Tag: Endovascular Coiling

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Revolutionizing Treatment: The Benefits and Risks of Aneurysm Coiling Unveiled”Aneurysm Coiling

Aneurysm coiling, formally known as endovascular coiling or coil embolization, is a minimally invasive surgical technique used to treat aneurysms, particularly those found in the brain. An aneurysm is an abnormal bulge or ballooning in the wall of a blood vessel. If left untreated, aneurysms can rupture, leading to potentially fatal bleeding or stroke. This blog post delves into the intricacies of aneurysm coiling, including its purpose, procedure, benefits, risks, and recovery process.

Understanding Aneurysms

An aneurysm occurs when a section of a blood vessel wall weakens and begins to bulge or balloon out. The most concerning aspect of aneurysms, especially those in the brain (cerebral aneurysms), is the risk of rupture. A ruptured aneurysm can lead to hemorrhagic stroke, brain damage, and even death.

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What is Aneurysm Coiling?

Aneurysm coiling is a procedure that aims to fill the aneurysm with tiny coils made of platinum or other materials, inducing clotting and thereby preventing blood flow into the aneurysm. This significantly reduces the risk of rupture. Unlike traditional open surgery, coiling does not require opening the skull. It is performed by a specialized physician called an interventional neuroradiologist or an endovascular neurosurgeon.

Who is a candidate?

Determining candidacy for aneurysm coiling involves a careful evaluation of several factors related to the aneurysm’s characteristics, the patient’s overall health, and the risks versus benefits of the procedure. Here are key considerations that help determine who is a suitable candidate for aneurysm coiling:

Aneurysm Size, Shape, and Location

  • Size and Shape: Smaller aneurysms with a well-defined “neck” (the area where the aneurysm bulges out from the vessel) are typically better candidates for coiling. This is because the coils can more easily secure themselves within the aneurysm without encroaching on the normal blood vessel. Large or “giant” aneurysms, or those with a wide neck, might pose technical challenges for coiling.
  • Location: Certain locations within the brain’s vasculature are more amenable to coiling due to accessibility and the risk associated with rupture.
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The Aneurysm’s Rupture Status

  • Unruptured Aneurysms: Coiling is often considered for unruptured aneurysms based on their size, location, and growth rate, along with the patient’s age and health status. The goal is to prevent rupture.
  • Ruptured Aneurysms: In cases of a ruptured aneurysm, emergency coiling may be performed to prevent rebleeding, stabilize the patient, and reduce the risks of further complications.

Patient Health and Surgical Risks

  • Overall Health: Patients in good general health are better candidates for any surgical procedure, including coiling. However, coiling’s minimally invasive nature makes it a viable option for some patients who are not candidates for traditional surgery due to health constraints.
  • Risk Factors: Age, smoking, hypertension, and family history of cerebral aneurysms can influence the decision to perform coiling.

Potential Benefits vs. Risks

The decision to proceed with aneurysm coiling also involves evaluating the potential benefits against the risks of the procedure. If the aneurysm is small and not likely to rupture (based on its size, shape, and the patient’s medical history), the risks of the procedure might outweigh the benefits. Conversely, for aneurysms with a higher risk of rupture, the benefits of coiling can significantly outweigh the risks.

Patient Preference

After discussing the risks, benefits, and alternatives, including observation or surgical clipping, the patient’s preference plays a crucial role in the decision-making process.

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The Procedure

The procedure begins with the patient receiving a local anesthetic and sedative or, in some cases, general anesthesia. The surgeon then makes a small incision in the groin to access the femoral artery. A catheter is guided through the arterial system to the site of the aneurysm in the brain using fluoroscopy (live X-ray) for guidance. Once the catheter is in place, tiny coils are threaded through it and deployed into the aneurysm. The coils conform to the shape of the aneurysm, blocking blood flow into it and reducing the risk of rupture.

