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Resistivity01:22

Resistivity

4.6K
When a voltage is applied to a conductor, an electrical field is generated, and charges in the conductor feel the force due to the electrical field. The current density that results depends on the electrical field and the properties of the material. In some materials, including metals at a given temperature, the current density is approximately proportional to the electrical field. In these cases, the current density can be modeled as:
4.6K
Resistance01:19

Resistance

6.0K
When a current moves through any conductor, the conductor causes some level of difficulty for the current to flow. The measure of that difficulty is known as the resistance of the material and is represented by R. Every material has its own resistance. In the case of conductors, heat is emitted whenever a current passes through them. Resistance depends on the resistivity of the material. Resistivity is a characteristic of the material used to fabricate electrical components, whereas the...
6.0K
Equivalent Resistance01:16

Equivalent Resistance

998
In circuit analysis, situations often arise where resistors are neither in series nor parallel configurations. To tackle such scenarios, three-terminal equivalent networks like the wye (Y) (Figure 1 (a)) or tee (T) and delta (Δ) (Figure 1 (b)) or pi (π) networks come into play. These networks offer versatile solutions and are frequently encountered in various applications, including three-phase electrical systems, electrical filters, and matching networks.
998
Resistance and Conductance01:25

Resistance and Conductance

527
A conductor's DC resistance at a given temperature is influenced by its resistivity, length, and cross-sectional area. Resistivity is an inherent property of the conductor material, with annealed copper serving as the international standard for measurement. For instance, the resistivity of hard-drawn aluminum at 20 degrees Celsius is 61% of the standard conductivity of annealed copper.
Various factors impact the resistance of a conductor. Spiraling in stranded conductors increases their...
527
Rolling Resistance01:21

Rolling Resistance

675
When a solid cylinder rolls steadily on a rigid surface, the normal force applied by the surface on the cylinder is perpendicular to the tangent at the contact point. However, since no materials are entirely rigid, the surface's reaction to the cylinder involves a range of normal pressures.
For instance, imagine a hard cylinder rolling on a comparatively soft surface. The cylinder's weight compresses the surface beneath it. As the cylinder moves, the material in front of it slows down due to...
675
Vascular Resistance01:20

Vascular Resistance

11.2K
Vascular resistance is a critical concept in understanding blood flow dynamics in the circulatory system. It refers to the resistance that blood encounters as it flows through the blood vessels. This resistance is a key factor in determining blood pressure and cardiac workload.
The primary determinants of vascular resistance are vessel diameter, blood viscosity, and vessel length. Among these, vessel diameter plays the most significant role due to the fourth power relationship described by...
11.2K

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Related Experiment Video

Updated: Feb 10, 2026

Studying Interactions between Myeloid Cells and CAR T Cells In Vitro and In Vivo
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Explaining Resistance to CAR T Cells

    Cancer Discovery
    |May 18, 2018
    PubMed
    Summary

    CAR T-cell therapy shows promise for chronic lymphocytic leukemia (CLL) patients. Responding T cells exhibit enhanced memory gene expression and STAT3 activity, with specific CD8+ T cells linked to complete remission.

    Area of Science:

    • Immunology
    • Oncology
    • Cell Biology

    Background:

    • Chronic lymphocytic leukemia (CLL) is a B-cell malignancy where T cells play a crucial role in anti-tumor immunity.
    • CAR T-cell therapy has emerged as a potent treatment modality for refractory B-cell malignancies, including CLL.
    • Understanding the attributes of T cells that mediate a successful response to CAR T-cell therapy is critical for optimizing treatment strategies.

    Discussion:

    • This study investigates the characteristics of T cells in CLL patients undergoing CAR T-cell therapy.
    • Key findings include increased expression of memory-related genes and elevated STAT3 activity in T cells from responders.
    • STAT3 activation is implicated in promoting T-cell memory differentiation, suggesting a mechanism for sustained anti-leukemic activity.

    Key Insights:

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    • T cells from CAR T-cell therapy responders in CLL exhibit a distinct molecular profile.
    • Elevated STAT3 activity correlates with enhanced memory T-cell differentiation.
    • The presence of specific CD8+ T-cell populations is associated with achieving complete remission.

    Outlook:

    • Further research can explore targeting STAT3 or enhancing memory T-cell function to improve CAR T-cell therapy efficacy in CLL.
    • Identifying predictive biomarkers based on T-cell attributes could personalize treatment approaches.
    • These findings may inform the development of next-generation cellular immunotherapies for hematological malignancies.