Balance Evaluation Systems Test (BESTest): Difference between revisions

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<div class="editorbox">'''Original Editor'''- [[User:PI YIN HUANG|PI YIN HUANG]]
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== Objective  ==
<div class="editorbox">
'''Original Editor '''- Your name will be added here if you created the original content for this page.
'''Top Contributors''' - {{Special:Contributors/{{FULLPAGENAME}}}}  &nbsp;
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==Objective==
==Objective==
BESTest is the sensitive and quantitative assessment tool developed to identify the disordered systems underlying the postural control systems responsible for poor functional balance. It was first  developed by '''Dr. Horak''' in 2009 for clinicians to differentiate balance into 6 underlying systems that may constrain balance. It has '''36 items''' that evaluate performance of 6 balance systems: bio-mechanical constraints, stability limits/verticality, anticipatory responses, postural responses, sensory orientation, and stability in gait. It was developed from the theoretical understanding of balance control systems based on Bernstein's concept that postural control results from a set of interacting systems.
[[File:Balance-board-benefits.jpg|right|frameless]]
BESTest is the quantitative assessment tool that aims to identify the disordered systems underlying the postural control responsible for poor functional [[balance]]. By identifying the disordered systems underlying balance control, therapists can direct specific types of intervention for different types of balance problems.


Strength of BESTest:
It has '''36 items''' that evaluate performance of 6 balance systems:  
* It contains different balance systems which helps in postural control.
* It helps  clinicians to determine the type of balance problems so as to direct the specific treatments for their patients.
* It will help to improve third party reimbursement by identifying the specific system affected and change with therapy.
Constraints of Postural control systems addresses following:
# '''Biomechanical Systems''': ankle strategy or compensatory steps for postural recovery (eg: flexed posture in frial elderly and Person's with Parkinson diseases).
# '''Limits of Stability''' ( how far the body's center of mass can be moved  over it's base of support) and '''Verticality''' (represent gravitational upright).
# '''Anticipatory Postural Adjustments''': readiness prior to the voluntary movements which depend on interaction of supplementary motor areas with basal ganglia nad brain stem areas).
# '''Automatic Postural Responses''': short, medium and long proprioceptive feedback loops.
# '''Sensory Orientation:''' Spatial orientation maintain by pathways involving vestibular system and sensory integrative areas of the temporo-parietal cortex
# '''Stability in Gait:''' Co-ordination between spinal locomotor and brain stem postural sensorimotor programs.


== Intended Population  ==
# bio-mechanical constraints
It can be used in varied age and severity of ambulator patients with neurological conditions ( Parkinson's Diseases, Stroke,Cerebellar Ataxia, Neuropathies, Head injury, Mulitiple Scelerosis, Cerebral palsy, etc.), Vestibular disorders, Cognitive Deficits and Elderly.<br>
# stability limits/verticality
# anticipatory responses
# postural responses
# sensory orientation
# stability in gait.<ref name=":02">Horak FB, Wrisley DM, Frank J. [https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2676433/ The balance evaluation systems test (BESTest) to differentiate balance deficits. Physical therapy.] 2009 May 1;89(5):484-98.</ref>


== Method of Use  ==
===Strength of BESTest===
Time to administer: 30- 45 minutes.
*It incorporates different balance systems which help in [[Posture|postural]] control.
*It helps clinicians to determine the type of balance problems so as to direct the specific treatments for their patients.<ref name=":1">Duncan RP, Leddy AL, Cavanaugh JT, Dibble LE, Ellis TD, Ford MP, Foreman KB, Ea[https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3613340/ rhart GM. Comparative utility of the BESTest, mini-BESTest, and brief-BESTest for predicting falls in individuals with Parkinson disease: a cohort study.] Physical therapy. 2013 Apr 1;93(4):542-50.</ref>
*It will help to improve third party reimbursement by identifying the specific system affected and change with therapy.<ref name=":02" />


