups dominated by single territorial males, were examined in shallow sandy areas at Iriomote Island, one of the Ryukyu Islands of Japan. During the day, males spent much less time foraging and more time engaging in social activities than did females, and actively patrolled the borders of their territories. Females, on the other hand, allocated most of their time t
Trees growing in the lowlands of Japan are not climatically stressed; consequently, ring-width patterns are weakly correlated between different trees. Therefore, dendrochronological studies in Japan based on ring widths rely largely on climatically stressed conifers growing in mountainous regions and/or at higher latitudes. In contrast, oxygen isotope ratios (δ18O) are well-matched between trees, irrespective of climatic stress, indicating that the huge amounts of wood excavated in Japan could p
ABSTRACT We present two new millennium-long tree-ring oxygen isotope chronologies for central and northern Japan, based on 9693 annually resolved measurements of tree-ring oxygen isotopes from 39 unearthed samples consisting mainly of Japanese cedar ( Cryptomeria japonica ). These chronologies were developed through cross-dating of tree-ring widths and δ 18 O data from multiple samples covering the periods 2349–1009 BCE (1341 yr) and 1412–466 BCE (947 yr) for central and northern Japan, respecti
AbstractWe have developed a 247-year ring-width chronology of Betura ermanii Cham. growing in an open canopy forest close to the tree line at a coastal site in southern Kamchatka. Climatic response analyses revealed that the ring width was primarily controlled by July–August temperature. The regression models that we used for statistical reconstruction passed the stringent calibration–verification tests used in dendroclimatology, resulting in the first quality-controlled tree-ring reconstruction