Benefits of Aneurysm Coiling

  • Minimally Invasive: The procedure is less invasive than open surgery, which means a shorter hospital stay and faster recovery.
  • Reduced Risk of Complications: Since the skull is not opened, the risk of infection and other surgical complications is minimized.
  • Quicker Recovery: Patients typically recover from the coiling procedure much faster than from open brain surgery.

Risks and Considerations

While aneurysm coiling is safer than open surgery, it is not without risks. Complications can include:

  • Reaction to the contrast dye used during the procedure
  • Damage to blood vessels
  • Stroke or bleeding in the brain
  • Coil migration or incomplete aneurysm occlusion

Patients should discuss their specific risk factors with their healthcare provider.

Recovery Process

The recovery process from aneurysm coiling is generally quicker than traditional surgery. Patients may spend a day or two in the hospital for observation. Recovery at home can take a few days to several weeks, depending on the individual’s health status and the complexity of the procedure.

Conclusion

Aneurysm coiling represents a significant advancement in the treatment of cerebral aneurysms. Its minimally invasive nature, combined with the potential for a quicker recovery and reduced risks compared to open surgery, makes it a preferred option for many patients and physicians alike. However, it’s important for patients to have a thorough discussion with their healthcare provider about the benefits and risks associated with the procedure to make an informed decision tailored to their specific health needs.

DR. ALOK KUMAR UDIYA

Well-known Interventional Radiologist Dr. ALOK KUMAR UDIYA is currently a consultant at The CARE CHL, an Indore hospital with NABH accreditation. He has a distinguished medical career and has studied at numerous top federal, state, and international superspecialty medical institutes.

He earned his M.B.B.S. from M G M Medical College in Indore and then M.D. in radiodiagnosis from Lady Hardinge Medical College at Delhi University.

Following that, he completed a fellowship in neuro- and vascular interventional radiology at the Sanjay Gandhi Post Graduate Institute of Medical Sciences (SGPGIMS) in Lucknow, where he gained extensive experience in diagnostic imaging along with hepatobiliary, peripheral vascular, and neurovascular interventions.

The prestigious Institute of the liver and biliary sciences Hospital (ILBS), New Delhi, awarded him a P.D.C.C. (Post Doctoral fellowship) in Hepatobiliary intervention, where he also received further in-depth instruction and advanced training in hepatobiliary and transplant imaging and interventions.

Moreover, he completed a six-month Neuro-Interventional Fellowship (FINR) at the famous University of Zurich, where he received specialized training from Professor Anton Valavanis in the endovascular management of stroke and aneurysm. https://cvicvascular.com/

Contact Us

Contact No. –  099993 78980

Email – dralokudiya@gmail.com

Hospital

Care CHL
Address – AB Rd, near L.I.G Square, RSS Nagar, Indore, Madhya Pradesh 452008

Time – 10am to 5pm

Clinic
Address – 403 Panama Tower Geeta Bhawan Square Near Crown Palace, Indore, Madhya Pradesh
Time – 6pm To 8pm

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Unlocking the Power of Neuro Interventions: A Comprehensive Guide

Introduction

The human brain, an incredibly intricate and delicate organ, is often described as the command center of our body. It controls our thoughts, emotions, and actions, making it the epicenter of our existence. However, like any complex system, it’s not immune to malfunctions. Neurological disorders, injuries, and diseases can have profound impacts on a person’s quality of life. Fortunately, advances in medical science have given rise to a fascinating field known as neurointervention, which offers new hope for individuals dealing with various brain-related issues.

In this comprehensive guide, we will explore the world of neuro interventions, delving into what they are, how they work, and the many ways in which they are changing the landscape of neurology. We’ll discuss the most common procedures, their applications, and their potential impact on the lives of patients. To make this information accessible to all, we’ll explain complex concepts in simple language, ensuring that you come away with a clear understanding of this exciting field.

Chapter 1: The Basics of Neuro Interventions

To embark on our journey through the world of neuro interventions, let’s start by understanding the basics.

