The webs of spiders are the first things we notice, long before we recognise the occupant. Silk production and web building is a defining feature of all spiders, and certainly the trait they are best known for. The obvious diversity in different web types and structures has always fascinated; even Aristotle made attempts to define different web types. But it has not been until the latter half of the twentieth century that we have started to appreciate the level of diversity and plasticity in web-building behaviour, between individuals of the same species, and even within an individual from one day to the next. The recent work on silk composition and mechanics is starting to document similar levels of plasticity in response to a variety of e...
Physical structures built by animals challenge our understanding of biological processes and inspire...
Spiders construct a wide variety of silk structures, ranging from draglines to prey capture webs. Sp...
The adaptive benefits of extended phenotypic plasticity are imprecisely defined due to a paucity of ...
Spider silks exhibit remarkable properties, surpassing most natural and synthetic materials in both ...
Spider silks exhibit remarkable properties, surpassing most natural and synthetic materials in both ...
The evolutionary diversification of spiders is attributed to spectacular innovations in silk. Spider...
Mechanical performance of biological structures, such as tendons, byssal threads, muscles, and spide...
A spider\u27s web architecture is an extended phenotype and direct product of behavior. Variation wi...
Spider major ampullate silk is a high-performance biomaterial that has received much attention. Howe...
Mechanical performance of biological structures, such as tendons, byssal threads, muscles, and spide...
While phylogenetic studies have shown covariation between the properties of spider major ampullate (...
Spider silk has outstanding mechanical & structural properties, despite its light and delicate a...
Spider silk is renowned for its high tensile strength, extensibility and toughness. However, the var...
Spiders are often underestimated as suitable behavioural models because of the general belief that d...
The beauty of the intricate shapes of spider webs fascinates people, but webs offer more than aesthe...
Physical structures built by animals challenge our understanding of biological processes and inspire...
Spiders construct a wide variety of silk structures, ranging from draglines to prey capture webs. Sp...
The adaptive benefits of extended phenotypic plasticity are imprecisely defined due to a paucity of ...
Spider silks exhibit remarkable properties, surpassing most natural and synthetic materials in both ...
Spider silks exhibit remarkable properties, surpassing most natural and synthetic materials in both ...
The evolutionary diversification of spiders is attributed to spectacular innovations in silk. Spider...
Mechanical performance of biological structures, such as tendons, byssal threads, muscles, and spide...
A spider\u27s web architecture is an extended phenotype and direct product of behavior. Variation wi...
Spider major ampullate silk is a high-performance biomaterial that has received much attention. Howe...
Mechanical performance of biological structures, such as tendons, byssal threads, muscles, and spide...
While phylogenetic studies have shown covariation between the properties of spider major ampullate (...
Spider silk has outstanding mechanical & structural properties, despite its light and delicate a...
Spider silk is renowned for its high tensile strength, extensibility and toughness. However, the var...
Spiders are often underestimated as suitable behavioural models because of the general belief that d...
The beauty of the intricate shapes of spider webs fascinates people, but webs offer more than aesthe...
Physical structures built by animals challenge our understanding of biological processes and inspire...
Spiders construct a wide variety of silk structures, ranging from draglines to prey capture webs. Sp...
The adaptive benefits of extended phenotypic plasticity are imprecisely defined due to a paucity of ...