Equipments Required:
===Constraints of Postural Control Systems Addresses Following===
#'''Bio-mechanical Systems''': Ankle strategy or compensatory steps for postural recovery (eg: flexed posture in [[Introduction to Frailty|frail]] elderly and Person's with [[Parkinson's|Parkinson diseases]]).
#'''Limits of Stability''' (how far the body's [[Centre of Gravity|center of mass]] can be moved  over its [[Base of Support|base of support]]) and '''Verticality''' (represent gravitational upright).
#'''Anticipatory Postural Adjustments''': Readiness prior to the voluntary movements which depend on interaction of supplementary motor areas with [[Basal Ganglia|basal ganglia]] and [[Brainstem|brain stem]] areas.
#'''Automatic Postural Responses''': Impulses carried by short, medium and long [[Proprioception|proprioceptive]] feedback loops.
#'''Sensory Orientation:''' Spatial orientation maintain by pathways involving [[Vestibular System|vestibular system]] and [[Sensation|sensory]] integrative areas of the temporo-parietal cortex.
#'''Stability in Gait:''' Co-ordination between spinal locomotor and brain stem postural sensorimotor programs.<ref name=":02" />
==Intended Population==
It can be used in varied age and severity of ambulator patients with


== Evidence  ==
# [[Neurological Disorders|Neurological conditions]] eg Parkinson's, Stroke, [[Cerebellar Ataxia - A Case Study|Cerebellar]] [[Ataxia]], [[Neuropathies]], [[Traumatic Brain Injury|Head injury]], [[Multiple Sclerosis (MS)|Multiple Sclerosis]], [[Cerebral Palsy Introduction|Cerebral palsy]]
# [[Vestibular Pathologies|Vestibular disorders]],
# [[Cognitive Impairments]]
# [[Older People - An Introduction|Elderly]].
==Method==
===Time to Administer===
20-30 minutes.<ref name=":02" />


=== Reliability  ===
===Examiner Instructions for BESTest===
#Subjects should be tested with flat heeled shoes or with shoes and socks off.
#If subject must use an assistive device for an item, score that item one category lower.<ref name=":02" />


=== Validity  ===
===Equipment Required===
*Stop watch
*Measuring tape mounted on wall for [[Functional Reach Test (FRT)|Functional Reach]] test
*Approximately 60 cm x 60 cm (2 X 2 ft) block of 4-inch, medium-density, Tempur® foam
*10 degree incline ramp (at least 2 x 2 ft) to stand on
*Stair step, 15 cm (6 inches) in height for alternate stair tap
*2 stacked shoe boxes for obstacle during gait  2.5 Kg (5-lb) free weight for rapid arm raise
*Firm chair with arms with 3 meters in front marked with tape for Get Up and Go test
*Masking tape to mark 3 m and 6 m lengths on the floor for Get Up and Go.<ref name=":02" />


=== Responsiveness  ===
===Scoring===
It consist of 27 tasks, with 36 items in total. Each items is scored based on ordinal scale scoring from 0- 3 where 3 representing best performances and 0 representing worst performances. Scores for the total test is provided as a percentage of total points i.e. 108. In addition, 6 sub-systems scores can be generated separately in percentage of total score each representing a specific balance system.<ref name=":02" />


=== Miscellaneous<span style="font-size: 20px; font-weight: normal;" class="Apple-style-span"></span>  ===
==== Required Training ====
Reading  Original Article/Manual.


== Limitations ==
==== Scoring Sheet ====
* Time to complete the assessment is longer with  even longer depending upon severity if conditions.
Here is the link for the scoring sheet of BESTest.[http://www.bestest.us/files/4413/6358/0759/BESTest.pdf]{{#ev:youtube|jK43dcXrhWM|300}}<ref>dcscott325. Mini BESTest Demonstration. Available from: https://www.youtube.com/watch?v=jK43dcXrhWM [last assessed 3/2/2019]</ref>
* Equipment required is too many which may not be practical for regular use in all clinical settings.


