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Schizophrenia01:17

Schizophrenia

Schizophrenia, a term introduced by Swiss psychiatrist Eugen Bleuler in 1911, describes a severe psychological disorder marked by profound disruptions in attention, thought processes, language, emotion, and interpersonal relationships. The core feature of schizophrenia is psychosis — a state characterized by a fundamental detachment from reality. This disconnection manifests through distorted logic, impaired perception, and atypical behavior, severely affecting the lives of those diagnosed.
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The famous and controversial Stanford Prison Experiment, conducted by social psychologist Philip Zimbardo and his colleagues at Stanford University, demonstrated the power of social roles, social norms, and scripts.
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When we hold a stereotype about a person, we have expectations that he or she will fulfill that stereotype. A self-fulfilling prophecy is an expectation held by a person that alters his or her behavior in a way that tends to make it true. When we hold stereotypes about a person, we tend to treat the person according to our expectations. This treatment can influence the person to act according to our stereotypic expectations, thus confirming our stereotypic beliefs. Research by Rosenthal and...
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Gestalt Psychology01:14

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Strategic self-presentation refers to individuals' intentional efforts to influence how others perceive them. This process is employed in various social and professional settings, such as job interviews, dating, politics, and legal contexts, where individuals seek to shape impressions to gain social or material advantages. While people generally present themselves in ways that align with their authentic characteristics, external factors, such as cognitive load, can hinder their ability to...

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Updated: May 17, 2026

Use of a Psychophysiological Script-driven Imagery Experiment to Study Trauma-related Dissociation in Borderline Personality Disorder
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Use of a Psychophysiological Script-driven Imagery Experiment to Study Trauma-related Dissociation in Borderline Personality Disorder

Published on: March 8, 2018

Interview: interview with Gisbert Schneider.

Gisbert Schneider1

  • 1Swiss Federal Institute of Technology, Department of Chemistry & Applied Biosciences, Zürich, Switzerland. gisbert.schneider@pharma.ethz.ch

Future Medicinal Chemistry
|October 24, 2012
PubMed
Summary
This summary is machine-generated.

Professor Gisbert Schneider

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Use of a Psychophysiological Script-driven Imagery Experiment to Study Trauma-related Dissociation in Borderline Personality Disorder
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Published on: March 8, 2018

The Social Dimension of Stress: Experimental Manipulations of Social Support and Social Identity in the Trier Social Stress Test
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The Social Dimension of Stress: Experimental Manipulations of Social Support and Social Identity in the Trier Social Stress Test

Published on: November 19, 2015

Area of Science:

  • Biochemistry
  • Computer Science
  • Bioinformatics
  • Medicinal Chemistry

Background:

  • Gisbert Schneider's academic journey includes biochemistry and computer science studies at the Free University of Berlin.
  • He led the cheminformatics group at F. Hoffmann-La Roche Pharmaceuticals and obtained his habilitation in biochemistry and bioinformatics from the University of Freiburg.
  • Schneider held a professorship in Chem- and Bioinformatics at Goethe-University Frankfurt before joining ETH Zurich.

Discussion:

  • The interview explores Schneider's career path and entry into the field of computational chemistry.
  • It examines the impact of software advancements on scientific research.
  • The discussion highlights the increasing significance of computational chemistry in medicinal chemistry.

Key Insights:

  • Advances in software have significantly influenced research methodologies and outcomes.
  • Computational chemistry is increasingly integral to the traditional role of a medicinal chemist.
  • The integration of computational approaches enhances drug design and discovery processes.

Outlook:

  • The field of computer-assisted drug design is rapidly evolving.
  • Future medicinal chemists will likely rely more heavily on computational tools.
  • Continued advancements in software will drive innovation in drug discovery.