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Updated: May 5, 2026

Manual Muscle Testing: A Method of Measuring Extremity Muscle Strength Applied to Critically Ill Patients
Published on: April 12, 2011
ICU-acquired weakness: Critical illness myopathy and polyneuropathy
Audrey Huang1, Marco Salazar2, Harli Weber3
1School of Medicine, New York Medical College, Valhalla, NY, United States of America.
Insights
Critical illness myopathy and polyneuropathy are common in ICU patients, causing weakness and paralysis. Early detection and interventions like mobilization are key to improving outcomes.
Area of Science:
- Intensive Care Medicine
- Neurology
- Critical Care
Background:
- Critical illness myopathy (CIM) and polyneuropathy (CIP) are prevalent ICU complications.
- These conditions lead to flaccid paralysis and respiratory weakness, hindering ventilator weaning.
- ICU-acquired weakness affects 25-84% of long-term ventilated patients, especially those with sepsis.
Purpose of the Study:
- To review the characteristics, risk factors, diagnostics, and management of CIM and CIP.
- To highlight the impact of these conditions on patient recovery and ventilator dependence.
Main Methods:
- Literature review of CIM and CIP pathogenesis, risk factors, and diagnostic modalities.
- Discussion of current and emerging diagnostic tools like EMG, muscle biopsy, ultrasound, MRI, and biomarkers (IL-6, GDF-15).
- Overview of preventative and therapeutic strategies, including early mobilization and glycemic control.
Main Results:
- CIM involves myosin filament loss; CIP involves nerve axon degeneration.
- Key risk factors include prolonged ICU stay, sepsis, multi-organ dysfunction, hyperglycemia, steroids, and neuromuscular blockers.
- Emerging diagnostics and treatments show promise for early detection and management.
Conclusions:
- CIM and CIP remain significant challenges in critical care.
- Further research is needed to enhance diagnostic accuracy and develop more effective treatments.
- Optimizing patient care through early mobilization, nutrition, and glycemic control is crucial.
Abstract:
Critical illness myopathy (CIM) and critical illness polyneuropathy (CIP) are significant complications in intensive care unit (ICU) patients, first identified in the late 20th century. These conditions often present as flaccid paralysis and respiratory muscle weakness, making it challenging for patients to wean off ventilatory support. The incidence of ICU-acquired weakness, which includes CIM and CIP, ranges from 25 % to 84 % among long-term ventilated patients, with higher rates observed in those with sepsis or systemic inflammatory response syndrome. CIM is characterized by muscle wasting and can be confirmed using electromyography and muscle biopsy. The pathogenesis of CIM involves the loss of thick myosin filaments, while the proposed etiology of CIP centers around increased permeability of nerve axons, leading to axonal degeneration. Risk factors for developing these conditions include prolonged ICU length of stay, sepsis, multi-system organ dysfunction, hyperglycemia, as well as exposure to steroids and neuromuscular blocking agents. Emerging diagnostic tools including muscle ultrasound, magnetic resonance imaging (MRI), and biomarkers such as interleukin-6 (IL-6) and growth differentiation factor-15 (GDF-15) show promise in early detection and differentiation of CIM and CIP. Preventative and therapeutic treatment focuses on early mobilization, minimizing sedation, optimizing nutritional support, and use of intensive insulin therapy to prevent prolonged hyperglycemia. Despite these advancements, CIM and CIP continue to pose significant challenges, emphasizing the need for ongoing research to improve patient outcomes and develop effective treatments.
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