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Sharpless Epoxidation02:57

Sharpless Epoxidation

5.2K
The conversion of allylic alcohols into epoxides using the chiral catalyst was discovered by K. Barry Sharpless and is known as Sharpless epoxidation. The use of a chiral catalyst enables the formation of one enantiomer of the product in excess. This chiral catalyst is mainly a chiral complex of titanium tetraisopropoxide and tartrate ester (specific stereoisomer). The stereoisomer used in the chiral catalyst dictates the formation of the enantiomer of the product. In other words, the use of...
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Vision01:24

Vision

60.3K
Vision is the result of light being detected and transduced into neural signals by the retina of the eye. This information is then further analyzed and interpreted by the brain. First, light enters the front of the eye and is focused by the cornea and lens onto the retina—a thin sheet of neural tissue lining the back of the eye. Because of refraction through the convex lens of the eye, images are projected onto the retina upside-down and reversed.
60.3K
Color Vision01:24

Color Vision

1.5K
Color perception begins in the retina, the light-sensitive layer at the back of the eye. Two main theories explain how colors are seen: the trichromatic theory and the opponent-process theory. The trichromatic theory, proposed by Thomas Young in 1802 and extended by Hermann von Helmholtz in 1852, suggests that color vision is based on three types of cone receptors in the retina. These cones are sensitive to different but overlapping ranges of wavelengths corresponding to red, blue, and green.
1.5K
Depth Perception and Spatial Vision01:15

Depth Perception and Spatial Vision

2.1K
Depth perception is the ability to perceive objects three-dimensionally. It relies on two types of cues: binocular and monocular. Binocular cues depend on the combination of images from both eyes and how the eyes work together. Since the eyes are in slightly different positions, each eye captures a slightly different image. This disparity between images, known as binocular disparity, helps the brain interpret depth. When the brain compares these images, it determines the distance to an object.
2.1K
What is a Sensory System?01:31

What is a Sensory System?

101.4K
Sensory systems detect stimuli—such as light and sound waves—and transduce them into neural signals that can be interpreted by the nervous system. In addition to external stimuli detected by the senses, some sensory systems detect internal stimuli—such as the proprioceptors in muscles and tendons that send feedback about limb position.
101.4K
Predator-Prey Interactions02:39

Predator-Prey Interactions

21.7K
Predators consume prey for energy. Predators that acquire prey and prey that avoid predation both increase their chances of survival and reproduction (i.e., fitness). Routine predator-prey interactions elicit mutual adaptations that improve predator offenses, such as claws, teeth, and speed, as well as prey defenses, including crypsis, aposematism, and mimicry. Thus, predator-prey interactions resemble an evolutionary arms race.
21.7K

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Related Experiment Video

Updated: Feb 11, 2026

A Standardized Obstacle Course for Assessment of Visual Function in Ultra Low Vision and Artificial Vision
09:29

A Standardized Obstacle Course for Assessment of Visual Function in Ultra Low Vision and Artificial Vision

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Q&A: Ned Sharpless on His Vision for NCI

    Cancer Discovery
    |May 6, 2018
    PubMed
    Summary

    Norman Sharpless, MD, the new director of the National Cancer Institute (NCI), will focus on four key areas to speed up cancer treatment advancements. These include workforce development, basic science, big data, and clinical trials.

    Area of Science:

    • Oncology
    • Cancer Research
    • Medical Leadership

    Background:

    • The National Cancer Institute (NCI) plays a crucial role in advancing cancer research and treatment.
    • Leadership transitions within major research institutions can signal shifts in strategic priorities.

    Discussion:

    • The NCI director outlines a strategic plan to enhance four critical components of the agency's operations.
    • Emphasis on integrated approaches to cancer research and patient care.

    Key Insights:

    • Strategic focus on workforce training and development to build a robust scientific community.
    • Prioritization of basic science research to uncover fundamental cancer mechanisms.
    • "Big data" initiatives to leverage large datasets for novel insights.
    • Expansion and optimization of clinical trials for faster therapeutic validation.

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    Outlook:

    • Aims to significantly accelerate progress in cancer treatment through targeted investments.
    • Fostering innovation and collaboration across different scientific disciplines.
    • Enhancing the NCI's capacity to translate scientific discoveries into clinical applications.