==Also See==
==Psychometric Properties==
Mini- BESTest


Brief- BESTest
=== For Non- Specific Patient Population ===


TUG
====Reliability====
The excellent  inter- reliability  of the  total score with inter-class correlation  (ICC) of 0.91 and subsection ICC ranged from 0.79 to 0.95:
* Bio-mechanical constraints: 0.80
* Stability limits/verticality: 0.79
* Anticipatory Postural Adjustments: 0.92
* Postural Reactions: 0.92
* Sensory Orientation: 0.96
* Stability of Gait: 0.88<ref name=":02" />


== References ==
==== Criterion Validity (Concurrent/ Predictive) ====
* With Activities- Specific Balance Confidence (ABC) scale, it shows moderate correlation (''r''=.41–.78) where Stability Limits/Verticality scores had the best correlation (''r''=.78) and Anticipatory Postural Adjustments scores had the worst correlation (''r''=.41).<ref name=":02" />
* BBS, BESTest, Mini-BESTest, and Brief-BESTest were significantly correlated with each other with Spearman correlation coefficients (ρ=.83-.96) and with the ABC Scale (ρ=.46-.61).<ref name=":2">Marques A, Almeida S, Carvalho J, Cruz J, Oliveira A, Jácome C. [https://www.ncbi.nlm.nih.gov/pubmed/27497826 Reliability, validity, and ability to identify fall status of the balance evaluation systems test, Mini–balance evaluation systems test, and Brief–balance evaluation systems test in older people living in the community. Archives of physical medicine and rehabilitation.] 2016 Dec 1;97(12):2166-73.</ref>


<references />
==== Construct Validity ====
* Control subjects scored significantly higher (better) than the subjects with balance problems (''P''=.036) via Mann-Whitney ''U'' test.<ref name=":02" />
* Discriminated  between people with different balance deficits: subjects with unilateral vestibular loss scored the worst in Sensory Orientation (60%), whereas the subjects with Parkinson's scored the worst in Postural Responses (50%) and subjects with neuropathies in Anticipatory Postural Adjustment.


----
==== Minimal Detectable Change (MDC) ====
Original Papers
MDC at 95% confidence level= 9<ref name=":2" />
Horak, F. B., Wrisley, D. M., & Frank, J. (2009). The Balance Evaluation Systems Test (BESTest) to differentiate balance deficits. Physical Therapy, 89(5), 484–98. doi:10.2522/ptj.20080071


Franchignoni, F., Horak, F., Godi, M., Nardone, A., & Giordano, A. (2010). Using psychometric techniques to improve the Balance Evaluation Systems Test: the mini-BESTest. Journal of Rehabilitation Medicine : Official Journal of the UEMS European Board of Physical an Medicine, 42, 323–331. doi:10.2340/16501977-0537
==== Cut-off score  ====
82% differentiate from fallers to non- fallers.<ref name=":2" />


King, L., & Horak, F. (2013). On the Mini-BESTest: Scoring and the Reporting of Total Scores. Physical Therapy, 93(4), 571–5. doi:10.2522/ptj.2013.93.4.571 (pub med link)  note: subscription to Physical Therapy Jounral required for login
===For Parkinson's===


Related Papers
==== Reliability ====
Excellent inter-rater reliability of total BESTest with ICC 0.96 and subsection ICC ranging from 0.79-0.96.
* Bio-mechanical constraints:0.81
* Stability Limits/verticality: 0.79
* Anticipatory Postural Adjustments: 0.91
* Postural Responses: 0.91
* Sensory Orientation: 0.96
* Stability in Gait: 0.86<ref name=":3">Leddy AL, Crowner BE, Earhart GM. [https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3178037/ Utility of the Mini-BESTest, BESTest, and BESTest sections for balance assessments in individuals with Parkinson disease.] Journal of neurologic physical therapy: JNPT. 2011 Jun;35(2):90.</ref>
Excellent to Adequate Test- retest reliabilty for total score with ICC (0.88) and for subsection mentioned below:
* Bio-mechanical constraints:0.69
* Stability Limits/verticality: 0.63
* Anticipatory Postural Adjustments: 0.83
* Postural Responses: 0.87
* Sensory Orientation: 0.72
* Stability in Gait: 0.72<ref name=":3" />


