Wednesday, 23 September 2026

Hydrotherapy / Aquatic Therapy in Physiotherapy: Principles, Benefits, Indications, Contraindications and Evidence-Based Applications

 

Hydrotherapy / Aquatic Therapy in Physiotherapy: Principles, Benefits, Indications, Contraindications and Evidence-Based Applications

Hydrotherapy, also called aquatic therapy or water-based therapy, uses the physical properties of water to assist rehabilitation, exercise, pain management, mobility training, strengthening, balance training and cardiovascular conditioning.

Unlike land-based exercise, aquatic therapy allows the physiotherapist to manipulate buoyancy, hydrostatic pressure, water resistance, turbulence, temperature and depth to change the mechanical demands placed on the body.

This makes the aquatic environment particularly useful when conventional land-based exercise is difficult because of pain, reduced weight-bearing tolerance, weakness, impaired balance or limited mobility.

However, aquatic therapy is not simply "exercise made easier." Water can reduce gravitational loading while simultaneously creating substantial resistance to movement and cardiovascular demands.

Current evidence supports aquatic exercise for several conditions, particularly osteoarthritis, chronic low back pain and some chronic pain conditions, while evidence for neurological rehabilitation is promising but varies in quality and clinical significance. (PubMed)




What Is Hydrotherapy / Aquatic Therapy?

Hydrotherapy is the therapeutic use of water for rehabilitation or treatment.

Aquatic therapy generally refers to structured therapeutic exercise or movement performed in water under the supervision of a physiotherapist or appropriately trained rehabilitation professional.

It can include:

  • Walking in water

  • Active range-of-motion exercises

  • Strengthening exercises

  • Balance training

  • Gait retraining

  • Aerobic conditioning

  • Functional movement practice

  • Stretching

  • Neuromuscular training

  • Sport-specific rehabilitation

  • Relaxation and mobility exercises

Aquatic therapy should be distinguished from recreational swimming.

A patient does not need to know how to swim to participate in many aquatic rehabilitation programs. Exercise may be performed in shallow or deeper water while using the pool wall, rail, flotation devices or therapist assistance.

The therapeutic effect comes from manipulating the physical properties of water rather than simply swimming laps.


Physics Behind Aquatic Therapy

The effectiveness of aquatic therapy is closely related to basic principles of fluid mechanics, hydrostatics, thermodynamics and biomechanics.

The major physical properties used clinically are:

  1. Buoyancy

  2. Hydrostatic pressure

  3. Water density

  4. Viscosity and drag

  5. Turbulence

  6. Water temperature

  7. Thermal conductivity and specific heat

  8. Changes in the relationship between the body's center of gravity and center of buoyancy

Understanding these principles helps the physiotherapist determine how difficult or easy an exercise will be.


1. Buoyancy

Buoyancy is one of the most important principles in aquatic rehabilitation.

According to Archimedes' principle, an immersed object experiences an upward force equal to the weight of the fluid displaced by that object.

In simple terms:

Water pushes upward against the body.

This reduces the effective load that the musculoskeletal system must support.

The deeper a person is immersed, the greater the proportion of body weight that is unloaded.

Therefore:

  • Deeper immersion → greater buoyancy support

  • Shallower immersion → greater weight-bearing demand

This provides a useful way to progressively load a patient.

For example, a patient with painful knee osteoarthritis may find walking easier when immersed to approximately chest or xiphoid level because water supports a significant portion of body weight.

As rehabilitation progresses, the therapist can move the patient into shallower water, increasing the weight-bearing requirement.

Buoyancy can therefore be used as a graded loading tool.


2. Hydrostatic Pressure

Hydrostatic pressure is the pressure exerted by a fluid at rest.

It can be expressed as:

P = ρgh

where:

  • P = hydrostatic pressure

  • ρ = density of water

  • g = gravitational acceleration

  • h = depth below the water surface

Pressure increases with depth.

