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Safe and Effective Above Cuff Tracheostomy Ventilation

Safe and Effective Above Cuff Tracheostomy Ventilation - a Device Development Study

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04647786
Acronym
SEACtV
Enrollment
309
Registered
2020-12-01
Start date
2022-07-13
Completion date
2024-12-31
Last updated
2025-01-20

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

Conditions

Tracheostomy

Brief summary

A Phase I study of an 'in-house' developed, novel, Class I, prototype medical device to facilitate vocalisation in participants with cuff-inflated tracheostomy tubes. Primary objective: To design and develop a device to deliver Above Cuff Vocalisation (ACV) that is safe, well tolerated and effective at producing a voice in tracheostomised patients in the Intensive Care Unit (ICU). Secondary objective: To evaluate whether more effective delivery of ACV has a significant impact on laryngeal function and recovery following new tracheostomy in ICU patients.

Detailed description

A tracheostomy is an artificial airway inserted into the trachea (windpipe) through the front of the neck, usually required for prolonged artificial ventilation in the critically ill. Between 10-15% of the 250,000 patients admitted annually to UK Intensive Care Units (ICUs) require temporary tracheostomy, with an additional 5,000 tracheostomies performed during surgery. The tubes have a cuff/balloon which seals the trachea when inflated, allowing lung ventilation. The flow of gas into and out of the patient's lungs does not flow through the upper airways (nose and mouth), bypassing the larynx (voice box) and preventing speech. Our research found the biggest problem with tracheostomies from the patient's perspective is losing the ability to speak. If the muscles of the larynx and throat are not used, they quickly become weak, meaning that coughing, swallowing and talking can take longer to recover. These problems cause anger, frustration, fear and low mood and lead to significantly longer hospital stays, impacting ICU and hospital bed availability. Patients with a weak cough or swallow cannot clear secretions from the throat, which may enter the lungs (aspiration). The inflated cuff reduces aspiration and most ICU-specific tubes have an extra suction-port for secretion removal. However, additional gas can be directed via the suction-port, through the vocal cords and out via the upper airways, allowing vocalisation. The MHRA confirmed these tubes can be used for 'above cuff voicing' (ACV) in line with their CE marking. Our proposed research advances healthcare technologies by developing a new clinically validated prototype medical device with the potential to significantly increase patient benefit for a defined and expanding area of clinical need. Our collaborative project combines our clinical experience and understanding of the needs of tracheostomy patients and their families with the design and engineering excellence of our University and SME partners. Our team is supported by individual and institutional research expertise and together with our patient partners, we can deliver an advanced prototype device with a clear pathway towards adoption and commercialisation, attractive to follow-on funders and investors.

Interventions

DEVICEPrototype medical device (SEA CtV)

A prototype device that delivers a controlled flow of gas to the upper airways via the subglottic suction port of an established tracheostomy tube. Gas flow may be timed, warmed and/or humidified.

Sponsors

Manchester Metropolitan University
CollaboratorOTHER
Manchester University NHS Foundation Trust
Lead SponsorOTHER_GOV

Study design

Allocation
RANDOMIZED
Intervention model
FACTORIAL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

3 phases: 1. Safety testing in sequential patients 2. 2x2 factorial design 3. Simple unblinded RCT using finalised device vs standard care

Eligibility

Sex/Gender
ALL
Age
18 Years to 100 Years
Healthy volunteers
Yes

Inclusion criteria

Inclusion criteria (patient): * Provision of informed consent prior to any study specific procedures * cuff-inflated tracheosotmy tube in situ for \>48 hours * managed on an Intensive Care Unit at MFT * Male and females * Aged 18-100; patient is alert and attempting to communicate (and thus able to participate in the consent process). Inclusion criteria (staff): * Provision of informed consent * bedside clinical staff (medical, nursing, allied healthcare professional) who manage the patient during routine clinical duties whilst ACV is in progress.

Design outcomes

Primary

MeasureTime frameDescription
Effectiveness of vocalisation (Patient-reported voice VAS)Daily for up to 7 daysTo assess the effectiveness of the SEA CtV prototype device in producing a voice for cuff-inflated tracheostomy patients.

Secondary

MeasureTime frameDescription
Voice ratingDaily for up to 7 days(Objective scales FCS, NoWS, TOMS, GRBAS, recordings for volume and intelligibility); Cough count; Swallow count; e-Stim (threshold/max sensetivities); FEES (Laryngeal function scales Pen-Asp, SSRS, APS)
Adverse events recordDaily for up to 7 daysAdverse events record (tracheosotmy tube displacement, surgical emphysema), adverse events log, setup safety tests (does the device stop appropriately)
Patient reported subjective tolerabilityDaily for up to 7 daysPatient-reported subjective tolerability VAS; Staff-reported objective tolerability VAS; Patient-reported problems; ACV device use
Time to first oral intakeDaily for up to 7 daysTime to oral intake; Functional Swallowing Outcome; vocalisation; cuff deflation for \>2 hours; ETT days; Trachy days; ICU days; hospital days; CCMDS organ supoort data

Countries

United Kingdom

Outcome results

None listed

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