Hostname: page-component-848d4c4894-xm8r8 Total loading time: 0 Render date: 2024-06-15T13:27:14.789Z Has data issue: false hasContentIssue false

Use of the Head Impulse, Nystagmus, Test of Skew (‘HINTS’) assessment to aid differential diagnosis in acute vestibular syndrome in the hyperacute stroke setting

Published online by Cambridge University Press:  23 May 2024

Rebecca Rayner*
Affiliation:
Physiotherapy Department, Norfolk and Norwich University Hospital, Norwich, UK
Joseph Hartley-Palmer
Affiliation:
Physiotherapy, School of Health Sciences, University of East Anglia, Norwich, UK
Chit Hmu
Affiliation:
Stroke Medicine, Norfolk and Norwich University Hospital, Norwich, UK
*
Corresponding author: Rebecca Rayner; Email: rebecca.rayner@nnuh.nhs.uk
Rights & Permissions [Opens in a new window]

Abstract

Background

Differential diagnosis of acute vertigo syndrome is challenging given the similarities between clinical presentations of posterior circulation stroke and peripheral vestibular dysfunction. The Head Impulse, Nystagmus, Test of Skew (‘HINTS’) assessment is a clinical bedside test used to aid diagnosis.

Methods

Comprehensive training on use of the Head Impulse, Nystagmus, Test of Skew assessment was provided to one stroke consultant, and the effectiveness of the test in that setting was assessed. Further education was completed with more members of the stroke and emergency department multi-disciplinary team. Quality improvement measures including magnetic resonance imaging use and bed utilisation were explored.

Results

Following training of one stroke consultant, the Head Impulse, Nystagmus, Test of Skew assessment was found to be a feasible, accurate bedside test within this acute stroke service. Further training for the multi-disciplinary team was completed, but outcome measures were not explored because of the coronavirus disease 2019 pandemic and maternity leave.

Conclusion

There is a role for trained members of the multi-disciplinary team to successfully use the Head Impulse, Nystagmus, Test of Skew assessment in hyperacute stroke settings, to aid diagnosis in acute vertigo syndrome.

Type
Main Article
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution and reproduction, provided the original article is properly cited.
Copyright
Copyright © The Author(s), 2024. Published by Cambridge University Press on behalf of J.L.O. (1984) LIMITED

Introduction

Acute vertigo syndrome is defined as collective symptoms of acute dizziness, nystagmus, nausea and/or vomiting, head motion intolerance, and/or poor balance.Reference Hotson and Boloh1 Differential diagnosis of acute vertigo syndrome is challenging. Similarities in patients’ clinical presentation make it difficult to ascertain whether a person has peripheral vestibular dysfunction or a posterior circulation stroke, and therefore a bedside clinical test assisting this diagnosis is of benefit to stroke and emergency medicine departments.

Initial research demonstrated that the Head Impulse, Nystagmus, Test of Skew (‘HINTS’) assessment is efficacious, specific and sensitive in non-UK countriesReference Kattah, Talkad, Wang and Newman-Toker2,Reference Sankalia, Kothari and Phalgune3 when determining whether acute vertigo patients have dangerous (stroke) or benign (peripheral vestibular) pathology. Kattah et al.Reference Kattah, Talkad, Wang and Newman-Toker2 found the three-step Head Impulse, Nystagmus, Test of Skew assessment to have high sensitivity (100 per cent) and specificity (96 per cent) for identifying central lesions, when completed by expert clinicians who regularly practice vestibular assessments (Table 1). They found it rules out stroke more effectively than magnetic resonance imaging (MRI) 24–48 hours after symptom onset.

Table 1. HINTS assessment findings*

* Head Impulse, Nystagmus, Test of Skew (HINTS) assessment performed to differentiate posterior circulation stroke from peripheral vestibular dysfunction (normally vestibular neuritis)

In acute vertigo syndrome, neurological examination findings of the limbs will likely be normal. The main presenting symptoms of acute vertigo syndrome are dizziness, nausea and imbalance. Mismanagement of acute vertigo syndrome patients is economically inefficient in relation to MRI scanner use; there are limitations regarding daily availability, bed utilisation within acute stroke services, and overall hospital bed capacity. In this service, up until 2018, patients with peripheral vestibular dysfunction were, at times, managed in hyperacute stroke unit beds. This limited the resources for stroke patients, and led to less optimal follow up and discharge planning for patients with peripheral vestibular dysfunction. Inefficiencies in diagnosing posterior circulation stroke have been shown to lead to delayed, or even missed, use thrombolysis treatment,Reference Sarraj, Medrek and Albright4,Reference Banerjee, Stone and Werring5 and likely worse outcomes for this patient population; thus, clinical tools are vital for assisting this diagnosis in terms of stroke medicine.

