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EFFECT OF SLOW LOADED BREATHING ON BLOOD PRESSURE IN PATIENT WITH HYPERTENSION AND DIABETES MELLITUS TYPE 2

EFFECT OF SLOW LOADED BREATHING ON BLOOD PRESSURE IN PATIENT WITH HYPERTENSION AND DIABETES MELLITUS TYPE 2

Status
Active, not recruiting
Phases
Unknown
Study type
Interventional
Source
TCTR
Registry ID
TCTR20190723001
Enrollment
30
Registered
2019-07-23
Start date
2019-07-22
Completion date
Unknown
Last updated
2026-08-03

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

Conditions

&#45

Interventions

exercise program including load resistance at 20&#45
30% MIP with BreatheMAX® device&#44
controlled at 6 breaths/min (I:E = 4:6)&#44
6 breaths are 1 set and rest 5 second before continue next of 30 sets. This exercise can provide to one (30minutes) or two (15 + 15 minutes) session in same day,using same device of intervention grou
amount of set and session same as intervention group.
slow load breathing,breathing exercise

Sponsors

Research Institute Of Rangsit University
Lead Sponsor

Eligibility

Sex/Gender
All
Age
45 Years to 79 Years

Inclusion criteria

Inclusion criteria: 1. 45-79 year 2. Diagnosis of hypertension and diabetes mellitus type 2 3. Good mental status assess by MMSE Thai 2002 version (Mini – Mental State Examination: Thai version)

Exclusion criteria

Exclusion criteria: Volunteer was diagnosed or medical profile follow 1. Cardiovascular disease including Aneurysm, coronary heart disease, peripheral vascular disease, cardiomyopathy, valvular heart disease, congenital heart disease, orthostatic hypotension, and rheumatic heart disease. 2. Respiratory disease including OSA, history of tuberculosis, lung cancer, and lung surgery within 1 year. 3. Neurological disease including Parkinson’s disease, dementia, Alzheimer’s, stroke. 4. Musculoskeletal disease including severe osteoporosis, rheumatoid arthritis, or any disability that affect to breathing exercise. 5. Renal failure with dialysis 6. Other conditions that expected to effect on baseline data and exercise e.g. autoimmune disease etc.

Design outcomes

Primary

MeasureTime frame
Home blood pressure awake morning self monitor by automatic blood pressure monitoring

Secondary

MeasureTime frame
Laboratory blood pressure monitoring after rest 30 mins Automatic blood pressure monitor,Heart rate at Home and Lab awake morning, after rest 30 mins Automatic blood pressure monitor,heart rate variability after rest 30 mins Biopac Sudent Lab MP36,Tidal volume 1 min Wright respirometer,Maximum voluntary contraction of hand grip test 3 times of maximum effort handheld dynamometer,exercise pressure response to isometric handgrip exercise at 30% MVC every 2 minutes of 10 mins total time measure BP and HR at pre, Isometric exercise, post exercise circulatory occlusion and recovery at 2 ,Maximum Inspiratory Pressure 5-6 time of maximum effort mouth pressure meter,pulse oxygen saturation after rest 30 mins pulse oxymeter

Countries

Thailand

Contacts

Public ContactPrawit Prakosre

Faculty Faculty of Physical Therapy and Sport science

prawitwit@gmail.com0880806836

Outcome results

None listed

Source: TCTR (via WHO ICTRP) · Data processed: Aug 9, 2026