Thursday, July 11, 2024

Rat Tails


Multiple studies have explored the thermoregulatory capacity of rodent tails by subjecting test organisms to varying levels of physical activity and quantifying heat conduction via the animals' tails. One study demonstrated a significant disparity in heat dissipation from a rat's tail relative to its abdomen. This observation was attributed to the higher proportion of vascularity in the tail, as well as its higher surface-area-to-volume ratio, which directly relates to heat's ability to dissipate via the skin. These findings were confirmed in a separate study analyzing the relationships of heat storage and mechanical efficiency in rodents that exercise in warm environments. In this study, the tail was a focal point in measuring heat accumulation and modulation.

On the other hand, the tail's ability to function as a proprioceptive sensor and modulator has also been investigated. As aforementioned, the tail demonstrates a high degree of muscularization and subsequent innervation that ostensibly collaborate in orienting the organism. Specifically, this is accomplished by coordinated flexion and extension of tail muscles to produce slight shifts in the organism's center of mass, orientation, etc., which ultimately assists it with achieving a state of proprioceptive balance in its environment. Further mechanobiological investigations of the constituent tendons in the tail of the rat have identified multiple factors that influence how the organism navigates its environment with this structure. A particular example is that of a study in which the morphology of these tendons is explicated in detail. Namely, cell viability tests of tendons of the rat's tail demonstrate a higher proportion of living fibroblasts that produce the collagen for these fibers. As in humans, these tendons contain a high density of golgi tendon organs that help the animal assess stretching of muscle in situ and adjust accordingly by relaying the information to higher cortical areas associated with balance, proprioception, and movement.

The characteristic tail of murids also displays a unique defense mechanism known as degloving in which the outer layer of the integument can be detached in order to facilitate the animal's escape from a predator. This evolutionary selective pressure has persisted despite a multitude of pathologies that can manifest upon shedding part of the tail and exposing more interior elements to the environment. Paramount among these are bacterial and viral infection, as the high density of vascular tissue within the tail becomes exposed upon avulsion or similar injury to the structure. The degloving response is a nocifensive response, meaning that it occurs when the animal is subjected to acute pain, such as when a predator snatches the organism by the tail.

Read more, here.
Jeff Verges/Owner/Operator
742 Santa Anita Court
Eugene, OR 97401

541-688-0580 Eugene 
503-371-8373 Salem

Monday, July 8, 2024

Why do cats have vertical pupils? - Emma Bryce


Peering into the eyes of different animals, you’ll see some extraordinarily shaped pupils. House cats, for one, are twilight hunters with vertically elongated pupils. Many grazing animals, like goats, have rectangular pupils. Other animals have crescent- or heart-shaped pupils. So, what’s going on? Why are there so many different pupil shapes? Emma Bryce digs into the science of animal vision.

Lesson by Emma Bryce, directed by Bálint Gelley, CUB Animation Ltd.

Jeff Verges/Owner/Operator
742 Santa Anita Court
Eugene, OR 97401

541-688-0580 Eugene 
503-371-8373 Salem

Thursday, July 4, 2024

Happy 4th of July!

Happy 4th of July!

Jeff Verges/Owner/Operator
742 Santa Anita Court
Eugene, OR 97401

541-688-0580 Eugene 
503-371-8373 Salem

Tuesday, July 2, 2024

Differences Between Butterflies and Moths


While the butterflies form a monophyletic group, the moths, comprising the rest of the Lepidoptera, do not. Many attempts have been made to group the superfamilies of the Lepidoptera into natural groups, most of which fail because one of the two groups is not monophyletic: Microlepidoptera and Macrolepidoptera, Heterocera and Rhopalocera, Jugatae and Frenatae, Monotrysia and Ditrysia.

Although the rules for distinguishing moths from butterflies are not well established, one very good guiding principle is that butterflies have thin antennae and (with the exception of the family Hedylidae) have small balls or clubs at the end of their antennae. Moth antennae are usually feathery with no ball on the end. The divisions are named by this principle: "club-antennae" (Rhopalocera) or "varied-antennae" (Heterocera). Lepidoptera first evolved during the carboniferous period, but only evolved their characteristic proboscis alongside the rise of angiosperms in the cretaceous period.

Read more, here.

Jeff Verges/Owner/Operator
742 Santa Anita Court
Eugene, OR 97401

541-688-0580 Eugene 
503-371-8373 Salem

Saturday, June 29, 2024

How do fish make electricity? - Eleanor Nelsen



Nearly 350 species of fish have specialized anatomical structures that generate and detect electrical signals. Underwater, where light is scarce, electrical signals offer ways to communicate, navigate, find, and sometimes stun prey. But how do these fish produce electricity? And why? Eleanor Nelsen illuminates the science behind electric fish.

Lesson by Eleanor Nelsen, directed by TOTEM Studio.

Jeff Verges/Owner/Operator
742 Santa Anita Court
Eugene, OR 97401

541-688-0580 Eugene 
503-371-8373 Salem

Wednesday, June 26, 2024

What Kind of Pests

Pests are not just a nuisance; they can be carriers of disease and micro organisms. Pest control is a necessary defense against these unwelcome home invaders.

Jeff Verges/Owner/Operator
742 Santa Anita Court
Eugene, OR 97401

541-688-0580 Eugene 
503-371-8373 Salem

Sunday, June 23, 2024

Monthly Service

Locally owned and operated, providing pest control for your friends and neighbors in the Eugene, Springfield and surrounding areas for more than 35 years.

Jeff Verges/Owner/Operator
742 Santa Anita Court
Eugene, OR 97401

541-688-0580 Eugene 
503-371-8373 Salem