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Neurology Devices

The neurological device market encompasses a wide range of devices that are used to regulate the body’s nervous system. iData Research analysts have a great deal of experience delving deep into this market to deliver industry-leading reports to our clients, and this information helps executives formulate key decisions.

We offer unsurpassed neurology market analysis that highlights both growth opportunities as well as potential limiting factors.

Showing 1–16 of 64 results

Neurological Devices Market Analysis, Size, Trends | Global | 2019-2025 | MedSuite

Industry Trends One of the major drivers for the neurological devices market is the patient and physicians demand for minimally invasive procedures. This has been driving the growth in aspiration thrombectomy and neurovascular stenting and the decline of and aneurysm clipping procedures treatments. With the growth in these markets, the market value for ubiquitous neurovascular

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Neurological Devices Market Analysis, Size, Trends | Europe | 2019-2025 | MedSuite (Includes 14 Reports)

The full report suite on the European market for neurological devices includes cerebrospinal fluid management devices, detachable coils, liquid embolics, neurovascular guidewires, neurovascular catheters, neurovascular stents, aneurysm clips, intrasaccular stents, neurovascular thrombectomy devices, ultrasonic aspirators, neuromodulation devices, intrathecal pumps, stereotactic devices and transcranial magnetic simulators. The market for balloon occlusion is discussed separately in the

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Surgical Robotics and Navigation Market Analysis, Size, Trends | Global | 2019-2025 | MedSuite | Includes: ENT Surgical Navigation Market, Minimally Invasive Surgery Robotics Systems Market, and 8 more

iData’s global surgical robotic MedSuite covers 10 markets and procedural volumes including the neurosurgery navigation market. The MedSuite is a compilation of all reports related to a specific market. It is ideal for device manufacturers, product managers, marketing managers, and consultants looking for a detailed analysis of every market segment and sub-segment within a given market.

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Surgical Robotics and Navigation Market Analysis, Size, Trends | United States | 2019-2025 | MedSuite | Includes: Neurosurgery Navigation Market, Spinal Surgical Navigation Market, and 10 more

iData’s U.S. Surgical Robotics MedSuite covers 12 markets including the neurosurgery navigation market and spinal surgical navigation market. The MedSuite is a compilation of all reports related to a specific market. It is ideal for device manufacturers, product managers, marketing managers, and consultants looking for a detailed analysis of every market segment and sub-segment within a given market.

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Neurology Devices Market Analysis, Size, Trends | United States | 2020-2026 | MedSuite

In 2020, the U.S. neurology devices market size was valued at $4.8 billion, and there were over 726,000 neurological procedures performed. The market size is expected to increase at a growth rate of 6.9% to reach $7.6 billion in 2026. Throughout this medical market research, we analyzed 44 neurological device companies across the United States

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Neuromodulation Market Analysis, Size, Trends | Global | 2020-2026 | MedSuite

In 2020, the global neuromodulation device market size was valued at nearly $4.4 billion, with over 230,000 neuromodulation procedures performed every year. The neuromodulation devices market growth is expected to be around 7.6% allowing the market size to approach $7.3 billion in 2026. Throughout this medical market research, we analyzed 13 neuromodulation device companies across

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Surgical Robotics Systems Market Analysis | Global | 2017-2023 | MedCore

Surgical robotics has tremendous potential to increase the effectiveness of existing procedures and to facilitate novel procedure types. The surgical robotics industry is, in many ways, still in its infancy, with more products in development than currently commercially available on the market. Most new surgical robotic systems are designed for highly specialized medical applications, which is a major draw-back for most facilities. The types of surgical robotic assisted systems covered in this section are: minimally invasive surgery robotic systems, orthopedic robotic systems, spinal robotic systems, neurosurgery robotic systems, robotic catheters and radiosurgery robotic systems.

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Spine Navigation Systems Market Analysis | Global | 2017-2023 | MedCore

The market for spine navigation systems, or spinal image guided surgery (IGS) systems, is closely linked to that of neurosurgical IGS systems. There are relatively few dedicated IGS systems for spinal procedures. Most spinal IGS procedures are performed using neurosurgical IGS systems with spinal software applications. Because spinal and neurosurgical operations are often performed by the same surgeons, this arrangement has worked well so far. Certain spinal procedures may require specialized instruments; however, these disposable instruments can be used with non-specialized systems that have the appropriate software. Many spinal IGS systems can be used to assist in trauma procedures once equipped with the right software and accessories. Spinal conditions treated with IGS include fractures, metastasis, spinal slip disc and spinal curvature. Spinal imaging software allows surgeons to perform on the thoracic and lumbar regions of the spine, while many have pelvic trauma applications. Recently, there has been a push to develop more dedicated spinal IGS and robotic systems that would be better suited to strictly spinal or trauma surgeries.

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Neurosurgery Navigation Systems Market Analysis | Global | 2017-2023 | MedCore

Neurosurgery navigation, or neuronavigation, requires the use of computer-assisted technologies to guide or “navigate” neurosurgeons during cranial procedures. This type of surgery evolved from stereotactic surgery, which gained popularity during the 1940s. Stereotaxy was developed to better locate specific small targets within the patient using a three-dimensional coordinate system. The current form of neuronavigation was established in the 1990’s but has significantly improved due to the implementation of new neuro-imaging technologies, real-time imaging capabilities, advancements in 3D localization and visualization, intraoperative capabilities, robotics and dramatic improvements in software. Neuronavigation has been at the forefront of image guided surgery (IGS) and computer assisted surgery (CAS) due to the level of sophistication associated with the procedures. It is continually evolving with the introduction of new technologies as well as the increased number of procedures for which it can be used. An example of a new technology emerging in this field is surgical virtualization. Neurosurgeons can essentially perform a trial virtual surgery using software which creates a 3D model of the surgical area, allowing them to assess the possible complications that may arise during the surgery and try alternative approaches to determine which will result in the most accurate results.