A systematic review suggested that the Head Impulse, Nystagmus, Test of Skew assessment is useful in the clinical differentiation of posterior circulation stroke from peripheral vestibular dysfunction.Reference Krishnan, Bassilious, Eriksen, Bath, Sprigg and Braekken6 The review recommended further research regarding its use by non-specialist vestibular and neurology clinicians. This is reflected in current National Institute for Health and Care Excellence (NICE) guidance, which specifies that the Head Impulse, Nystagmus, Test of Skew assessment should be performed on adults with sudden onset acute vertigo syndrome ‘if a healthcare professional with training and experience in the use of this test is available’.7

At present, the Head Impulse, Nystagmus, Test of Skew assessment is not widely used in the UK,Reference Krishnan, Bassilious, Eriksen, Bath, Sprigg and Braekken6,Reference Warner, Bunn, Koohi, Schidtmann, Freeman and Kaski8 although research is growing. A recent study investigating the use of this assessment in emergency and stroke medicine, within two large hospitals in the UK,Reference Warner, Bunn, Koohi, Schidtmann, Freeman and Kaski8 reported that only 40 per cent of clinicians used the test in their practice. This number is likely to be an over-representation given that the small sample studied had a specialist interest in this topic or worked in National Health Service (NHS) trusts where the Head Impulse, Nystagmus, Test of Skew assessment is already utilised. The study found that lack of training and clinician confidence in using the Head Impulse, Nystagmus, Test of Skew assessment are large barriers to its use.Reference Warner, Bunn, Koohi, Schidtmann, Freeman and Kaski8

As one member of the clinical multi-disciplinary team (MDT) (a physiotherapist) had the expertise needed to use the Head Impulse, Nystagmus, Test of Skew assessment in our acute vertigo syndrome population, and to teach it to others, it felt appropriate and timely to further explore the use of this assessment within our setting. It was hypothesised that clinical improvements in bed utilisation, Sentinel Stroke National Audit Programme scores, and patient experience and care would be apparent if the assessment was used consistently within the acute stroke service.

Materials and methods

Plan–Do–Study–Act cyclesReference Deming9 were used to structure the implementation of the Head Impulse, Nystagmus, Test of Skew assessment within a large NHS acute stroke service in one university teaching hospital. The quality improvement effects that this may have for patients (correct diagnosis and management), the financial benefits for the trust (efficient use of MRI scanning) and the improvements to the stroke pathway (effective bed use and acute medical management) were also investigated.

Assistance was gained from the Trust Quality Improvement Team, and the project was uploaded and monitored via Life QI quality improvement software.Reference LIFE10

In Plan–Do–Study–Act cycle one, one stroke consultant was trained and supported in the initial Head Impulse, Nystagmus, Test of Skew assessments. Data were captured for acute vertigo syndrome admissions under this consultant between October 2017 and September 2018. The assessment findings were compared to the MRI results, with the aim of assessing the efficacy of the Head Impulse, Nystagmus, Test of Skew assessment in a sample of our acute vertigo syndrome patient group.

The Plan–Do–Study–Act cycle two, conducted in 2018–2019, involved increasing awareness of the Head Impulse, Nystagmus, Test of Skew assessment and more comprehensive training – between two and five 60-minute theoretical and practical training sessions – within the static physiotherapy team, the stroke alert nursing team and the consultant and registrar stroke team. A one-off 60-minute theoretical and practical introduction to the Head Impulse, Nystagmus, Test of Skew assessment was provided for the accident and emergency advanced practitioners and some registrars. It was hoped this would help improve timeliness of patients admitted with acute vertigo syndrome to be referred and reviewed by the stroke team. Bed utilisation using Sentinel Stroke National Audit Programme outlier scores and non-stroke data were planned to be used as outcome measures, as well as confidence ratings amongst clinicians.

