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Related Concept Videos

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Pain

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Pain serves as a critical warning signal that alerts the body to potential or actual harm. When mechanical pressure on the skin is intense, such as from a sharp pinch, the sensation transitions from touch to pain. Similarly, extreme temperatures, like a hot pot handle, convert the sensation of heat into pain. Pain can also result from overstimulation of other senses, such as blinding light, loud noise, or the intense heat from habañero peppers. This ability to sense pain is essential for...
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Anatomical Movements00:51

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Anatomical movements refer to the various actions or motions that can be performed by the body's joints and muscles. These movements are described using specific terms to provide a standardized way of discussing and understanding the range of motion at different joints.
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In eukaryotic cells,  cytoskeletal filaments such as actin, microtubules, and intermediate filaments form a mesh-like cytoskeletal network. These filaments serve as tracks for transporting cellular cargo. Specialized motor proteins use the chemical energy stored in adenosine triphosphate (ATP) for this transport. During interphase, microtubules are polarized, with the plus-end towards the cell periphery and the minus-end towards the cell center. Two microtubule-associated motor proteins,...
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The force applied by fluids against a surface, known as hydrostatic pressure, initiates the transfer of fluid among different compartments. Within our blood vessels, the blood's hydrostatic pressure is a result of the heart's pumping action. At the arteriolar end of capillaries, hydrostatic pressure (capillary blood pressure) exceeds the opposing colloid osmotic pressure created primarily by plasma proteins like albumin. This discrepancy in pressure propels plasma and nutrients from the...
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Movement Joints in Buildings01:27

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Movement joints in buildings are essential design elements that accommodate inevitable motions caused by various factors such as temperature changes, moisture content variations, and structural deflections. These motions, if not considered in design and construction, can lead to unsightly or dangerous damage. Movement joints are incorporated in different forms to manage these stresses and allow materials to move without causing distress.
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Updated: Feb 7, 2026

Biomechanical Changes Related to Low Back Pain: An Innovative Tool for Movement Pattern Assessment and Treatment Evaluation in Rehabilitation
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Biomechanical Changes Related to Low Back Pain: An Innovative Tool for Movement Pattern Assessment and Treatment Evaluation in Rehabilitation

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The interaction between pain and movement.

Shannon L Merkle1, Kathleen A Sluka2, Laura A Frey-Law2

  • 1Department of Physical Therapy and Rehabilitation Science, University of Iowa, Iowa City, IA, USA; Military Performance Division, United States Army Research Institute of Environmental Medicine, Natick, MA, USA.

Journal of Hand Therapy : Official Journal of the American Society of Hand Therapists
|July 21, 2018
PubMed
Summary
This summary is machine-generated.

Understanding the connection between pain and movement is key for effective rehabilitation. Tailoring interventions to individual motor responses and activity tolerance ensures better patient outcomes.

Keywords:
AcuteChronicExercise prescriptionMotor responseNeuromuscular adaptation

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Area of Science:

  • Neuroscience
  • Rehabilitation Science
  • Clinical Biomechanics

Background:

  • Pain and movement are fundamental human experiences.
  • Understanding their relationship aids in clinical decision-making for recovery.
  • This knowledge can prevent long-term consequences of neuromuscular responses.

Purpose of the Study:

  • To elucidate the complex relationships between pain and movement.
  • To inform clinical decision-making in rehabilitation.
  • To improve patient recovery and prevent maladaptive responses.

Main Methods:

  • Clinical commentary and synthesis of existing knowledge.
  • Analysis of pain-movement interactions.
  • Review of neuromuscular response mechanisms.

Main Results:

  • Motor output demonstrates significant adaptability.
  • Neural mechanisms at various levels influence motor control.
  • Individual variability in motor responses is common, even with similar diagnoses.

Conclusions:

  • Interventions must be individualized based on observed motor responses (protective vs. maladaptive).
  • Patient's acute physical activity tolerance is a critical factor in exercise prescription.
  • A nuanced approach considering both motor response type and tolerance optimizes rehabilitation.