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A Spontaneous Case of the Reincarnation Type Showing Characteristics Similar to the Therapeutic Effects Observed in Past-Life Regression Therapy
<Past-life< memories are of two types: Memories recalled in past-life hypnotic regression therapy, in which subjects are usually adults, and memories possessed by subjects, usually children, in spontaneous cases which are called cases of the reincarnation type (CORTS) in the literature. One of the important differences between these two types of memories is the status of phobias and other anxieties related to the memories: In the former these problematic symptoms tend to be alleviated by recalling past-life memories whereas in the latter they go hand in hand with past-life memories from the beginning. These differences might suggest differences between these two types of memories in origin. In this article, I would like to report a <mixed< case, in which phobias and other anxieties apparently related to past-life memories of a case of the reincarnation type were alleviated by the subject\u27s talking about them with her mother
ハンノウ ネツブンカイガス クロマトグラフィー ニヨル ビセイブツチュウ ノ シボウサン セイブン ノ ジンソク ソセイ ブンセキ
微生物中の脂肪酸成分の一般的な分析法として,溶媒抽出や化学反応などの試料前処理を併用したクロマトグラフィー技術が汎用されている.しかしながら,この方法については,迅速性や簡便性の点で問題点が指摘されており,より実用的な分析手法の開発が渇望されている.こうした中で,筆者らの研究グループは,有機アルカリ共存下での反応熱分解ガスクロマトグラフィー(反応熱分解GC)の手法により,微生物中の脂肪酸成分の分子構造や化学組成を,試料前処理をほとんど用いずに精密かつ迅速に解析することを可能にしてきた.この方法では,試料中の脂肪酸成分を対応するメチル誘導体に瞬時に変換し,次いで,生じた脂肪酸メチル類をオンライン操作で高分解能GC測定することにより,脂肪酸組成の分析が行われる.ここでは,それらの研究例として,1) 微細藻類中の多価不飽和脂肪酸を含む全脂肪酸成分の迅速組成分析,2) 脂肪酸組成解析に基づく消毒薬耐性細菌の簡易判別,及び3) 細菌細胞内に蓄積された生分解性ポリエステルの共重合組成解析への応用を行った内容について解説する
Diurnal rhythm of petal growth in cut rose flower and approach towards the regulation of flower opening by light environment control.
一般に植物において,開花にリズムがあることは古くから良く知られている.例えばアサガオは暗くなってから(暗期開始から)一定の時間が経過すると一斉に開花する.つまり,夕方遅くまで明るい初夏では明け方に咲いていたアサガオも,夕方早く暗くなる秋口になると夜中に開花するようになる.一方バラは,明け方から一定時間のみに花弁が成長し,その後は翌朝までつぼみの成長を休止する.我々の研究により,このバラの花弁成長リズムは切り花においても観察され,また日長や光の波長に影響されることが明らかとなっている.花弁成長リズムと光刺激との関係を明らかにして花弁成長機構の理解を深めることは,光環境制御による開花調節技術の開発につながる.本稿ではバラ切り花の花弁成長リズムと光刺激との関係性,そして光による花弁成長制御の取り組みについて,著者らの研究により得られた知見を中心に解説する
Historical Change and Corporate Locational Trends in the Timber-Handling District of Nagoya Port
Wood has been an essential material in many endeavors since humanity\u27s earliest days. Although Japan is rich in forest resources, substantial amounts of wood are imported from abroad due to increased timber demand in the modern age. As a result, the Port of Nagoya has become well-known as a site handling large volumes of imported wood. This increased volume of imported wood, in turn, created the need for more lumber yard fields within the port area. In 1959, high tidal waves caused by the Ise Bay Typhoon swept much wood away from the lumber yard field and caused a great deal of damage to the houses and lives of the neighborhood. Therefore, a new timber-handling district was established on the west side of the harbor, and most of the businesses relocated to this site. Unfortunately, decreased domestic timber demand due to the 1973 oil shock caused the Port\u27s wood-handling volume to decrease. Timber companies that purchased land in the industrial district began to file motions to withdraw from the land. Lumber yard field utilization dropped, and some areas of the lumber yard field became landfill. Shipping and logistics companies gradually took over many sites from which timber companies withdrew. As a result, the nature of wood industrial park has significantly changed. The erosion of the timber-handling district, which had expanded while developing in tandem with the Nagoya, seems to strike an end to the historic role. The Port\u27s management association has thus accepted the need to consider these changes in the industrial structure of Nagoya region, and began to restructure the timber-handling district to suit the needs of the next generation
ヘイセイ 27ネンド キンダイカ サンギョウ イサン アイギ トンネルグン ドウブツ チョウサ ホウコクカイ
本講演記録は,文部科学省「地(知)の拠点整備事業」平成27年度地域振興教育研究経費を受けて実施された平成27年度近代化産業遺産「愛岐トンネル群」動物調査報告会を記録したもの