Results

In Plan–Do–Study–Act cycle one, the Head Impulse, Nystagmus, Test of Skew assessment was used on 15 patients admitted with acute vertigo syndrome (Table 2). In those with benign assessment results (n = 12), all had normal MRI findings at the two- to three-week follow up. In those with dangerous assessment results, indicating a stroke, the MRI findings confirmed a stroke at follow up. This data increased confidence within the stroke medical team, and raised the profile of the Head Impulse, Nystagmus, Test of Skew assessment as a useful tool within our stroke service. The results showed that the assessment is a feasible bedside clinical test, with 100 per cent accuracy in the patients it was used on within this acute stroke pathway involving one consultant. The patients’ diagnosis from using the Head Impulse, Nystagmus, Test of Skew assessment was evaluated against routine follow-up MRI findings, as that was current practice within our department for acute vertigo syndrome patients.

Table 2. Participant information

In Plan–Do–Study–Act cycle two, the training was completed; however, because of the coronavirus disease 2019 (Covid-19) pandemic and maternity leave commitments, the outcome measurements were not explored.

Discussion

Given the effectiveness of the Head Impulse, Nystagmus, Test of Skew assessment at differentiating posterior circulation stroke from peripheral vestibular dysfunction in acute vertigo syndrome patients, as carried out by one specifically trained consultant within our service, the assessment training was subsequently provided on a wider scale to the stroke consultant and registrar team, stroke alert nurses, some accident and emergency registrars and advanced clinical practitioners, and more intensely to senior physiotherapists within the acute stroke pathway. The Head Impulse, Nystagmus, Test of Skew assessment is now sometimes used within the service for patients presenting with acute vertigo syndrome. A greater awareness and confidence in using the assessment is demonstrated in some clinicians, who report case study findings back to the team on occasion, particularly when ‘text-book’ Head Impulse, Nystagmus, Test of Skew assessment findings for peripheral vestibular dysfunction have been found, to aid learning across the team.

  • The Head Impulse, Nystagmus, Test of Skew (‘HINTS’) assessment may be used to differentiate peripheral vestibular dysfunction from posterior circulation stroke

  • This paper outlines a quality improvement project undertaken to assess the ability of one consultant to implement this assessment in acute vertigo syndrome cases

  • Assessment by a trained consultant led to increased confidence and interest within the stroke service

  • Use of the assessment increased within our teaching hospital, in line with best practice for acute vertigo syndrome patients

The consultant in Plan–Do–Study–Act cycle one had an interest in the Head Impulse, Nystagmus, Test of Skew assessment, but was not an expert. Chen et al.Reference Chen, Lee, Chambers and Dewey11 explored whether you have to be an expert to perform the Head Impulse, Nystagmus, Test of Skew assessment within acute stroke medicine. Our results for one consultant agree with their findings, in showing that non-experts can conduct the Head Impulse, Nystagmus, Test of Skew assessment successfully after training.

There is very limited evidence for the use of the Head Impulse, Nystagmus, Test of Skew assessment in the ageing population, with the average age of patients in the literature reviewed being 58 years.Reference Krishnan, Bassilious, Eriksen, Bath, Sprigg and Braekken6 This is of specific interest in our local setting. Clinically, it is likely to be more challenging to perform the Head Impulse, Nystagmus, Test of Skew assessment on an older person; this is important, as it could make the assessment less effective. The 15 patients in our first Plan–Do–Study–Act cycle were all aged under 70 years. Clinical considerations, such as identifying which patients fit into the acute vertigo syndrome group (e.g. nystagmus at rest and no focal limb neurology), have been continually re-iterated, to help reinforce effectiveness and safety using the Head Impulse, Nystagmus, Test of Skew assessment.

There are limitations to this quality improvement project, performed at one NHS site. Overall, the process of implementing the Head Impulse, Nystagmus, Test of Skew assessment, supported in NICE guidelines,7 has been slow. This fits with the ‘17 years’ suggested as to how long it takes to embed research into clinical practice.Reference Morris, Wooding and Grant12 Alongside this, the Covid-19 pandemic and maternity leave commitments meant training in the assessment was de-prioritised. Its use is evolving steadily within the service, particularly in the emergency department, by a range of clinicians, but mainly involves the stroke consultant, registrar team and the specialist stroke physiotherapists.