Duncan, R. P., Leddy, A. L., Cavanaugh, J. T., Dibble, L. E., Ellis, T. D., Ford, M. P., … Earhart, G. M. (2013). Comparative utility of the BESTest, mini-BESTest, and brief-BESTest for predicting falls in individuals with Parkinson disease: a cohort study. Physical Therapy, 93(4), 542–50. doi:10.2522/ptj.20120302
==== Cut-off Score: ====
* To identify individual as fallers and non-fallers '''69%''' cut-off score with sensitivity=0.84, specificity=0.76, LR+= 3.49, LR-=0.21AND  AUC=0.85. <ref name=":3" />
* With 69% of cut off score to detect fallers.
- with sensitivity of 0.84, specificity= 0.76, LR+=3.49, LR-= 0.21 and AUC= 0.84, adequate for detecting retrospective fallers.


Franchignoni, F., Godi, M., Guglielmetti, S., Nardone, A., & Giordano, A. (2015). Enhancing the usefulness of the Mini-BESTest for measuring dynamic balance: A Rasch validation study. European Journal of Physical and Rehabilitation Medicine, 51(4), 429-437.  
- with sensitivity of  0.93, specificity= 0.84, LR+=5.81, LR-= 0.08 and AUC= 0.89, adequate for detecting prospective fallers.


Godi, M., Franchignoni, F., Caligari, M., Giordano, A., Turcato, A., & Nardone, A. (2013). Comparison of Reliability, Validity, and Responsiveness of the Mini- BESTest and Berg Balance Scale in Patients With Balance Disorders. Journal of the American Physical Therapy Association, 93(2), 158-167.  
- with sensitivity of 0.46 specificity= 0.74, LR+=1.77, LR-= 0.73 and AUC= 0.68, poor for detecting 12 months prospective fallers.<ref name=":1" />


Mak, M. K. Y., & Auyeung, M. M. (2013). The mini-BESTest can predict Parkinsonian recurrent fallers: a 6-month prospective study. Journal of Rehabilitation Medicine : Official Journal of the UEMS European Board of Physical and Rehabilitation Medicine, 45, 565–71. doi:10.2340/16501977-1144
==== Criterion Validity: ====
* Excellent Correlation between Mini-BESTest and BESTest total score (r=0.955).<ref name=":3" />
* Adequate Correlation with ABC (r=0.757).
* Excellent Correlation with berg balance scale (r= 0.87)
* Excellent Correlation with Functional Gait Assessment (r=0.882)<ref name=":1" /