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Robotic Assisted Surgery Systems Market Overview | Global | 2017-2023 | MedView

Surgery has progressed from a risky art into a sophisticated and ever-evolving scientific discipline capable of treating many diseases and conditions. Until the industrial revolution, surgeons struggled with three principal obstacles which plagued the medical profession from its infancy: bleeding, pain and infection. Recent technological advances have increased the types of procedures that are able to be performed and, more importantly, revolutionized the way in which these procedures can be performed.

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ENT Navigation Systems Market Analysis | Australia | 2017-2023 | MedCore

Image guided surgery (IGS) assists ear, nose and throat (ENT) specialists in performing interventions where the shape of the sinus and airways can cause potential complications. The majority of ENT IGS systems are designed for ENT procedures only. However, some companies who do not manufacture a standalone ENT IGS system will bundle their ENT software with cranial software. Lacking some of the specialized features designed for neurosurgery procedures, ENT systems are relatively simple and less expensive. However, ENT procedures are more difficult to visualize than other IGS procedure types as they involve much smaller and hard to reach areas of the human body.

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Neurosurgery Navigation Systems Market Analysis | Australia | 2017-2023 | MedCore

Neurosurgery navigation, or neuronavigation, requires the use of computer-assisted technologies to guide or “navigate” neurosurgeons during cranial procedures. This type of surgery evolved from stereotactic surgery, which gained popularity during the 1940s. Stereotaxy was developed to better locate specific small targets within the patient using a three-dimensional coordinate system. IGS was initially developed in the neurosurgical field to assist in accurately navigating the path to tumors in sensitive cranial areas. Many neurosurgical procedures could not be performed without the aid of some kind of a navigation system. As a standard of care procedure, IGS systems have a high penetration rate in the neurosurgical market, with most facilities that perform neurosurgery already having a system. As a result, neurosurgical IGS products have the highest proportion of expert surgeons using these devices. The neurosurgery IGS market is primarily a replacement market, with some new sales going to facilities that may require an additional system.

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Spine Navigation Systems Market Analysis | Australia | 2017-2023 | MedCore

The market for spine navigation systems, or spinal image guided surgery (IGS) systems, is closely linked to that of neurosurgical IGS systems. There are relatively few dedicated IGS systems for spinal procedures. Most spinal IGS procedures are performed using neurosurgical IGS systems with spinal software applications. Because spinal and neurosurgical operations are often performed by the same surgeons, this arrangement has worked well so far. Certain spinal procedures may require specialized instruments; however, these disposable instruments can be used with non-specialized systems that have the appropriate software. Many spinal IGS systems can be used to assist in trauma procedures once equipped with the right software and accessories. Spinal conditions treated with IGS include fractures, metastasis, spinal slip disc and spinal curvature. Spinal imaging software allows surgeons to perform on the thoracic and lumbar regions of the spine, while many have pelvic trauma applications. Recently, there has been a push to develop more dedicated spinal IGS and robotic systems that would be better suited to strictly spinal or trauma surgeries.

more...

Surgical Robotics Systems Market Analysis | Australia | 2017-2023 | MedCore

Surgical robotics has tremendous potential to increase the effectiveness of existing procedures and to facilitate novel procedure types. The surgical robotics industry is, in many ways, still in its infancy, with more products in development than currently commercially available on the market. Early surgical robotics systems were based on industrial robots; however, most new surgical robotic systems are designed for highly specialized medical applications, which is a major drawback for most facilities. The types of surgical robotic assisted systems covered in this section are minimally invasive surgery robotic systems, orthopedic robotic systems, spinal robotic systems, neurosurgery robotic systems, robotic catheters and radiosurgery robotic systems.

more...

Neurosurgery Navigation Systems Market Analysis | China | 2017-2023 | MedCore

Neurosurgery navigation, or neuronavigation, requires the use of computer-assisted technologies to guide or “navigate” neurosurgeons during cranial procedures. This type of surgery evolved from stereotactic surgery, which gained popularity during the 1940s. Stereotaxy was developed to better locate specific small targets within the patient using a three-dimensional coordinate system. IGS was initially developed in the neurosurgical field to assist in accurately navigating the path to tumors in sensitive cranial areas. Many neurosurgical procedures could not be performed without the aid of some kind of a navigation system. As a standard of care procedure, IGS systems have a high penetration rate in the neurosurgical market, with most facilities that perform neurosurgery already having a system. As a result, neurosurgical IGS products have the highest proportion of expert surgeons using these devices. The neurosurgery IGS market is primarily a replacement market, with some new sales going to facilities that may require an additional system.

more...

Spine Navigation Systems Market Analysis | China | 2017-2023 | MedCore

The market for spine navigation systems, or spinal image guided surgery (IGS) systems, is closely linked to that of neurosurgical IGS systems. There are relatively few dedicated IGS systems for spinal procedures. Most spinal IGS procedures are performed using neurosurgical IGS systems with spinal software applications. Because spinal and neurosurgical operations are often performed by the same surgeons, this arrangement has worked well so far. Certain spinal procedures may require specialized instruments; however, these disposable instruments can be used with non-specialized systems that have the appropriate software. Many spinal IGS systems can be used to assist in trauma procedures once equipped with the right software and accessories. Spinal conditions treated with IGS include fractures, metastasis, spinal slip disc and spinal curvature. Spinal imaging software allows surgeons to perform on the thoracic and lumbar regions of the spine, while many have pelvic trauma applications. Recently, there has been a push to develop more dedicated spinal IGS and robotic systems that would be better suited to strictly spinal or trauma surgeries.

more...