| Literature DB >> 31723900 |
Myung Hun Jang1, Myung-Jun Shin1,2, Yong Beom Shin1,2.
Abstract
Some patients admitted to the intensive care unit (ICU) because of an acute illness, complicated surgery, or multiple traumas develop muscle weakness affecting the limbs and respiratory muscles during acute care in the ICU. This condition is referred to as ICU-acquired weakness (ICUAW), and can be evoked by critical illness polyneuropathy (CIP), critical illness myopathy (CIM), or critical illness polyneuromyopathy (CIPNM). ICUAW is diagnosed using the Medical Research Council (MRC) sum score based on bedside manual muscle testing in cooperative patients. The MRC sum score is the sum of the strengths of the 12 regions on both sides of the upper and lower limbs. ICUAW is diagnosed when the MRC score is less than 48 points. However, some patients require electrodiagnostic studies, such as a nerve conduction study, electromyography, and direct muscle stimulation, to differentiate between CIP and CIM. Pulmonary rehabilitation in the ICU can be divided into modalities intended to remove retained airway secretions and exercise therapies intended to improve respiratory function. Physical rehabilitation, including early mobilization, positioning, and limb exercises, attenuates the weakness that occurs during critical care. To perform mobilization in mechanically ventilated patients, pretreatment by removing secretions is necessary. It is also important to increase the strength of respiratory muscles and to perform lung recruitment to improve mobilization in patients who are weaned from the ventilator. For these reasons, pulmonary rehabilitation is important in addition to physical therapy. Early recognition of CIP, CIM, and CIPNM and early rehabilitation in the ICU might improve patients' functional recovery and outcomes.Entities:
Keywords: critical illness; intensive care units; muscular diseases; physical therapy modalities; polyneuropathies; rehabilitation
Year: 2019 PMID: 31723900 PMCID: PMC6849048 DOI: 10.4266/acc.2019.00444
Source DB: PubMed Journal: Acute Crit Care ISSN: 2586-6052
Figure 1.Assessment of muscle strength with a handgrip dynamometer (A) and handheld dynamometry (B).
Figure 2.Sample sheet used for muscle strength testing through the Medical Research Council (MRC) sum score and the standardized 5 questions (S5Q) at Pusan National University Hospital. For values that are difficult to assess due to peripheral or central nervous lesions, amputation, or orthopedic reasons, the values of the same muscle group on the opposite side or in proximity on the ipsilateral side are extrapolated. EP: extrapolation.
Electrophysiological findings of ICUAW
| Critical illness polyneuropathy | Critical illness myopathy |
|---|---|
| CMAP decreased to <80% of LLN in >2 nerves | CMAP decreased to <80% of LLN in >2 nerves |
| SNAP decreased to <80% of LLN in >2 nerves | SNAPs are >80% of LLN in >2 nerves |
| Normal conduction velocity | Normal or near-normal conduction velocity |
| Abnormal spontaneous activity | Variable spontaneous activity |
| Large polyphasic MUAPs | Small polyphasic MUAPs in >2 muscle groups |
| Reduced recruitment/interference pattern | Low-amplitude, full interference pattern |
| Muscle inexcitability with direct muscle stimulation |
ICUAW: intensive care unit-acquired weakness; CMAP: compound muscle action potential; LLN: lower limit of normal; SNAP: sensory nerve action potential; MUAP: motor-unit action potential.
Examples of safety criteria for starting and stopping rehabilitation in the intensive care unit
| System | Starting criteria | Stopping criteria |
|---|---|---|
| Cardiovascular | Heart rate: 60–130 beats/min | Heart rate: <60 or >130 beats/min |
| Systolic blood pressure: 90–180 mmHg, or mean arterial pressure: 60–100 mmHg | Systolic blood pressure: <90 or >180 mmHg, or mean arterial pressure: <60 or >100 mmHg | |
| Respiratory | Respiratory rate: 5–40 breaths/min | Respiratory rate: <5 or >40 breaths/min |
| SpO2 ≥88% | SpO2 <88% | |
| FiO2 <0.6 | Concerns about the disconnection of the artificial airway | |
| PEEP <10 | ||
| Artificial airway is properly secured | ||
| Other | Able to open eyes to voice | Changes in consciousness |
| New/symptomatic arrhythmia | ||
| Chest pain | ||
| Ventilator asynchrony | ||
| Falling down | ||
| Medical device removal | ||
| Patient intolerance or refusal |
SpO2: peripheral capillary oxygen saturation; FiO2: fraction of inspired oxygen; PEEP: positive expiratory end pressure.
Goals of pulmonary rehabilitation in the intensive care unit
| Goal of pulmonary rehabilitation |
|---|
| Reducing secretion retention, atelectasis, and pneumonia |
| Maintaining or recruiting lung volume |
| Optimizing ventilation and oxygenation |
| Improving compliance and ventilation/perfusion mismatch, reducing work of breathing |
| Decreasing ventilator dependence and improving residual function |
| Improving respiratory muscle strength |
| Reducing postoperative complications |
Figure 3.Incentive spirometry (A) and threshold inspiratory muscle training (B) for intensive care patients.
Figure 4.Treatment modalities for airway secretions. RFC: residual functional capacity; HFO: high frequency oscillation; IPV: intrapulmonary percussive ventilation; CPAP: continuous positive airway pressure; EPAP: expiratory positive airway pressure; PEP: positive expiratory pressure; NIV: noninvasive ventilation; MIE: mechanical insufflation-exsufflation.
Figure 5.Postural drainage with high-frequency oscillation (A) and the Acapella device (B) for secretion removal.
Figure 6.Cycle ergometer for active and passive cycling in the intensive care unit.
Figure 7.(A) Upper-body aerobic exercise with fitness equipment. (B, C) Resistive training of upper extremities and bridging exercise using elastic band.