Skip to content

Chest Wall Kinematics and Respiratory Muscle Action During Supine Breathing in Individuals With and Without Spinal Cord Injury

Phase 0 Study of Chest Wall Kinematics and Respiratory Muscle Action During Supine Breathing in Individuals With and Without Spinal Cord Injury.

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT01084512
Acronym
SCI
Enrollment
50
Registered
2010-03-10
Start date
2005-07-31
Completion date
2008-07-31
Last updated
2010-03-10

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Spinal Cord Injury

Keywords

kinematic analysis,, three-compartment model,, chest wall motion,, spinal cord injury.

Brief summary

Objective: To investigate the movement strategy of breathing based on three-compartment model measured by optoelectronic plethysmography (OEP) and electromyography (EMG ) among individuals with and without spinal cord injury in supine posture during deep inspiration. Design: cross sectional repeated-measure with age matched control group. Setting: Motion Analysis Laboratory Participants: Seven tetraplegic and five paraplegic subjects and twelve age matched healthy controls were recruited. Intervention: Not applicable.

Detailed description

Main Outcome Measures: The volume changes of chest wall and respiratory electromyographic ( EMG ) muscle activity were measured simultaneously by OEP and surface EMG. The variables included volume changes (ΔV ), ratio of volume changes (ΔVr ), peak velocity of volume changes ( PV ), the percentage of peak velocity occurs ( PPV ) in three compartments (upper thorax, UT; lower thorax, LT; and abdominal compartment, AB), and Root Mean Square EMG ( RMS EMG ) of sternocleidomastoid and diaphragm (combined with intercostalmuscles). Results: Ttetraplegic individuals had smallerΔVUT andΔVLT than those of control subjects(P\< .006 and .006, respectively). Furthermore, the ΔVr of AB was greater than those of UT and LT( P\< .006, .006, respectively), PVAB was smaller than PVLT ( P\< .006), PPVUT was greater than PPVLT and PPVAB ( P\< .008, .008, respectively ). The paraplegic subjects had smallerΔVLT than that of control subjects ( P\< .006 ). ΔVr of UT was greater than that of LT, and both PVUT and PVAB were greater than PVLT ( P\< .006 and .006, respectively). However, the paraplegic subjects preferred to all three compartments to achieve the maximal inspiration, like control group. In control group, onlyΔVAB was comparable with other compartments. ΔVr of UT was greater than LT, and PVUT was greater than PVLT and PVAB ( P\<.006 and .006, respectively). For the RMS EMG, it demonstrated that average RMS EMG of two muscles in both tetraplegic and paraplegic group were greater than that in control group (P\< .017 and .017, respectively). Conclusion: The results applied the three-compartment model of chest wall to investigate the breathing pattern by OEP in individuals with and without SCI during inspiration of vital capacity breathing in supine posture. There were some interesting findings that (1) the tetraplegic subjects used AB contributed most volume changes, they can expand the AB more easily, and the UT took the responsibility to performed the final adjust during the inspiration; (2) the paraplegic subjects used UT contributed the most volume changes, they expanded the both UT and AB more easily, and all three compartment moved together during the inspiration; (3) the control subjects used UT to increase the most volume changes, they can expand UT more than the others, and all three compartments moved together during the inspiration phase, (4) the results of RMS EMG showed that the central neural drive in both tetraplegic and paraplegic subjects were greater than control group.

Interventions

None listed

Sponsors

National Science and Technology Council, Taiwan
CollaboratorOTHER_GOV
National Taiwan University Hospital
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
MALE
Age
20 Years to 60 Years
Healthy volunteers
Yes

Inclusion criteria

* (1) motor complete loss below level of injury with American Spinal Injury Association Classification (ASIA) class A or B19; * (2) post-injury duration at least 0.5 year; * (3) male subject due to high incidence rate in Taiwan20and the necessity of total exposure of the chest wall during the data collection.

Exclusion criteria

* (1) with any traumatic history of the chest wall, * (2) with any respiratory disease and musculoskeletal problem that interfered with the experimental protocol; * (3) having infections during the data collection period.

Design outcomes

Primary

MeasureTime frame
Chest wall motion6 months after spinal cord injury

Secondary

MeasureTime frame
ultrasonography6 months after spinal cord injury

Countries

Taiwan

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026