Therefore, the feet experience greater hydrostatic pressure than the knees, and the knees experience greater pressure than the hips during upright immersion.

Hydrostatic pressure can:

  • Reduce peripheral fluid accumulation

  • Influence venous return

  • Provide uniform external pressure

  • Affect cardiovascular responses

  • Change respiratory mechanics

Immersion causes blood to shift toward the central circulation, increasing venous return and altering cardiac and respiratory physiology. (PubMed)

This is therapeutically useful in some patients but can also create important precautions in people with significant cardiopulmonary disease.


3. Viscosity and Water Resistance

Water provides resistance when the body moves through it.

Unlike gravity-dependent loading, resistance from water can be applied in multiple directions.

The faster a person moves through water, the greater the resistance generally becomes.

Therefore:

Slow movement → lower resistance

Fast movement → higher resistance

This allows the therapist to increase exercise intensity simply by changing movement speed.

Resistance can also be increased by:

  • Increasing the surface area of the moving limb

  • Using paddles

  • Using aquatic gloves

  • Using fins or resistance equipment

  • Creating turbulence

  • Changing movement direction

This makes water useful for strengthening without necessarily requiring heavy external weights.


4. Drag Force

When a body moves through water, it experiences drag.

A simplified relationship is:

Drag ∝ velocity²

This means that increasing movement speed can produce a disproportionately greater increase in water resistance.

For example, a patient may perform shoulder abduction slowly during early rehabilitation.

Later, the same movement can be made more challenging by increasing speed or adding equipment that increases surface area.

Thus, aquatic resistance can be progressively manipulated without changing the basic exercise.


5. Turbulence

Turbulence occurs when water flow becomes irregular.

A therapist can deliberately create turbulence by:

  • Moving the arms rapidly

  • Changing direction

  • Walking behind another person

  • Using resistance equipment

  • Creating waves in the water

Turbulence challenges:

  • Balance

  • Postural control

  • Core stability

  • Reactive responses

  • Neuromuscular coordination

This can be particularly useful during balance and gait rehabilitation.

However, turbulence should be introduced gradually in patients with significant balance impairment.


6. Center of Gravity and Center of Buoyancy

On land, the body's center of gravity is primarily influenced by body mass distribution.

In water, an additional force acts through the center of buoyancy, which is related to the volume of water displaced.

The interaction between these forces changes balance and body orientation.

This produces an interesting rehabilitation environment.

Water can simultaneously:

  • Support the body

  • Reduce fear of falling

  • Slow movements

  • Provide resistance

  • Challenge postural control

A patient may therefore practice balance strategies in a relatively controlled environment before progressing to more demanding land-based tasks.


7. Thermal Properties of Water

Water has a high specific heat capacity and conducts heat more efficiently than air.

As a result, water temperature strongly influences the physiological response to aquatic exercise.

Warm water may:

  • Increase comfort

  • Reduce perceived stiffness

  • Facilitate movement

  • Promote relaxation

  • Make exercise more tolerable for some people

However, excessively warm water can increase cardiovascular and thermal stress.

Therefore, pool temperature should be selected according to the patient's diagnosis, exercise intensity and medical status rather than assuming that "warmer is always better."


8. Respiratory Effects of Immersion

Chest-depth immersion increases hydrostatic pressure around the thorax.

This can increase the mechanical work required for breathing and alter lung volumes.

At the same time, immersion shifts blood toward the thoracic circulation.

These effects are important in patients with:

  • Significant pulmonary disease

  • Respiratory muscle weakness

  • Heart failure

  • Pulmonary hypertension

  • Other conditions in which increased central blood volume may be poorly tolerated

The physiological effects of immersion are therefore clinically important and not merely theoretical. (PubMed)


How Does Aquatic Therapy Work?

Aquatic therapy may produce therapeutic effects through several interacting mechanisms.

1. Reduced Weight-Bearing

Buoyancy decreases effective gravitational loading.

