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Dive into the research topics where Hiroshi Momose is active.

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Featured researches published by Hiroshi Momose.


Ornithological Science | 2008

Current status of the Northern Goshawk Accipiter gentilis in Japan based on mitochondrial DNA

Shigeki Asai; Daisuke Akoshima; Yoshihiro Yamamoto; Yoshimitsu Shigeta; Masahiko Matsue; Hiroshi Momose

Abstract Although the Northern Goshawk Accipiter gentilis is not designated a threatened species in Japan, it is thought that its population once experienced a decrease. To evaluate the current status of the goshawk, we sequenced the mitochondrial DNA control region and determined its variation among individuals. Considering that part of the Japanese population migrates or moves seasonally, we divided the samples into two categories (breeding and non-breeding season, based on sampling dates) and then calculated indices of genetic diversity and statistics for each category. Among 145 samples, we found ten haplotypes, of which two were dominant in both frequency and range. Haplotype diversity and nucleotide diversity were 0.63±0.04SD and 0.0018±0.0014SD, respectively. Comparing this diversity with those of other species, we concluded that the status of the Northern Goshawk in Japan is neither urgent nor secure. Significant genetic distance was not detected between the breeding and non-breeding groups, thus we could find no evidence of seasonal movement. The long-term effective female population size was estimated at 3,000 to 30,000 individuals. A recent population decline was not detected from the mismatch distribution. Therefore, the past population decline of the goshawk may not have been very serious. Future studies should consider the genetic structure of goshawks that inhabit other areas near Japan.


Journal of The Japanese Institute of Landscape Architecture | 2004

Evaluation of Urban Natural Environment Using Habitat Prediction Models of the Great Tit as an Indicator Species

Hiroshi Momose; Hajime Ise; Hiroshi Hashimoto; Yukihiro Morimoto; Nobuo Fujiwara

A field census was conducted in 384 study meshes each with the size of approximately 500 by 500 meters. Number of great tits (Parus major) was recorded in each mesh. The results of the census showed that the great tits tended to use forested area in the breeding season and moved to river and urban areas in the non-breeding season. Using the same data, multiple regression models were constructed to predict the relative abundance of great tits from several environmental factors relating to land use and forested area read from 15m-grid satellite imagery taken by EOS Terra / ASTER sensor. One of the models explained more than sixty percent of the variation in great tit numbers. Utilization of the evaluation method such as this model in wide area land use and urban planning was discussed.


Environmental Systems Research | 2000

RESTORATION OF STREAM ENVIRONMENT NEAR A DAM LAKE AS HABITAT FOR STREAM-LIVING ANIMALS

Hiroshi Momose; Naomi Kibe; Shin-ichi Suda; Masaru Kono; Terutake Hayashi; Nobuo Fujiwara

ダム湖畔に整備した湧水汲み場と2つのビオトープ池をつなぐ2個所の水路で、水生生物のコドラート調査と両生類のセンサスを行った。一方の水路 (水路A) はU宇型の練石積みで単純な断面構造を持つが、他方 (水路B) は、内側の石の間に一部空隙を残すなど、 生物の生息に一定の配慮がなされており、 周囲の環境も樹林などが多い。両水路に実験区を設けて浮石を設置し、浮石設置の有無、 設置の前後、水路の違いによる水生生物の生息状況の違いを分析した。水路Aは浮石設置の有無に関わらず生物が少なく、時間の経過と共に生物が多様になる傾向も見られなかったが、水路Bでは浮石の設置により複数の種の個体数が増加し、時間と共に環境も多様となった。また、水路Bで流水性のカジカガエルの繁殖が確認された。これらの結果を踏まえ、ダム湖畔の水路整備の手法について若干の提案を行った。


