
Fig.1-1 inheritance system of multicellular animal
[JP} 多細胞動物の遺伝機構

Fig.1-2 simplest style of the inheritance system
[JP] もっとも単純な遺伝機構


Fig.2-1 acquiring energy from environmental factor
[JP] 環境因子からのエネルギーの獲得

Fig.2-2 characteristic acquiring process of the first generation
[JP] 最初の世代の形質獲得過程

Fig.2-3 expression of the acquired characteristic by the second
generation
[JP] 次の世代の形質発現過程

Fig.3-1 establishment of sexual reproduction driven by ebb and flow of
tide
[JP] 潮の満ち干による有性生殖の成立

Fig.3-2 comparison of coupling of chromosome and a train
[JP] 遺伝子の合体と 列車の比較

Fig.3-3 the primitive model of multicellular animal
[JP] 原始多細胞動物のモデル

Fig.4-1 a small pool where life was created
[JP] 生命が創造された小さなプール

Fig.4-2 main factors of environment
[JP] 環境の主要な要素

Fig.4-3 'engine-mechanism' by environmental factors
[JP] 環境因子による「エンジン・メカニズム」

Fig.4-4 alternative process of absorption and emission of heart
[JP] 熱の吸収と放出の交互過程

Fig.4-5 histerisis curve arises from heart capacity
[JP] 熱容量によるヒステリシス曲線

Fig.4-6 time lag between the main energy cycle and tidal movement
[JP] 主エネルギー・サイクルと潮の動きの時間的ずれ

Table 4-1 four patterns of the activity of nucleic acids
[JP] 核酸の四つの行動パターン

Fig.4-7 daily process of DNA and RNA synthesis
[JP] DNAとRNA合成の日周期過程

Fig.4-8 monthly process of RNA reverse transcription and DNA pairing
[JP] RNA逆転写とDNAペアリングの月周期過程

Fig.4-9 combined double contrariwise processes driven by the dynamism of
environment
[JP] 環境のダイナミズムにより駆動される複合二重反転過程

Fig.4-10 the creation of organism
[JP] 生命の創造


Fig.5-1 the smallest model of nervous system
[JP] 神経系の最小モデル


Fig.5-2 store and recall of memory
[JP] 記憶の蓄積と読み出し

Fig.5-3 the simplest concept of "put in order"
[JP] もっとも単純な「秩序立てる」という概念

Fig.5-4 analogy of strobila of Scyphozoa and homonomous metamerism
[JP] 鉢虫類のストロビラと体節性の類似

Fig.5-5 interaction between two individuals that has homonomous
metamerism
[JP] 相同的体節性を持つ個体間の相互関係

Fig.5-6 some examples of intercourse style
[JP] 考え得るいく種類かの交接様式の例
[JP] 脳の形成

Fig.5-8 comparison of development in 'static' and 'dynamic' environment
[JP] 「静的な状況」と「動的な状況」での発生の比較

Fig.5-9 formation of metamere by recurrence of re-development
[JP] 再・発生の繰り返しによる体節の形成

Fig.5-10 four modes of hypophysis
[JP] 下垂体の四つの制御様式

Fig.5-11 formation of cerebrum and cerebellum
[JP] 大脳と小脳の形成
Hikaru Tanaka / (C) All rights reserved.