This can make movement possible when full land-based loading is painful or difficult.

Examples include:

  • Knee osteoarthritis

  • Hip osteoarthritis

  • Postoperative rehabilitation

  • Obesity

  • Lower-limb weakness

  • Some chronic pain conditions


2. Increased Resistance

Water resistance allows strengthening exercises without conventional weights.

Resistance can be increased by:

  • Increasing movement speed

  • Increasing limb surface area

  • Adding equipment

  • Increasing turbulence


3. Improved Mobility

Warm water and reduced loading may allow patients to perform larger movements with less discomfort.

This can be useful when pain or stiffness limits land-based exercise.


4. Balance Training

Water provides a unique combination of:

  • Reduced impact

  • Slower movement

  • Buoyant support

  • Multidirectional resistance

  • Adjustable instability

This can allow patients to practice balance strategies with a potentially lower consequence of losing balance.


5. Cardiovascular Conditioning

Water-based exercise can provide aerobic training while reducing some weight-bearing demands.

Walking, jogging, stepping and other movements can be progressed according to:

  • Speed

  • Duration

  • Water depth

  • Resistance equipment

  • Exercise complexity


6. Pain Modulation

Reduced mechanical loading, warmth, movement and exercise may all contribute to improved pain tolerance.

However, it is important not to attribute every pain improvement directly to a unique "healing" effect of water.

Much of the benefit may arise from enabling patients to exercise more comfortably and consistently.


What Does the Research Say?

The evidence for aquatic therapy is condition-specific.

It is not appropriate to say that hydrotherapy is equally effective for every musculoskeletal or neurological condition.


Aquatic Therapy for Osteoarthritis

Osteoarthritis is one of the better-studied applications.

A systematic review and meta-analysis of randomized controlled trials found that aquatic exercise improved pain, stiffness and physical function in people with knee osteoarthritis compared with no exercise immediately after treatment. (PubMed)

Another systematic review including people with osteoarthritis found reductions in pain and joint dysfunction and improvements in quality of life compared with control groups. (PubMed)

A Cochrane review of knee and hip osteoarthritis found small short-term improvements in pain, disability and quality of life compared with usual care or no exercise. (PubMed)

Importantly, aquatic exercise should not automatically be considered superior to land-based exercise.

For many patients, the major advantage is that water provides an environment in which exercise is more comfortable or feasible.

Clinical guidelines have included aquatic exercise as an exercise option for knee and hip osteoarthritis, without establishing it as universally superior to other forms of exercise. (PubMed)


Aquatic Therapy for Chronic Low Back Pain

Aquatic exercise is also used for chronic low back pain.

A 2024 systematic review and meta-analysis specifically examined water-based exercise in people with nonspecific chronic low back pain. The evidence supports water-based exercise as a potentially useful exercise approach, although outcomes vary according to the comparator, program and outcome measured. (PubMed)

The major practical advantage may be that water permits:

  • Walking

  • Trunk movement

  • Lower-limb strengthening

  • Aerobic exercise

  • Core exercises

while reducing the mechanical loading experienced on land.

Aquatic exercise should therefore generally be viewed as one exercise environment among several, rather than a replacement for appropriately prescribed land-based rehabilitation.


Aquatic Therapy for Fibromyalgia

Aquatic exercise has also been investigated extensively in fibromyalgia.

A 2024 systematic review found positive effects of aquatic exercise on pain and quality of life, while emphasizing that benefits may be similar to those achievable with other exercise approaches. (PubMed)

A systematic review with meta-analysis found short-term improvements in pain, fatigue, fibromyalgia impact, depression, physical function and mental health compared with no intervention. However, aquatic therapy was not demonstrated to be superior to land-based exercise, and certainty of evidence was low to very low for several outcomes. (PubMed)

This is clinically important.

For someone with fibromyalgia who finds land-based exercise uncomfortable, aquatic exercise may provide a more tolerable way to begin or maintain physical activity.


