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Initiation of Translation02:33

Initiation of Translation

39.1K
Initiating translation is complex because it involves multiple molecules. Initiator tRNA, ribosomal subunits, and eukaryotic initiation factors (eIFs) are all required to assemble on the initiation codon of mRNA. This process consists of several steps that are mediated by different eIFs.
First, the initiator tRNA must be selected from the pool of elongator tRNAs by eukaryotic initiation factor 2 (eIF2). The initiator tRNA (Met-tRNAi) has conserved sequence elements including modified bases at...
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Initiation of Translation02:33

Initiation of Translation

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Resultant of a General Distributed Loading01:13

Resultant of a General Distributed Loading

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While designing structures exposed to non-uniform loads, it is crucial to consider the resultant force and its location. This resultant force is a single vector representing the net force applied due to the distributed load.
Examples such as load distribution due to wind and load distribution on a bridge illustrate how this concept is used to analyze and design safe, reliable structures under variable loading conditions. Most structures, such as residential buildings, bridges, and towers, are...
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Resultant Moment: Scalar Formulation01:31

Resultant Moment: Scalar Formulation

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When multiple forces act on an object in two-dimensional space, the concept of the net moment can be used to understand the tendency of these forces to induce rotational motion about a fixed point. The scalar formulation of the resultant moment is a helpful tool in analyzing the equilibrium of structures subjected to multiple forces.
To determine the resultant moment, the moments caused by all the forces in a system in the x-y plane are considered. Positive moments are typically...
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Resultant Moment: Vector Formulation01:30

Resultant Moment: Vector Formulation

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When a force is applied to an object, the tendency of the object to rotate about a point is known as its moment. If multiple forces are acting on an object, the sum of moments of all the forces acting on a body can be expressed as the resultant moment of the system. The resultant moment can be considered a vector quantity that can be added and subtracted like any other vector.
The resultant moment of a system of forces can be calculated through vector formulation. For example, if we consider...
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Transcription Factors02:16

Transcription Factors

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Tissue-specific transcription factors contribute to diverse cellular functions in mammals. For example, the gene for beta globin, a major component of hemoglobin, is present in all cells of the body. However, it is only expressed in red blood cells because the transcription factors that can bind to the promoter sequences of the beta globin gene are only expressed in these cells. Tissue-specific transcription factors also ensure that mutations in these factors may impair only the function of...
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Related Experiment Video

Updated: Feb 7, 2026

Isolation and Culture of Hippocampal Neurons from Prenatal Mice
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Isolation and Culture of Hippocampal Neurons from Prenatal Mice

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Factors Associated With Informative Redraw After an Initial No Result in Noninvasive Prenatal Testing.

Peter Benn1, Elizabeth Valenti, Shailen Shah

  • 1UConn Health, Framingham, Connecticut; Natera, Inc, San Carlos, California; and Virtua Health, Voorhees, New Jersey.

Obstetrics and Gynecology
|July 12, 2018
PubMed
Summary
This summary is machine-generated.

Redrawing for noninvasive prenatal testing (NIPT) can yield results in 70.6% of cases, especially when initial low fetal fraction is addressed. Maternal weight and time between draws significantly impact redraw success for NIPT.

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Area of Science:

  • Reproductive Medicine
  • Genetics
  • Clinical Diagnostics

Background:

  • Noninvasive prenatal testing (NIPT) is a screening tool for fetal aneuploidies.
  • Low cell-free DNA fetal fraction is a primary reason for NIPT failure.
  • Redrawing samples is sometimes necessary to obtain interpretable NIPT results.

Purpose of the Study:

  • To investigate factors influencing the success rate of redraws for NIPT.
  • To identify predictors for obtaining an informative result after an initial NIPT failure.
  • To aid in counseling patients regarding NIPT redraws.

Main Methods:

  • Retrospective data review of NIPT samples from January to October 2016.
  • Analysis of cases with initial NIPT failure due to low fetal fraction or low confidence results.
  • Evaluation of redraw success rates based on initial fetal fraction, maternal weight, gestational age, and time between draws.

Main Results:

  • A successful result was obtained in 70.6% of redraw cases.
  • For cases with insufficient fetal fraction, the redraw success rate was 62.9%.
  • Redraw success was significantly influenced by initial fetal fraction and maternal weight, with a rapid increase in success within the first 8 days.

Conclusions:

  • Personalized estimates of redraw success can be provided based on initial fetal fraction, maternal weight, and time interval.
  • This information can assist in counseling women on their options after NIPT failure.
  • Optimizing redraw timing and considering maternal factors can improve NIPT success rates.