Further focus will now be on the outcome measures in Plan–Do–Study–Act cycle two, to explore the assessment's effectiveness in our setting with regard to bed use, Sentinel Stroke National Audit Programme scores and which MDT member is best placed to provide the Head Impulse, Nystagmus, Test of Skew assessment. There is further research suggesting that evaluation of balance is useful following the Head Impulse, Nystagmus, Test of Skew assessment, to further aid confidence in the clinical test.Reference Vanni, Peci, Casati, Moroni, Risso and Ottaviani13 Physiotherapists are best placed to complete examinations of sitting and standing balance, but this could be explained further in MDT training, to compensate for periods when a formal physiotherapy assessment is not available (i.e. out of hours). Lately, in cases where the Head Impulse, Nystagmus, Test of Skew assessment has indicated a peripheral vestibular dysfunction diagnosis, the virtual ward has been utilised, which is an innovative development available since the Covid-19 pandemic, and which could become a standard part of our acute vertigo syndrome pathway.

Conclusion

The Head Impulse, Nystagmus, Test of Skew assessment, performed by individuals trained to carry out this test, can be used to identify cases of acute stroke. The implementation of a quality improvement audit cycle shows that this assessment is a feasible bedside clinical test, with 100 per cent accuracy in the patients within an acute stroke pathway, when conducted by one consultant trained by a specialist physiotherapist with skills in performing the assessment. The diagnosis of patients made using the Head Impulse, Nystagmus, Test of Skew assessment was evaluated against routine follow-up MRI, as is current practice for patients presenting with acute vertigo syndrome within the department. Future investigations using the second Plan–Do–Study–Act cycle may help identify which members of the MDT are best suited to execute the Head Impulse, Nystagmus, Test of Skew assessment within the acute stroke pathway.

Acknowledgement

The authors would like to thank the Quality Improvement Team at Norfolk and Norwich University Hospital NHS Trust.

Competing interests

None declared

Footnotes

Rebecca Rayner takes responsibility for the integrity of the content of the paper

References

Hotson, JR, Boloh, RW. Acute vestibular syndrome. N Engl J Med 1998;3:680–5CrossRefGoogle Scholar
Kattah, JC, Talkad, AV, Wang, DZ, Newman-Toker, DE. HINTS to diagnose stroke in the acute vestibular syndrome: three-step bedside oculomotor examination more sensitive than early MRI diffusion-weighted imaging. Stroke 2009;40:3504–10CrossRefGoogle ScholarPubMed
Sankalia, D, Kothari, S, Phalgune, DS. Diagnosing stroke in acute vertigo: sensitivity and specificity in an Indian population. Neurol India 2021;69:97101Google Scholar
Sarraj, A, Medrek, S, Albright, K. Posterior circulation stroke is associated with prolonged door-to-needle time. Int J Stroke 2015;10:672–8CrossRefGoogle ScholarPubMed
Banerjee, G, Stone, SP, Werring, DJ. Posterior circulation ischaemic stroke. BMJ 2018;361:1185–90CrossRefGoogle ScholarPubMed
Krishnan, K, Bassilious, K, Eriksen, E, Bath, PM, Sprigg, N, Braekken, SK et al. Posterior circulation stroke diagnosis using HINTS in patients presenting with acute vestibular syndrome: a systematic review. Eur Stroke J 2019;4:233–9CrossRefGoogle ScholarPubMed
National Institute for Health and Care Excellence. Suspected neurological conditions: recognition and referral (Clinical guideline [CG127]). In: https://www.nice.org.uk/guidance/cg127 [1 July 2019]Google Scholar
Warner, CL, Bunn, L, Koohi, N, Schidtmann, G, Freeman, J, Kaski, D. Clinician's perspectives using head-impulse-nystagmus-test of skew (HINTS) for acute vestibular syndrome: UK experience. Stroke Vasc Neurol 2022;7:172–5CrossRefGoogle ScholarPubMed
Deming, WE. Out of the Crisis. Cambridge, MA: Massachusetts Institute of Technology Center for Advanced Engineering Study, 1986Google Scholar
Chen, L, Lee, W, Chambers, BR, Dewey, HM. Diagnostic accuracy of acute vestibular syndrome at the bedside in a stroke unit. J Neurol 2011;258:855–6CrossRefGoogle ScholarPubMed
Morris, ZS, Wooding, S, Grant, J. The answer is 17 years, what is the question: understanding time lags in translational research. J R Soc Med 2011;104:510–20CrossRefGoogle ScholarPubMed
Vanni, S, Peci, R, Casati, C, Moroni, F, Risso, M, Ottaviani, M et al. STANDING, a four-step bedside algorithm for differential diagnosis of acute vertigo in the emergency department. Acta Otorhinolaryngol Ital 2014;34:419–26Google Scholar
Figure 0

Table 1. HINTS assessment findings*

Figure 1

Table 2. Participant information