Aquatic Therapy in Neurological Rehabilitation

Aquatic therapy is increasingly used in neurological rehabilitation.

Potential applications include:

  • Stroke

  • Multiple sclerosis

  • Parkinson's disease

  • Neurological balance disorders

  • Gait dysfunction

The water environment can be useful because buoyancy decreases effective body weight while water resistance slows movement and provides sensory input.

Stroke

Systematic reviews have reported improvements in balance, gait speed and mobility following aquatic therapy, although the magnitude and clinical importance of these improvements vary.

A 2026 systematic review and meta-analysis including 27 studies and 1,134 participants reported improvements in balance, gait speed and fall-risk measures, but also emphasized substantial heterogeneity. (PubMed)

Another recent 2026 review found moderate evidence for improved balance but inconsistent evidence for some mobility outcomes and emphasized methodological limitations in the existing literature. (PubMed)

Therefore, aquatic therapy can be considered a potentially useful adjunct to neurological rehabilitation, rather than a replacement for task-specific land-based gait and balance training.

Multiple Sclerosis

Aquatic therapy has also been studied in multiple sclerosis.

Recent systematic-review evidence suggests potential improvements in fatigue, mobility, physical function and quality of life, but the number of randomized trials remains relatively small and interventions are heterogeneous. (PubMed)

Temperature management may be particularly important in people with multiple sclerosis because some individuals experience heat-related worsening of symptoms.


Indications for Aquatic Therapy

Aquatic therapy may be considered when the aquatic environment provides a meaningful rehabilitation advantage.

Common indications include:

Musculoskeletal conditions

  • Knee osteoarthritis

  • Hip osteoarthritis

  • Chronic low back pain

  • Chronic musculoskeletal pain

  • Joint stiffness

  • Reduced weight-bearing tolerance

  • Selected postoperative rehabilitation

  • Sports injury rehabilitation

  • Some chronic tendinopathies

  • General deconditioning

Neurological conditions

  • Stroke

  • Multiple sclerosis

  • Parkinson's disease

  • Neurological gait impairment

  • Balance dysfunction

  • General weakness associated with neurological disease

Functional rehabilitation

  • Difficulty walking on land

  • Reduced exercise tolerance

  • Obesity-associated movement limitations

  • Fear of falling

  • Balance retraining

  • Cardiovascular conditioning when medically appropriate

The indication should be based on the individual rehabilitation goal, not simply the diagnosis.


Contraindications to Aquatic Therapy

Aquatic therapy is not appropriate for every patient.

Contraindications and reasons to postpone or modify treatment can include:

1. Open or Unhealed Wounds

Immersion may be inappropriate when a surgical incision or wound has not adequately healed.

This is particularly important after surgery.

The timing of pool entry should follow surgical and wound-care guidance.


2. Active Infection

Patients with active contagious infections or conditions that could contaminate the pool should generally not participate until medically appropriate.

Therapeutic pools require appropriate hygiene and infection-control procedures. (PubMed)


3. Uncontrolled Incontinence

Urinary or fecal incontinence may require exclusion or specialized management depending on facility policy and the patient's ability to maintain hygiene.

Fecal incontinence is particularly important because of infection-control concerns.


4. Unstable Cardiovascular Disease

Patients with significant cardiovascular instability require medical assessment before immersion and aquatic exercise.

Immersion changes venous return, cardiac loading and central blood volume.

Neck-depth immersion can substantially alter cardiopulmonary physiology. (PubMed)


5. Significant Respiratory Instability

Patients with severe respiratory compromise may have difficulty tolerating chest-depth immersion because hydrostatic pressure increases the mechanical work of breathing.


6. Uncontrolled Seizures

A patient with poorly controlled seizures may face a serious drowning risk.

Aquatic therapy should only be considered with appropriate medical clearance, supervision and safety procedures.


