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What is a Sensory System?01:31

What is a Sensory System?

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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.
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Thermal expansion and Thermal stress: Problem Solving01:27

Thermal expansion and Thermal stress: Problem Solving

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San Francisco's Golden Gate Bridge is exposed to temperatures ranging from -15 °C to 40 °C. At its coldest, the main span of the bridge is 1275 m long. Assuming that the bridge is made entirely of steel, what is the change in its length between these temperatures?
To solve the problem, first, identify the known and unknown quantities. The initial length (L) of the bridge is 1275 m, the coefficient of linear expansion (α) for steel is 12 x 10-6/°C, and the change in temperature (ΔT) is 55...
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Thermal Strain01:19

Thermal Strain

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Thermal strain is a concept that arises when we consider how temperature changes affect structures. Unlike the conventional assumption that structures remain constant under load, real-world scenarios often involve temperature fluctuations that can significantly impact these structures. Consider a homogeneous rod with a uniform cross-section resting freely on a flat horizontal surface. If the rod's temperature increases, the rod elongates. This elongation is proportional to the temperature...
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Sensory Modalities01:15

Sensory Modalities

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Sensation typically is the process by which the sensory receptors and sense organs detect stimuli from the internal and external environment and transmit this information to the central nervous system for processing.
General senses refer to the broad category of sensory information detected by receptors in the body and can be further grouped into somatic and visceral senses. Somatic sensations include touch, pressure, temperature, and pain and are essential for navigating our environment and...
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Thermal Expansion01:22

Thermal Expansion

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The expansion of alcohol in a thermometer is one of many commonly encountered examples of thermal expansion, which is the change in size or volume of a given system as its temperature changes. The most visible example is the expansion of hot air. When air is heated, it expands and becomes less dense than the surrounding air, which then exerts an upward force on the hot air to, for example, make steam and smoke rise, and hot air balloons float. The same behavior happens in all liquids and gases,...
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Thermal Stress01:09

Thermal Stress

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If the temperature of an object is changed while it is prevented from expanding or contracting, the object is subjected to stress. The stress is compressive if the object expands in the absence of constraint and tensile if it contracts. This stress resulting from temperature change is known as thermal stress. It can be quite large and can cause damage. To avoid this stress, engineers may design components so they can expand and contract freely. For instance, on highways, gaps are deliberately...
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Related Experiment Video

Updated: Feb 16, 2026

Full-Endoscopic Isolation Zone Technique for the Treatment of Lumbar Disc Herniation
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Full-Endoscopic Isolation Zone Technique for the Treatment of Lumbar Disc Herniation

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Thermal quantitative sensory testing in lumbar disc herniation.

L Samuelsson1, A Lundin

  • 1Department of Orthopaedics, Orebro Medical Center Hospital, Sweden. lars.samuelsson@orebroll.se

European Spine Journal : Official Publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society
|April 5, 2002
PubMed
Summary

Thermal quantitative sensory testing (QST) documents sensory dysfunction in sciatica patients due to lumbosacral disc herniations. While useful for tracking recovery and treatment, QST has poor predictive value for pinpointing the herniated disc location.

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Assessment of Sensory Thresholds in Dogs Using Mechanical and Hot Thermal Quantitative Sensory Testing
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Area of Science:

  • Neurology
  • Pain Management
  • Diagnostic Testing

Background:

  • Sciatica frequently presents as isolated sensory root fiber injury.
  • Lumbosacral disc herniations are a common cause of sciatica and sensory deficits.
  • The utility of quantitative sensory testing (QST) in evaluating these deficits requires further investigation.

Purpose of the Study:

  • To assess the applicability of thermal quantitative sensory testing (QST) in studying sensory dysfunction in patients with lumbosacral disc herniations.
  • To determine if thermal QST can differentiate sensory changes across dermatomes and between affected and unaffected sides.
  • To evaluate the accuracy of thermal QST in identifying the anatomical level of disc herniation.

Main Methods:

  • 36 men and 30 women with diagnosed L4/5 or L5/S1 disc herniations participated.
  • Thermal quantitative sensory testing (QST) was performed on the L4, L5, and S1 dermatomes.
  • Temperature modalities including cold, warmth, and heat pain thresholds were measured.

Main Results:

  • Significant differences in all temperature modalities were observed across dermatomes and between the herniated disc side and the asymptomatic side.
  • Thermal QST correctly classified the herniated disc level in 71% of L5/S1 cases.
  • The correct classification rate for L4/5 disc herniations was lower, at 48%.

Conclusions:

  • Thermal QST effectively reflects and documents sensory dysfunction in patients with lumbosacral disc herniation.
  • This method provides a novel approach for monitoring sensory recovery and assessing treatment efficacy.
  • Thermal QST, similar to conventional electrophysiologic methods, demonstrates limited predictive value for the precise anatomical localization of lumbar disc herniations.