1.1 What Are Neuro Interventions?

Neuro interventions, also known as neurointerventional procedures, encompass a wide range of medical techniques designed to diagnose and treat various conditions affecting the brain, spinal cord, and blood vessels within these structures. These interventions are typically minimally invasive, meaning that they involve small incisions or no incisions at all. The primary goal of neuro interventions is to access and manipulate the affected areas of the nervous system to correct issues, alleviate symptoms, or prevent further damage.

1.2 The Role of Neurointerventional Specialists

Neurointerventional procedures are performed by medical specialists known as neurointerventional radiologists or neurointerventional surgeons. These highly trained experts have a deep understanding of the brain’s intricate structures and the vascular system, allowing them to perform these complex procedures with precision.

1.3 Why Choose Neuro Interventions?

Neuro interventions offer several advantages over traditional surgical methods. They are often less invasive, which means smaller incisions, reduced pain, and shorter recovery times. Additionally, they can sometimes be used when traditional surgery is not a viable option due to the location or nature of the problem. In this chapter, we’ll explore these benefits in more detail.

Chapter 2: Neuro Intervention Techniques

Now that we have a foundation of what neuro interventions are, let’s delve into some of the common techniques used in this field.

2.1 Angiography and Catheterization

Angiography is a diagnostic procedure that involves injecting a contrast agent into the blood vessels of the brain. This allows neurointerventional specialists to visualize the vascular system and detect abnormalities. Catheterization, on the other hand, involves inserting a thin tube called a catheter into the blood vessels to administer treatment or perform other procedures. These techniques are often used together to diagnose and treat various conditions.

2.2 Endovascular Coiling

Endovascular coiling is a technique used to treat cerebral aneurysms. It involves threading a tiny coil through a catheter to the site of the aneurysm. The coil is then deployed, causing the blood to clot within the aneurysm, ultimately sealing it off and preventing rupture.

2.3 Thrombectomy

A thrombectomy is a procedure to remove a blood clot from an artery. This technique is commonly used in the treatment of acute ischemic stroke. During the procedure, a neurointerventional specialist uses a catheter to access the clot and remove it, restoring blood flow to the brain.

2.4 Embolization

Embolization is a procedure used to block or reduce blood flow to abnormal blood vessels, such as arteriovenous malformations (AVMs) or aneurysms. It involves the injection of embolic agents, such as tiny particles or glue, into the blood vessels supplying the abnormality, effectively sealing it off.

2.5 Neurointerventional Radiosurgery

Neurointerventional radiosurgery, also known as stereotactic radiosurgery, is a non-invasive technique that uses precisely targeted radiation to treat brain tumors and other abnormalities. It allows for the delivery of a high dose of radiation to the affected area while minimizing exposure to surrounding healthy tissue.

Chapter 3: Conditions Treated with Neuro Interventions

Neuro interventions are employed to address a variety of conditions affecting the brain and nervous system. In this chapter, we’ll explore some of the most common neurological disorders and diseases that can be treated with these techniques.

3.1 Stroke

Stroke is a leading cause of disability and death worldwide. It occurs when blood flow to the brain is disrupted, either due to a clot (ischemic stroke) or a burst blood vessel (hemorrhagic stroke). Neuro interventions, particularly thrombectomy for ischemic strokes, have revolutionized stroke care, offering patients a higher chance of recovery when administered promptly.

3.2 Cerebral Aneurysms

Cerebral aneurysms are weakened areas in the blood vessels of the brain that can balloon and potentially rupture, leading to life-threatening bleeding. Endovascular coiling and other embolization techniques are used to treat these aneurysms, reducing the risk of rupture.

3.3 Arteriovenous Malformations (AVMs)

AVMs are abnormal tangles of blood vessels that can disrupt normal blood flow in the brain, potentially causing seizures or hemorrhage. Embolization procedures are often used to treat AVMs by reducing blood flow through these abnormal vessels.

3.4 Brain Tumors

Brain tumors can be both benign and malignant, but they all present significant health challenges. Neurointerventional radiosurgery provides a targeted approach to treat these tumors, offering a lower risk of complications compared to traditional surgery.