7. Severe Cognitive or Behavioral Impairment

If a patient cannot follow safety instructions or maintain adequate behavior in the water, aquatic therapy may be unsafe unless sufficient trained assistance is available.


8. Fever or Significant Acute Illness

Acute systemic illness can make exercise and immersion inappropriate.

Treatment should generally be postponed until the patient is medically stable.


Precautions

Some conditions are not absolute contraindications but require careful assessment.

These include:

  • Controlled cardiovascular disease

  • Controlled hypertension

  • Diabetes

  • Peripheral vascular disease

  • Respiratory disease

  • Epilepsy with adequate control

  • Significant balance impairment

  • Osteoporosis

  • Pregnancy

  • Skin disorders

  • Reduced sensation

  • Fear of water

  • Recent surgery

  • Acute or chronic wounds

  • Heat sensitivity

  • Multiple sclerosis

  • Severe obesity

The physiotherapist should consider both the patient's medical status and the specific characteristics of the pool environment.


How Is an Aquatic Therapy Session Performed?

A typical session may follow several stages.

1. Pre-Session Assessment

The physiotherapist may assess:

  • Pain

  • Mobility

  • Strength

  • Balance

  • Gait

  • Cardiovascular status

  • Respiratory status

  • Surgical/wound status

  • Functional goals

  • Ability to enter and exit the pool


2. Pool Entry

Safe entry and exit are essential.

Depending on the patient's abilities, this may involve:

  • Steps

  • Handrails

  • Pool lifts

  • Therapist assistance

  • Appropriate flotation devices

Fall prevention begins before the patient enters the water.


3. Warm-Up

The patient may begin with:

  • Gentle walking

  • Marching

  • Active range of motion

  • Shoulder movements

  • Low-intensity functional movements


4. Therapeutic Exercise

Exercises are selected according to the patient's goals.

For example:

Strengthening

  • Hip abduction

  • Hip extension

  • Knee flexion/extension

  • Squats

  • Step-ups

  • Calf raises

  • Upper-limb resistance exercises

Mobility

  • Hip movements

  • Knee movements

  • Trunk rotation

  • Shoulder movements

  • Walking drills

Balance

  • Narrow-base standing

  • Weight shifting

  • Single-leg tasks when appropriate

  • Direction changes

  • Turbulence challenges

Gait

  • Forward walking

  • Backward walking

  • Sideways walking

  • Step training

  • Variable-speed walking

Cardiovascular conditioning

  • Water walking

  • Jogging

  • Step exercises

  • Interval-based aquatic exercise


How Is Exercise Progressed in Water?

One of the biggest advantages of aquatic therapy is the ability to manipulate several variables.

To Make Weight-Bearing Easier

Increase immersion depth.

For example:

Shallower water → greater weight-bearing

Deeper water → greater unloading


To Increase Resistance

The therapist can:

  • Increase movement speed

  • Increase limb surface area

  • Add aquatic equipment

  • Increase turbulence

  • Change direction of movement


To Increase Balance Demand

The therapist can:

  • Reduce hand support

  • Narrow the base of support

  • Change direction

  • Add turbulence

  • Introduce dual-task activities

  • Increase movement complexity


To Increase Cardiovascular Demand

The therapist can manipulate:

  • Movement speed

  • Duration

  • Exercise selection

  • Intervals

  • Resistance

while monitoring the patient's response.


Typical Duration and Dosage

There is no single universally correct aquatic therapy prescription.

Programs in clinical research commonly vary in:

  • Frequency

  • Session duration

  • Water temperature

  • Water depth

  • Exercise intensity

  • Program length

Many rehabilitation programs use approximately 2–3 sessions per week, with sessions commonly lasting around 30–60 minutes, but the appropriate dose should be individualized.

For a severely deconditioned patient, beginning with a shorter session may be more appropriate.

For a well-conditioned patient undergoing sports rehabilitation, longer or higher-intensity sessions may be appropriate.