O’Hoski, S., Winship, B., Herridge, L., Agha, T., Brooks, D., Beauchamp, M. K., & Sibley, K. M. (2014). Increasing the Clinical Utility of the BESTest, Mini-BESTest, and BriefBESTest: Normative Values in Canadian Adults Who Are Healthy and Aged 50 Years and Over. Physical Therapy, 94(3), 334–42. doi:10.2522/ptj.20130104
==Limitations==
*The limitation of the BESTest is the time required to complete the assessment (35 minutes)<ref>Yingyongyudha A, Saengsirisuwan V, Panichaporn W, Boonsinsukh R. [https://journals.lww.com/jgpt/Fulltext/2016/04000/The_Mini_Balance_Evaluation_Systems_Test.4.aspx The Mini-Balance Evaluation Systems Test (Mini-BESTest) demonstrates higher accuracy in identifying older adult participants with history of falls than do the BESTest, Berg Balance Scale, or Timed Up and Go Test.] Journal of geriatric physical therapy. 2016 Apr 1;39(2):64-70.</ref>. Time to complete the assessment is longer with even longer depending upon the severity of conditions. A short form of the BESTest, the Mini-BESTest, and Brief-BESTest was developed to reduce the assessment time. Mini-BESTest has 14 tasks and needs only 10 to 15 minutes.
*Equipment required is too many which may not be practical for regular use in all clinical settings.<ref name=":4">Di Carlo S, Bravini E, Vercelli S, Massazza G, Ferriero G. [https://www.ncbi.nlm.nih.gov/pubmed/26795715 The Mini-BESTest: a review of psychometric properties. International journal of rehabilitation research.] 2016 Jun 1;39(2):97-105.</ref>
==Resources==
* [http://www.bestest.us/files/7413/6380/7277/MiniBEST_revised_final_3_8_13.pdf Mini- BESTest]<ref name=":4" />
* [https://www.sralab.org/sites/default/files/2017-07/7._BRIEF_BEST.pdf Brief- BESTest]<ref>Huang M, Pang MY. [https://www.ncbi.nlm.nih.gov/pubmed/28293482 Psychometric properties of Brief‐Balance Evaluation Systems Test (Brief‐BEST est) in evaluating balance performance in individuals with chronic stroke.] Brain and behavior. 2017 Mar;7(3):e00649.</ref>
* [https://www.physio-pedia.com/Timed_Up_and_Go_Test_(TUG) Timed Up and Go ( TUG)]
* [[Functional Reach Test (FRT)|Functional Reach Test]]
* Clinical test of Sensory Interaction and Balance (CTSIB)


Padgett, P. K., Jacobs, J. V, & Kasser, S. L. (2012). Is the BESTest at Its Best? A Suggested Brief Version Based on Interrater Reliability, Validity, Internal Consistency, and Theoretical Construct. Physical Therapy, 92(9), 1197–207. doi:10.2522/ptj.20120056
==References==
[[Category:Neurology Outcome Measures]]
<references />
----
[[Category:Neurological - Outcome Measures]]
[[Category:Balance]]
[[Category:Balance]]
[[Category:Balance - Special Tests]]

Latest revision as of 11:16, 17 February 2023

Objective[edit | edit source]

Balance-board-benefits.jpg

BESTest is the quantitative assessment tool that aims to identify the disordered systems underlying the postural control responsible for poor functional balance. By identifying the disordered systems underlying balance control, therapists can direct specific types of intervention for different types of balance problems.

It has 36 items that evaluate performance of 6 balance systems:

  1. bio-mechanical constraints
  2. stability limits/verticality
  3. anticipatory responses
  4. postural responses
  5. sensory orientation
  6. stability in gait.[1]

Strength of BESTest[edit | edit source]

  • It incorporates different balance systems which help in postural control.
  • It helps clinicians to determine the type of balance problems so as to direct the specific treatments for their patients.[2]
  • It will help to improve third party reimbursement by identifying the specific system affected and change with therapy.[1]

Constraints of Postural Control Systems Addresses Following[edit | edit source]

  1. Bio-mechanical Systems: Ankle strategy or compensatory steps for postural recovery (eg: flexed posture in frail elderly and Person's with Parkinson diseases).
  2. Limits of Stability (how far the body's center of mass can be moved over its base of support) and Verticality (represent gravitational upright).
  3. Anticipatory Postural Adjustments: Readiness prior to the voluntary movements which depend on interaction of supplementary motor areas with basal ganglia and brain stem areas.
  4. Automatic Postural Responses: Impulses carried by short, medium and long proprioceptive feedback loops.
  5. Sensory Orientation: Spatial orientation maintain by pathways involving vestibular system and sensory integrative areas of the temporo-parietal cortex.
  6. Stability in Gait: Co-ordination between spinal locomotor and brain stem postural sensorimotor programs.[1]

Intended Population[edit | edit source]

It can be used in varied age and severity of ambulator patients with

  1. Neurological conditions eg Parkinson's, Stroke, Cerebellar Ataxia, Neuropathies, Head injury, Multiple Sclerosis, Cerebral palsy
  2. Vestibular disorders,
  3. Cognitive Impairments
  4. Elderly.