3.5 Cerebral Venous Sinus Thrombosis

Cerebral venous sinus thrombosis (CVST) is a rare but serious condition where blood clots form in the brain’s venous sinuses. Neuro interventions, including catheter-directed thrombolysis, can be used to dissolve these clots and restore normal blood flow.

Chapter 4: The Benefits of Minimally Invasive Procedures

One of the most significant advantages of neuro interventions is their minimally invasive nature. In this chapter, we will explore the numerous benefits of these less invasive techniques.

4.1 Reduced Risk

Traditional open surgeries often carry a higher risk of complications, such as infection, bleeding, and scarring. Minimally invasive procedures, in contrast, reduce these risks, making them a safer option for many patients.

4.2 Faster Recovery

The recovery period after a minimally invasive neuro intervention is typically shorter than that of traditional surgery. Patients can often return to their normal activities sooner, which contributes to an improved quality of life.

4.3 Less Pain

Smaller incisions or no incisions at all mean less pain for the patient. This can lead to reduced reliance on pain medication and a more comfortable recovery.

4.4 Lower Infection Risk

With smaller incisions, there is a decreased risk of post-operative infections. This is particularly important when dealing with conditions in the brain, where infection can have severe consequences.

4.5 Enhanced Precision

Minimally invasive procedures often provide better precision and targeting. This is especially crucial

when working in the delicate and complex environment of the brain.

Chapter 5: Preparing for a Neuro Intervention

Before undergoing a neuro intervention, patients must go through a series of steps to ensure a safe and successful procedure. This chapter will guide you through the preparation process.

5.1 Consultation and Diagnosis

The journey begins with a consultation with a neurointerventional specialist. They will perform a thorough evaluation, which may include medical history, physical examination, and imaging studies (like MRI or CT scans) to diagnose the condition.

5.2 Informed Consent

Once the diagnosis is clear, the specialist will discuss the recommended procedure with the patient, explaining the potential risks and benefits. Informed consent is a critical step, ensuring that the patient fully understands the procedure and its implications.

5.3 Preoperative Evaluation

Before the intervention, patients may undergo preoperative evaluations to assess their overall health. This evaluation can include blood tests, electrocardiograms, and other necessary tests to determine fitness for the procedure.

5.4 Anesthesia

Depending on the procedure, anesthesia may be required. Patients will receive detailed information about the type of anesthesia used, its effects, and potential risks.

5.5 Planning and Scheduling

The scheduling of the procedure is crucial, as it allows the patient to prepare both physically and mentally. It’s essential to follow any pre-procedure instructions provided by the medical team.

Chapter 6: The Neuro Intervention Procedure

Now that the preparations are complete, it’s time to undergo the neuro intervention procedure. In this chapter, we’ll walk through the typical steps involved in the process.

6.1 Anesthesia and Sedation

Depending on the procedure, anesthesia or sedation will be administered to ensure the patient is comfortable and pain-free throughout the intervention.

6.2 Accessing the Affected Area

A small incision is made, often in the groin, and a catheter is inserted into the blood vessels. This catheter is carefully guided through the vascular system to reach the affected area within the brain or spinal cord.

6.3 Imaging Guidance

During the procedure, imaging techniques like fluoroscopy or angiography are used to visualize the blood vessels and the target area, ensuring the utmost precision.

6.4 Treatment or Diagnosis

At this stage, the neurointerventional specialist may administer treatment or obtain diagnostic samples, depending on the procedure’s purpose. This could involve clot removal, embolization, or coiling, among others.

6.5 Closure and Recovery

Once the procedure is complete, the catheter is removed, and the small incision is closed with sutures or adhesive. Recovery in a designated area follows, with the medical team monitoring the patient’s condition and vital signs.

Chapter 7: Recovery and Aftercare

After the neuro intervention procedure, proper recovery and aftercare are essential for a successful outcome. This chapter outlines the typical recovery process and what patients can expect.

