Evidence mapPaperPMID 42265635Full record

ArticleBMC geriatrics2026

Lower-extremity muscle quality asymmetry in older adult fallers and non-fallers: a phase angle analysis.

Phunsuk Kantha, Kulvara Lapanan, Makha Phongjit, Peerakan Inkhao, Rinrada Chanthorn, Wei-Li Hsu, Jakkrit Amornvit

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Article in BMC geriatrics, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

Authors and funding

7 authors.

Phunsuk KanthaResearch and Innovation Center of Human Movement Sciences, Faculty of Physical Therapy, Mahidol University, Nakhon Pathom, Thailand.
Kulvara LapananFalls, Balance and Injury Research Centre, Neuroscience Research Australia, Sydney, Australia.
Makha PhongjitChula Neuroscience Center, King Chulalongkorn Memorial Hospital, Bangkok, Thailand.
Peerakan InkhaoChula Neuroscience Center, King Chulalongkorn Memorial Hospital, Bangkok, Thailand.
Rinrada ChanthornChula Neuroscience Center, King Chulalongkorn Memorial Hospital, Bangkok, Thailand.
Wei-Li HsuSchool and Graduate Institute of Physical Therapy, College of Medicine, National Taiwan University, Taipei, Taiwan.
Jakkrit AmornvitDivision of Neurology, Department of Medicine, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand. jakkrit.a@chula.ac.th.ORCID http://orcid.org/0000-0002-9278-2067

Funding

National Research Council of Thailand NRCT N84A670900
6 · The paper itself

Abstract

backgroundFalls in older adults are a major public health concern associated with significant morbidity, psychological distress, and functional decline. Although lower-limb strength asymmetry is an established risk factor for falls, whether muscle quality asymmetry is associated with falls remains unclear. Phase angle (PhA), derived from multi-frequency bioelectrical impedance analysis (MF-BIA), is a validated biomarker of muscle quality. Therefore, this study aimed to compare segmental muscle quality and asymmetry between older adults with a recent history of falls ("fallers") and their non-falling counterparts ("non-fallers"), and to evaluate its association with fall-related outcomes.

methodsThis study included 120 community-dwelling older adults, divided into non-fallers (n = 60; median age 69.5 years) and fallers (n = 60; median age 70.0 years). Participants completed fear of falling evaluations, physical performance tests (including chair stand and Timed Up and Go tests), and MF-BIA measurements. Segmental impedance (Z) at six frequencies (1, 5, 50, 250, 500, and 1,000 kHz) and reactance (Xc) at three frequencies (5, 50, and 250 kHz) were measured for the arms, legs, and trunk.

resultsCompared to non-fallers, fallers exhibited significantly poorer sit-to-stand performance (p = 0.03) and a higher percentage of whole-body fat (p = 0.01). No significant group differences were found for fear of falling or Timed Up and Go. While overall segmental PhA did not differ between groups, fallers showed significantly greater PhA asymmetry at 5 kHz in both the arms (p = 0.02) and legs (p = 0.02). Crucially, only leg PhA asymmetry was positively correlated with fall status at 5 kHz (r

conclusionMuscle quality asymmetry in the lower extremities, identified by PhA asymmetry at 5 kHz, is modestly associated with fall status and reduced lower-limb performance in older adults. These findings suggest that leg PhA asymmetry may serve as an adjunctive outcome measure for assessing fall risk in geriatric populations.

Indexed as

Accidental FallsLower ExtremityMuscle, SkeletalMuscle StrengthAgedElectric ImpedanceFemaleHumansIndependent LivingMaleMiddle AgedPostural BalanceBioelectrical impedance analysisFallsMuscle qualityOlder adultsPhase angle

Identifiers

PMID42265635
PMCPMC13471401

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.