Method[edit | edit source]

Time to Administer[edit | edit source]

20-30 minutes.[1]

Examiner Instructions for BESTest[edit | edit source]

  1. Subjects should be tested with flat heeled shoes or with shoes and socks off.
  2. If subject must use an assistive device for an item, score that item one category lower.[1]

Equipment Required[edit | edit source]

  • Stop watch
  • Measuring tape mounted on wall for Functional Reach test
  • Approximately 60 cm x 60 cm (2 X 2 ft) block of 4-inch, medium-density, Tempur® foam
  • 10 degree incline ramp (at least 2 x 2 ft) to stand on
  • Stair step, 15 cm (6 inches) in height for alternate stair tap
  • 2 stacked shoe boxes for obstacle during gait  2.5 Kg (5-lb) free weight for rapid arm raise
  • Firm chair with arms with 3 meters in front marked with tape for Get Up and Go test
  • Masking tape to mark 3 m and 6 m lengths on the floor for Get Up and Go.[1]

Scoring[edit | edit source]

It consist of 27 tasks, with 36 items in total. Each items is scored based on ordinal scale scoring from 0- 3 where 3 representing best performances and 0 representing worst performances. Scores for the total test is provided as a percentage of total points i.e. 108. In addition, 6 sub-systems scores can be generated separately in percentage of total score each representing a specific balance system.[1]

Required Training[edit | edit source]

Reading Original Article/Manual.

Scoring Sheet[edit | edit source]

Here is the link for the scoring sheet of BESTest.[1]

[3]

Psychometric Properties[edit | edit source]

For Non- Specific Patient Population[edit | edit source]

Reliability[edit | edit source]

The excellent inter- reliability of the total score with inter-class correlation (ICC) of 0.91 and subsection ICC ranged from 0.79 to 0.95:

  • Bio-mechanical constraints: 0.80
  • Stability limits/verticality: 0.79
  • Anticipatory Postural Adjustments: 0.92
  • Postural Reactions: 0.92
  • Sensory Orientation: 0.96
  • Stability of Gait: 0.88[1]

Criterion Validity (Concurrent/ Predictive)[edit | edit source]

  • With Activities- Specific Balance Confidence (ABC) scale, it shows moderate correlation (r=.41–.78) where Stability Limits/Verticality scores had the best correlation (r=.78) and Anticipatory Postural Adjustments scores had the worst correlation (r=.41).[1]
  • BBS, BESTest, Mini-BESTest, and Brief-BESTest were significantly correlated with each other with Spearman correlation coefficients (ρ=.83-.96) and with the ABC Scale (ρ=.46-.61).[4]

Construct Validity[edit | edit source]

  • Control subjects scored significantly higher (better) than the subjects with balance problems (P=.036) via Mann-Whitney U test.[1]
  • Discriminated between people with different balance deficits: subjects with unilateral vestibular loss scored the worst in Sensory Orientation (60%), whereas the subjects with Parkinson's scored the worst in Postural Responses (50%) and subjects with neuropathies in Anticipatory Postural Adjustment.

Minimal Detectable Change (MDC)[edit | edit source]

MDC at 95% confidence level= 9[4]

Cut-off score[edit | edit source]

82% differentiate from fallers to non- fallers.[4]

For Parkinson's[edit | edit source]

Reliability[edit | edit source]

Excellent inter-rater reliability of total BESTest with ICC 0.96 and subsection ICC ranging from 0.79-0.96.

  • Bio-mechanical constraints:0.81
  • Stability Limits/verticality: 0.79
  • Anticipatory Postural Adjustments: 0.91
  • Postural Responses: 0.91
  • Sensory Orientation: 0.96
  • Stability in Gait: 0.86[5]

Excellent to Adequate Test- retest reliabilty for total score with ICC (0.88) and for subsection mentioned below:

  • Bio-mechanical constraints:0.69
  • Stability Limits/verticality: 0.63
  • Anticipatory Postural Adjustments: 0.83
  • Postural Responses: 0.87
  • Sensory Orientation: 0.72
  • Stability in Gait: 0.72[5]

Cut-off Score:[edit | edit source]

  • To identify individual as fallers and non-fallers 69% cut-off score with sensitivity=0.84, specificity=0.76, LR+= 3.49, LR-=0.21AND AUC=0.85. [5]
  • With 69% of cut off score to detect fallers.