The correct dose depends on:

  • Diagnosis

  • Irritability

  • Exercise tolerance

  • Cardiovascular status

  • Treatment goal

  • Stage of rehabilitation


What Does the Patient Usually Feel?

Patients commonly report:

  • Reduced feeling of body weight

  • Easier movement

  • Warmth

  • Reduced joint loading

  • Increased resistance during faster movements

  • A feeling of instability during balance exercises

  • Increased cardiovascular effort during more intense exercise

Aquatic exercise should not necessarily feel "easy."

A slow walking exercise may be relatively comfortable, while rapid movements against water resistance can produce substantial muscular and cardiovascular demand.


Benefits of Aquatic Therapy

Potential benefits include:

Mechanical benefits

  • Reduced effective body weight

  • Reduced joint loading

  • Multidirectional resistance

  • Adjustable exercise difficulty

  • Supported movement

Functional benefits

  • Gait training

  • Balance training

  • Mobility practice

  • Strengthening

  • Cardiovascular conditioning

Patient-related benefits

  • Exercise may be more comfortable

  • Reduced fear of movement for some patients

  • Greater ability to participate in exercise

  • Potential improvement in confidence

  • A different environment for progressing rehabilitation

The magnitude of these benefits depends heavily on the patient's condition and the quality of the exercise program.


Aquatic Therapy vs Land-Based Exercise

Aquatic and land-based exercise should not be viewed as competitors.

They offer different mechanical environments.

FeatureAquatic TherapyLand-Based Exercise
Weight-bearingAdjustable/reducedFull gravity-dependent
ResistanceWater resistanceGravity, weights, bands, machines
ImpactGenerally lowerCan range from low to high
BalanceSupported but challengingMore directly reflects daily life
Gait practicePossibleEssential for real-world walking
Strength progressionSpeed/surface/equipmentLoad can be quantified directly
Cardiovascular trainingPossiblePossible
Fear of fallingOften reducedMay be greater initially
Functional specificityVariableOften higher for daily activities

For many patients, the best approach is integration of aquatic and land-based rehabilitation.

Water can make early or painful movement more feasible, while land-based exercise can progressively restore the mechanical demands required for daily life.


Aquatic Therapy vs Swimming

These are not the same.

Swimming is primarily a locomotor and cardiovascular activity performed in a horizontal position.

Aquatic therapy is a structured rehabilitation intervention designed around specific impairments and functional goals.

Aquatic therapy may include:

  • Standing exercises

  • Walking

  • Balance training

  • Strengthening

  • Gait retraining

  • Functional movements

A patient can receive aquatic therapy without swimming.


Aquatic Therapy After Surgery

Aquatic rehabilitation can sometimes be useful after orthopedic procedures such as:

  • Knee surgery

  • Hip surgery

  • ACL reconstruction

  • Other lower-limb procedures

The major attraction is that buoyancy allows movement with reduced loading.

However, pool entry should not be based solely on time since surgery.

The wound must be appropriately healed, infection risk considered and the surgeon/clinical team’s restrictions followed.

Aquatic rehabilitation has also been proposed as a way to progressively restore gait, cardiovascular conditioning and movement after ACL reconstruction, although some of these recommendations are based on clinical commentary rather than high-level comparative evidence. (PubMed)


Safety Considerations

Safety should be treated as an essential component of aquatic therapy.

Important considerations include:

  • Pool temperature

  • Water depth

  • Patient supervision

  • Pool entry and exit

  • Floor slipperiness

  • Appropriate footwear

  • Flotation equipment

  • Emergency procedures

  • Infection control

  • Patient fatigue

  • Cardiovascular response

  • Respiratory response

  • Hydration

Patients should not assume that being in water eliminates fall risk.

Poolside falls can be particularly dangerous.


Limitations of Aquatic Therapy

Aquatic therapy has several limitations.

1. Access

Not every clinic has a therapeutic pool.


2. Cost

Aquatic facilities require significant infrastructure, maintenance and staffing.


