Global industry analysts forecast the global mannequin-based simulation market to reach $3.2 billion by 2026

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Editing: 17; Published: May 2022
Executive Pool: 1268
Companies: 55 – Players covered include 3D Systems, Inc.; CAE Health; Gaumard Scientific Company Inc.; Laerdal Medical A/S; Limbs & Things Ltd. ; Mint AB; Simulab Corporation; Simulaids Inc. and others.
Cover: All major geographies and key segments
segments: Product type (patient simulators, other product types); End use (academics, hospitals, other end uses)
Geographies: World; United States; Canada; Japan; China; Europe (France; Germany; Italy; UK; and rest of Europe); Asia Pacific; Rest of the world.

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ABSTRACT-

Amid COVID-19 crisis, the Global Mannequin Based Simulation Market estimated at US$1.7 billion in 2022, is expected to reach a revised size of US$3.2 billion by 2026, growing at a CAGR of 14.4% over the analysis period. Patient Simulators, one of the segments analyzed in the report, is expected to grow at a CAGR of 13.9%. Preventable medical errors are among the leading causes of death in the United States, second only to heart disease and cancer. Unlike other end-user industries, such as defense and aviation, the healthcare industry has been slow to adopt simulation techniques for quality and safety initiatives and certification activities. However, in recent times, medical schools and hospitals have incorporated simulations, ranging from simple task trainers to high-fidelity mannequins and virtual patients. Simulation is becoming an essential part of training, as well as professional assessment and certification. Manikin simulation is increasingly being used in medical training, both in real hospital rooms and in special simulation facilities. Unsuspecting doctors and nurses are often called into these rooms to test and hone their skills and protocols. It allows medical personnel to practice routine procedures and, more importantly, to hone their skills in rarely used procedures. Simulation training is one of the outstanding innovations in medical education. Technological advancements in manikin training over the past two decades have further resulted in a favorable environment for learning protocols and skill enhancement, improving critical decision-making, and building interpersonal skills. As several countries increasingly focus on simulation-based healthcare training programs, the global manikin-based simulation market is expected to grow significantly over the coming years.

The mannequin-based simulation market is growing rapidly over the past few years and is expected to witness significant growth in the coming years. Manikin-based simulations are widely used in universities. The market is expected to maintain its positive momentum due to the growing demand for simulation options in the fields of medical and military education. Manikins are dummy models intended for use as replicas or virtual patients for medical education and in hospitals. Mannequin-based simulation involves computer representation of the human body in simulators by replacing it with animations, mannequins, or drawings. Growing demand for less invasive treatments and increasing popularity of simulation technologies are the most significant factors driving the growth of the mannequin simulation market. Manikin simulators are capable of representing various human functions such as spontaneous breathing and real-time body vital signs, as well as heart sounds, pupil size or response, and any airway obstruction. Advanced simulators feature sophisticated models capable of responding to medications, external stimuli, and heat. The manikin simulation market benefits from the extensive use of manikins for medical simulation to train medical students, professionals, and specialists. The growing appeal of the technique is attributed to its ability to eliminate the risks associated with unwanted accidents at the time of training, surgery and treatment. Manikin simulators are gaining acceptance to support learning and training efforts in multidisciplinary fields. Mannequin-based simulation ensures the desired expertise without posing patient safety concerns. These benefits increase the adoption of manikin-based simulators in delivery rooms, operating rooms, intensive care units, research academies, and emergency departments. Market growth is also aided by the increasing use of mannequin-based simulation in the military field to help military forces gain knowledge on how to act in the battlefield and hostilities.

Surgical medical training can provide several benefits, such as in-depth emergency response training, hands-on medical training in an interactive environment/settings, and safe training modules. Patient safety concerns can be addressed effectively using manikin-based simulation tools that include patient safety virtual reality simulation and high-fidelity manikins. These solutions are increasingly being used in simulation facilities, emergency rooms and hospital rooms as training solutions and have shown impressive results. Challenges related to the underutilization of simulation technologies due to the complexity of their operation and assembly have hindered the adoption of these technologies in the past. However, the introduction of better user interfaces and automated instructions played a crucial role in overcoming the challenges.

Of all the departments of medicine, intensive care, anesthesia, emergency care, obstetrics and neonatal care, catheterization laboratories and nursing education most actively require manikin-based simulators. In these situations, patient care decisions can suddenly change and life-threatening complications, although rare, must be managed effectively. Complex coordination between multiple specialist healthcare providers is required, and the capacity of individual clinicians as well as teams is challenged. Manikin-based simulation has its roots in such challenging healthcare settings characterized by rapidly changing patient circumstances and rapid clinician response. For example, shoulder dystocia, where the baby’s shoulders are stuck in the birth canal, occurs in 1% of all deliveries. The complicated technical maneuvers needed to get the baby out are increasingly practiced on simulators first. Other rare but serious emergencies that benefit from prior simulator training include postpartum hemorrhage and eclampsia in mothers after childbirth. Even in common cases of patients complaining of chest pain before a heart attack, simulator training is crucial to perform a quick check for arterial blockages and prescribe appropriate treatment. Manikin simulation can therefore be an essential part and add value to the training of clinicians in healthcare institutions, striving to improve quality and risk management. The future of global medicine lies in some pioneering innovations from the privileged few, such as high-fidelity simulation suites with operating rooms, mock rooms with actors and virtual reality simulation for high-risk procedures, e-learning labs, etc. After

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