- with sensitivity of 0.84, specificity= 0.76, LR+=3.49, LR-= 0.21 and AUC= 0.84, adequate for detecting retrospective fallers.

- with sensitivity of 0.93, specificity= 0.84, LR+=5.81, LR-= 0.08 and AUC= 0.89, adequate for detecting prospective fallers.

- with sensitivity of 0.46 specificity= 0.74, LR+=1.77, LR-= 0.73 and AUC= 0.68, poor for detecting 12 months prospective fallers.[2]

Criterion Validity:[edit | edit source]

  • Excellent Correlation between Mini-BESTest and BESTest total score (r=0.955).[5]
  • Adequate Correlation with ABC (r=0.757).
  • Excellent Correlation with berg balance scale (r= 0.87)
  • Excellent Correlation with Functional Gait Assessment (r=0.882)[2]

Limitations[edit | edit source]

  • The limitation of the BESTest is the time required to complete the assessment (35 minutes)[6]. Time to complete the assessment is longer with even longer depending upon the severity of conditions. A short form of the BESTest, the Mini-BESTest, and Brief-BESTest was developed to reduce the assessment time. Mini-BESTest has 14 tasks and needs only 10 to 15 minutes.
  • Equipment required is too many which may not be practical for regular use in all clinical settings.[7]

Resources[edit | edit source]

References[edit | edit source]

  1. 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 1.8 1.9 Horak FB, Wrisley DM, Frank J. The balance evaluation systems test (BESTest) to differentiate balance deficits. Physical therapy. 2009 May 1;89(5):484-98.
  2. 2.0 2.1 2.2 Duncan RP, Leddy AL, Cavanaugh JT, Dibble LE, Ellis TD, Ford MP, Foreman KB, Earhart GM. Comparative utility of the BESTest, mini-BESTest, and brief-BESTest for predicting falls in individuals with Parkinson disease: a cohort study. Physical therapy. 2013 Apr 1;93(4):542-50.
  3. dcscott325. Mini BESTest Demonstration. Available from: https://www.youtube.com/watch?v=jK43dcXrhWM [last assessed 3/2/2019]
  4. 4.0 4.1 4.2 Marques A, Almeida S, Carvalho J, Cruz J, Oliveira A, Jácome C. Reliability, validity, and ability to identify fall status of the balance evaluation systems test, Mini–balance evaluation systems test, and Brief–balance evaluation systems test in older people living in the community. Archives of physical medicine and rehabilitation. 2016 Dec 1;97(12):2166-73.
  5. 5.0 5.1 5.2 5.3 Leddy AL, Crowner BE, Earhart GM. Utility of the Mini-BESTest, BESTest, and BESTest sections for balance assessments in individuals with Parkinson disease. Journal of neurologic physical therapy: JNPT. 2011 Jun;35(2):90.
  6. Yingyongyudha A, Saengsirisuwan V, Panichaporn W, Boonsinsukh R. The Mini-Balance Evaluation Systems Test (Mini-BESTest) demonstrates higher accuracy in identifying older adult participants with history of falls than do the BESTest, Berg Balance Scale, or Timed Up and Go Test. Journal of geriatric physical therapy. 2016 Apr 1;39(2):64-70.
  7. 7.0 7.1 Di Carlo S, Bravini E, Vercelli S, Massazza G, Ferriero G. The Mini-BESTest: a review of psychometric properties. International journal of rehabilitation research. 2016 Jun 1;39(2):97-105.
  8. Huang M, Pang MY. Psychometric properties of Brief‐Balance Evaluation Systems Test (Brief‐BEST est) in evaluating balance performance in individuals with chronic stroke. Brain and behavior. 2017 Mar;7(3):e00649.