How could a structure as complex as the vertebrate brain develop from the simplest multicellular animals? Natural selection offers an impeccable mechanism for the gradual transformation of species, but even Darwin sometimes expressed doubts about the origin of highly complex structures. Following an approach that has been termed "developmental evolutionary genetics," this book seeks to establish a correspondence between embryological processes and the phylogenetic history of an organism.



Zusammenfassung
1 Introduction There is little doubt that the vertebrate brain is the most complex structure we know. As with any complex structure, there is the immediate question about its origins. Howcouldsuchacomplexdesigndevelopfromthesimplestmulticellular animals? This problem has pervaded the study of evolutionary biology since its beginnings. Although Darwin (1859, 1871) proposed an impeccable mechanism (natural selection) for the gradual transformation of species including human origins, even he sometimes expressed certain doubts about the origin of highly complex structures. This issue has been highly debated both within science and outsideit. Forinstance,arebirthoftheoldreligiousargumentofintelligentdesign has gained unexpected strength in the last few years. In essence, this argument follows Paley's (1802) claim that if we ?nd a clock that has been thrown away we cannotconsiderthatitwascreatedonitsown,butratherhastobetheconsequence of conscious design. Today, creationists have developed a modern version of this argument, that of intelligent information (Denton 2002). For example, after sequencing the human genome in 2001, one of Celera Genomics top computer scientistsclaimedthatthiscomplexitysuggesteddesign. Althoughheclari?ednot to be thinking of God, he asserted that there's a huge intelligence there (quoted inWitham2002,p9). AsWitham(2002)says,moderncomputer-literatebelievers may soon ask the question of whether the universe is self-running or functioning on DOS, a Divine Operating System. Inthisvolume,wehavedecidedtotackletheproblemoftheoriginandevolution of the vertebrate brain, from the simplest nervous system-like elements that we can observe in nature. In doing so, we expect to establish a continuity between the simplest stages and theelaboration of the highly intricate neuronal network that is the mammalian cerebral cortex.

Inhalt

Introduction.- Evolution of the vertebrate nervous system and the telencephalon.- Animal phylogenetic relationships.- The origin of vertebrates.- Evolution of the telencephalon in vertebrates.- Origin of the mammalian brain.- The first mammals.- Origins of the mammalian neocortex: hypotheses on homology .- Embryological evidence.- The olfactory-hippocampal hypothesis.- Origin of neocortical lamination.- Expansion of the neocortex.- Discussion.- An overview.- Issues with evolutionary theory.- Final comments.- Acknowledgements.- References.- Subject index.

Titel
Origin and Evolution of the Vertebrate Telencephalon, with Special Reference to the Mammalian Neocortex
EAN
9783540497615
ISBN
978-3-540-49761-5
Format
E-Book (pdf)
Herausgeber
Veröffentlichung
20.06.2007
Digitaler Kopierschutz
Wasserzeichen
Dateigrösse
3 MB
Anzahl Seiten
121
Jahr
2007
Untertitel
Englisch