Medical Polyoxymethylene in Neurosurgical Applications: A Critical Review

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Medical Polyoxymethylene in Neurosurgical Applications: A Critical Review
Medical Polyoxymethylene is employed in instrumentation such as spinal fusion cages

Neurosurgical procedures demand materials that exhibit exceptional properties, and Medical Polyoxymethylene has emerged as a potential candidate for various neurosurgical applications. Let's critically review its utilization in this field and its impact on neurosurgery.

 

The Global Medical Polyoxymethylene (POM) Market Size Was Valued At US$ 199.8 Million In 2022 And Is Anticipated To Witness A Compound Annual Growth Rate (CAGR) of 3.37% from 2023 to 2030. 

 

1.Cranial Implants: Medical Polyoxymethylene is used in cranial implants due to its biocompatibility and strength. These implants provide structural support and protection to the brain after traumatic injuries or surgical procedures.

 

2. Spinal Instrumentation: In spinal surgeries, Medical Polyoxymethylene is employed in instrumentation such as spinal fusion cages. Its radiolucency allows for better visualization during imaging, aiding accurate placement.

 

3. Shunts and Catheters: Medical Polyoxymethylene's chemical resistance and biocompatibility make it suitable for shunts and catheters used in treating hydrocephalus and other neurosurgical conditions.

 

4. Neurosurgical Instruments: Precision and reliability are vital in neurosurgery, and Medical Polyoxymethylene offers these characteristics in the form of instruments like forceps, drills, and clamps.

 

5. 3D Printing for Customization: The advent of 3D printing technology has allowed the customization of Medical Polyoxymethylene implants, providing tailored solutions for patients with unique anatomies.

 

6.Cerebrovascular Devices: Medical Polyoxymethylene's low friction and wear resistance properties make it valuable in cerebrovascular devices like aneurysm clips and flow diverters.

 

7. Biodegradable Neurosurgical Implants: Ongoing research explores the development of biodegradable Medical Polyoxymethylene implants that gradually degrade after serving their purpose, reducing the need for secondary surgeries.

 

8. Healing and Tissue Interaction: Critical research focuses on understanding how Medical Polyoxymethylene interacts with brain tissues during the healing process to optimize patient outcomes. Global polyether ether ketone market Was Valued At US$ 634.9 Million In 2021, In Terms Of Revenue, And Is Expected To Exhibit A CAGR Of 7.18% During The Forecast Period (2022 To 2030).

 

 

Medical Polyoxymethylene has made significant strides in neurosurgical applications. However, continued research and development are essential to fully harness its potential and further improve patient care in neurosurgery. 

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