3. Transfer to Land

Improvement in the water does not automatically mean equivalent improvement on land.

A patient must eventually practice the movements and loading requirements relevant to daily life.


4. Cardiopulmonary Demands

Immersion can produce substantial cardiovascular and respiratory changes.

Therefore, aquatic therapy is not automatically safer than land exercise for every patient.


5. Evidence Heterogeneity

Research protocols differ substantially in:

  • Temperature

  • Depth

  • Exercise type

  • Frequency

  • Duration

  • Intensity

  • Comparator treatment

This makes it difficult to identify one universal "optimal" aquatic therapy protocol.


Common Myths About Aquatic Therapy

Myth 1: "Aquatic therapy is only for elderly patients."

False.

Aquatic rehabilitation can be used across age groups, including athletes, postoperative patients and people with neurological or chronic musculoskeletal conditions.


Myth 2: "Water automatically makes exercise easy."

False.

Buoyancy can reduce weight-bearing, but water resistance increases with movement speed and can create significant muscular demand.


Myth 3: "Aquatic therapy is better than land exercise."

Not necessarily.

Evidence supports aquatic exercise for several conditions, but superiority over land-based exercise is not consistently demonstrated.

For fibromyalgia, for example, systematic-review evidence found benefits compared with no intervention but did not establish superiority over land-based exercise. (PubMed)


Myth 4: "Aquatic therapy replaces normal walking practice."

False.

For a patient whose goal is independent community walking, land-based gait training remains important.

Aquatic gait training can be an adjunct.


Myth 5: "The warmer the pool, the better."

False.

Temperature should be selected according to the patient, exercise intensity and medical condition.

Excessive heat can create unwanted cardiovascular or thermal stress.


Frequently Asked Questions

Is hydrotherapy the same as aquatic therapy?

The terms are often used interchangeably, but aquatic therapy usually refers more specifically to therapeutic exercise and rehabilitation performed in water.

Hydrotherapy is a broader term that can encompass several therapeutic uses of water.


Does aquatic therapy reduce pain?

It can.

Evidence supports improvements in pain for conditions such as osteoarthritis and fibromyalgia, although the magnitude of benefit varies and aquatic therapy is not necessarily superior to other exercise approaches. (PubMed)


Can aquatic therapy build muscle?

Yes.

Water provides resistance, and exercise can be progressed by increasing movement speed, surface area, turbulence or equipment.

However, conventional progressive resistance training on land may provide more precise and measurable loading when substantial strength gains are the primary goal.


Is aquatic therapy good for knee osteoarthritis?

Yes, it can be a useful exercise option.

Systematic reviews report improvements in pain, stiffness and physical function, particularly compared with non-exercise controls. (PubMed)


Can aquatic therapy help chronic low back pain?

Yes.

Water-based exercise has evidence supporting its use in chronic nonspecific low back pain, although the exact magnitude of benefit depends on the exercise program and comparison group. (PubMed)


Can stroke patients do aquatic therapy?

Many can, provided they are medically stable and can participate safely.

Evidence suggests potential improvements in balance and some gait-related outcomes, but aquatic therapy should generally complement rather than replace land-based neurological rehabilitation. (PubMed)


Can patients exercise in water after surgery?

Sometimes.

The incision must be appropriately healed, infection risk must be considered, and surgical restrictions must be followed.

The exact timing depends on the procedure and individual healing.


Is aquatic therapy safe for heart patients?

It depends on the individual's cardiovascular condition.

Immersion substantially changes cardiovascular physiology, particularly at greater depths. Patients with significant or unstable cardiac disease require appropriate medical assessment before aquatic therapy. (PubMed)


Does aquatic therapy help balance?

It can.

Water can provide a controlled environment for balance practice, and systematic reviews in conditions such as stroke have reported improvements in balance. However, evidence quality and clinical significance vary. (PubMed)


Evidence-Based Takeaway

Hydrotherapy / aquatic therapy is a physiotherapy environment rather than a single exercise.

