Related Experiment Video

Updated: Jun 4, 2026

Surgical Training for the Implantation of Neocortical Microelectrode Arrays Using a Formaldehyde-fixed Human Cadaver Model
08:11

Surgical Training for the Implantation of Neocortical Microelectrode Arrays Using a Formaldehyde-fixed Human Cadaver Model

Published on: November 19, 2017

Substitution of formaldehyde in cross anatomy is possible

Niels Hammer, Sabine Löffler, Christine Feja

    Journal of the National Cancer Institute
    |February 16, 2011
    PubMed
    Abstract

    No abstract available in PubMed .

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    Surgical Training for the Implantation of Neocortical Microelectrode Arrays Using a Formaldehyde-fixed Human Cadaver Model
    08:11

    Surgical Training for the Implantation of Neocortical Microelectrode Arrays Using a Formaldehyde-fixed Human Cadaver Model

    Published on: November 19, 2017

    Lung Fixation under Constant Pressure for Evaluation of Emphysema in Mice
    05:48

    Lung Fixation under Constant Pressure for Evaluation of Emphysema in Mice

    Published on: September 26, 2019

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    Crossed Aldol Reaction Using Weak Bases01:14

    Crossed Aldol Reaction Using Weak Bases

    This lesson deals with the crossed aldol reaction using weak bases. The self-condensation of an aldehyde having α hydrogen is prevented by adding it slowly to a mixture of formaldehyde and weak bases like hydroxide and alkoxide. Upon slow addition of the aldehyde, the base deprotonates the α carbon of the aldehyde to form the corresponding enolate. The enolate subsequently attacks the formaldehyde to form a single crossed product. Figure 1 depicts the aforementioned reaction.
    Crossed Aldol Reactions: Overview01:04

    Crossed Aldol Reactions: Overview

    Crossed aldol addition is the reaction between two different carbonyl compounds under acidic or basic conditions. Here, both the carbonyl compounds function as nucleophiles and electrophiles. As shown in Figure 1, such a reaction yields a mixture of products, two of which are formed via self-condensation, while the remaining two are formed via crossed-condensation. Without adjustment, the reaction's usefulness in organic chemistry is decreased.

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