Journal of the Japanese Society of Revegetation Technology | 1999

Vegetation on the Artificial Floating Island in Dam Lake

Naomi Kibe; Hiroshi Momose; Satoshi Funakubo; Nobuo Fujiwara

近年,ダ ム湖等の人工的な水域において,湖 岸推 移帯の自然環境の一部を代替的に創出するための手 法として,植 栽人工浮島が注目されている鋤。特 にダム湖の湖岸は,水 位変動の影響を受けるため, 自然湖沼と比較した場合湿地植生帯が発達しにくい ことが特徴 とされる2,3,5)。 こうした環境の特徴 は,動 物相にも影響を与えることが報告されてお り,藤 原ほか1)は,栃 木県の複数のダム湖での冬 季のカモ類の行動が休息利用に偏重し,採 餌利用が ほとんどない理由として,湿 地植生の欠如をあげて いる。また百瀬ほか7)は,ダ ム湖に設置 した植生 を有する人工浮島上で,鳥 類の営巣や休息行動が あったこと,そ して,鳥 類の営巣は発達 した抽水植 物群落が成立した人工浮島上で多く見られたことを 報告している。 このような報告から人工浮島は,ダ ム湖のような 環境の改善手法として有望なものと考えられるが, 浮島上に湿地植生を成立させる技術については確立


Journal of the Japanese Society of Revegetation Technology | 1999

Growth of 5 Aquatic Plant Species on Artificial Planting Materials

Shigeo Takemura; Naomi Kibe; Hiroshi Momose; Nobuo Fujiwara

植栽基盤上に水生植物を植栽した場合, 基盤の種類・水深・栄養条件などの要因が成長に与える影響を調べるため, 1999年7月~10月に, 屋外実験水路において, 水深・栄養条件を変えて, 4種類の異なる植栽基盤 (ヤシ繊維, 合成樹脂繊維, 木繊維, 赤玉土) を用いて5種の水生植物の生育実験を行った。その結果, すべての植栽基盤で水生植物の生育が確認され, 植栽基盤による成長の差は検出できなかった。また, 抽水・浮葉植物では, 貧栄養的な水質条件の場合に基盤に肥料を与えることで, 成長促進効果がみられた。一方, 沈水植物では逆に栄養塩や肥料を添加しない場合の方が生育良好であった。


Environmental Systems Research | 1998

Use of Different Types of Planted Floating Islands by Water Birds

Hiroshi Momose; Satoshi Funakubo; Naomi Kibe; Keigo Nakamura; Nobuo Fujiwara; Takashi Tanaka


Landscape Research Japan Online | 1999

湿地植生計画のための鳥類の潜在的生息地図化とシナリオ分析に関する研究(平成12年度 日本造園学会研究発表論文集(18))

Yoshiyuki Hioki; Hiroshi Momose; Yoshiaki Mizutani; Kenichi Matsubayashi; Akiko Suzuki; Bouyou Ohta


Environmental Systems Research | 1998

The Behavior and Habitat Selection of Wild Ducks Wintering in Dam Lakes

Nobuo Fujiwara; Hiroshi Momose; Masatoshi Tabata; Satoshi Funakubo; Mariko Handa; Takashi Tanaka


Landscape Research Japan Online | 2005

Factors Affecting the Number of Breeding Grey-faced Buzzard-Eagles Butastur indicus(PAPERS OF THE 23th SCIENTIFIC RESEARCH MEETING)

Hiroshi Momose; Mutsuyuki Ueta; Nobuo Fujiwara; Takuya Uchiyama; Takehiko Ishizaka; Koichi Morisaki; Masahiko Matsue


Journal of the Japanese Society of Revegetation Technology | 2002

Developing a vegetation map creation process using high-resolution satellite image data and mapping accuracy assessment.

Kenichi Matsubayashi; Jun Nemoto; Hiroshi Momose; Nobuo Fujiwara; Yoshiyuki Hioki

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Nobuo Fujiwara

Ministry of Construction

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Naomi Kibe

Ministry of Construction

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Takashi Tanaka

Ministry of Construction

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Daisuke Akoshima

Tokyo University of Agriculture

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Shigeki Asai

Yamashina Institute for Ornithology

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Shin-ichi Suda

Ministry of Construction

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Yoshimitsu Shigeta

Yamashina Institute for Ornithology

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