Its therapeutic effects arise from the interaction of:

  • Buoyancy

  • Hydrostatic pressure

  • Water resistance

  • Viscosity

  • Turbulence

  • Temperature

  • Reduced gravitational loading

  • Altered cardiovascular and respiratory physiology

The strongest clinical rationale is often not that water has a universal healing effect, but that the aquatic environment allows a therapist to modify mechanical loading and exercise demands in ways that may be difficult to achieve on land.

Evidence supports aquatic exercise for conditions such as osteoarthritis, chronic low back pain and fibromyalgia, while neurological applications such as stroke and multiple sclerosis show promising but heterogeneous evidence. (PubMed)

The most clinically useful approach is usually to treat aquatic therapy as one component of a broader rehabilitation program, progressing the patient toward the strength, balance, mobility and functional demands required on land.


Final Thoughts

Aquatic therapy demonstrates how the physical environment can be used as a therapeutic tool.

Water can simultaneously unload joints, resist movement, challenge balance, influence circulation and provide thermal effects.

That combination makes it particularly valuable when a patient cannot yet tolerate the mechanical demands of conventional exercise.

But effective aquatic therapy requires more than putting a patient in a warm pool.

The physiotherapist must understand the physics of immersion, select an appropriate water depth and temperature, control resistance and turbulence, monitor physiological responses and progressively transition patients toward functional land-based activity.

Used appropriately, aquatic therapy can provide a highly adaptable bridge between limited movement and progressive functional rehabilitation.


Selected References

  1. Becker BE. Aquatic therapy: scientific foundations and clinical rehabilitation applications. PM&R. 2009. PMID: 19769921. (PubMed)

  2. Pendergast DR, Moon RE, Krasney JJ, et al. Human Physiology in an Aquatic Environment. Comprehensive Physiology. 2015. PMID: 26426465. (PubMed)

  3. Weenink RP, Wingelaar TT. The Circulatory Effects of Increased Hydrostatic Pressure Due to Immersion and Submersion. Frontiers in Physiology. 2021. PMID: 34349668. (PubMed)

  4. Lu M, et al. Effects of Aquatic Exercises for Patients with Osteoarthritis: Systematic Review with Meta-Analysis. PMID: 35327038. (PubMed)

  5. Lim JY, et al. Efficacy and safety of aquatic exercise in knee osteoarthritis: A systematic review and meta-analysis of randomized controlled trials. PMID: 36320162. (PubMed)

  6. Bartels EM, et al. Aquatic exercise for the treatment of knee and hip osteoarthritis. Cochrane Review. PMID: 27007113. (PubMed)

  7. Babiloni-Lopez C, et al. Water-Based Exercise in Patients With Nonspecific Chronic Low-Back Pain: A Systematic Review With Meta-Analysis. 2024. PMID: 38085630. (PubMed)

  8. Rodríguez-Huguet M, et al. Aquatic Exercise in Physical Therapy Treatment for Fibromyalgia: Systematic Review. 2024. PMID: 38540665. (PubMed)

  9. Correyero-León M, et al. Effectiveness of aquatic training based on aerobic and strengthening exercises in patients with fibromyalgia: systematic review with meta-analysis. PMID: 37460329. (PubMed)

  10. Gento-Andrés L, et al. Efficacy of Aquatic Therapy in Improving Balance in Patients With Stroke: A Systematic Review and Meta-Analysis. 2026. PMID: 41834815. (PubMed)

  11. Effects of Aquatic Therapy on Balance and Gait in Chronic Stroke: A Systematic Review with Exploratory Meta-Analysis. 2026. PMID: 42042758. (PubMed)

  12. Effects of Aquatic Therapy on Fatigue, Mobility, Physical Function, and Quality of Life in People with Multiple Sclerosis: A Systematic Review and Meta-Analysis. 2026. PMID: 42346748. (PubMed)


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