7.1 Post-Procedure Monitoring

Patients are closely monitored after the procedure. Vital signs, neurological status, and any potential complications are carefully observed.

7.2 Pain Management

Pain management is essential to ensure the patient’s comfort during the recovery period. The medical team will provide guidance on pain relief options.

7.3 Discharge and Follow-Up

Once stable, patients are discharged with detailed instructions for post-procedure care. Follow-up appointments are scheduled to monitor progress and address any concerns.

7.4 Returning to Normal Activities

The recovery timeline varies depending on the procedure and the individual patient. Patients are advised on when they can gradually resume normal activities and work.

7.5 Long-Term Follow-Up

Some conditions may require long-term follow-up to ensure the effectiveness of the neuro intervention. The medical team will provide guidance on continued care and monitoring.

Chapter 8: Potential Complications and Risks

Like any medical procedure, neuro interventions carry some risks and potential complications. In this chapter, we’ll discuss these risks and how they are managed.

8.1 Infection

Infections at the incision site are possible, but they are relatively rare due to the minimally invasive nature of these procedures. Proper wound care and post-operative instructions can help prevent infection.

8.2 Bleeding

Bleeding at the incision site or within the blood vessels is a potential complication. The medical team is prepared to address and manage bleeding during the procedure.

8.3 Allergic Reactions

In some cases, patients may have an allergic reaction to the contrast dye or other substances used during the procedure. These reactions are rare but can be managed by the medical team.

8.4 Neurological Complications

Neurological complications, such as stroke, are possible but infrequent. Neurointerventional specialists are highly trained to minimize these risks.

8.5 Blood Clots

The formation of blood clots, either within the blood vessels or at the incision site, is a potential complication. Proper medications and monitoring can help prevent and manage this risk.

Chapter 9: Future Developments in Neuro Interventions

The field of neuro interventions is continuously evolving, with ongoing research and technological advancements. In this chapter, we’ll explore the exciting future prospects for neurointerventional procedures.

9.1 Advancements in Imaging

Improvements in imaging technologies, such as 3D visualization and real-time tracking, will enhance the precision and safety of neuro interventions.

9.2 Targeted Therapies

Researchers are exploring new ways to target specific molecules or cells within the brain, allowing for more tailored treatments for neurological conditions.

9.3 Artificial Intelligence (AI)

AI is playing an increasingly important role in neurointervention, aiding in diagnosis, treatment planning, and post-procedure monitoring.

9.4 Nanotechnology

Nanotechnology may enable the development of miniature devices for precise drug delivery and targeted therapy within the brain.

9.5 Personalized Medicine

The future of neuro interventions may involve more personalized approaches, taking into account each patient’s unique genetics and brain structure.

Chapter 10: Patient Stories and Testimonials

To offer a more human perspective on neuro interventions, this chapter will feature real-life patient stories and testimonials. These accounts will provide insight into the impact of these procedures on individuals and their families.

Conclusion

Neuro interventions represent a remarkable intersection of medicine, technology, and human ingenuity. These minimally invasive procedures have the power to change lives, offering hope and solutions for those facing neurological conditions that were once deemed untreatable or high-risk. As the field continues to advance, we can expect even more precise and effective interventions, further improving the quality of life for countless individuals.

In this comprehensive guide, we’ve demystified the world of neuro interventions, breaking down complex concepts into simple language. We’ve explored the various procedures, their applications, and the benefits they offer. We’ve also discussed the preparation, recovery, and potential risks involved, ensuring that you have a clear understanding of what to expect.

The future of neuro interventions is incredibly promising, with ongoing research and technological innovations pushing the boundaries of what is possible. As these developments continue, we can look forward to even more personalized and effective treatments, ultimately improving the lives of those in need.

So, whether you’re a patient seeking answers, a caregiver supporting a loved one, or simply curious about the fascinating world of neuro interventions, this guide has provided you with a comprehensive overview of this vital field. As we move forward, let’s remain hopeful and excited about the possibilities that neuro interventions hold for a brighter, healthier future.

DR. ALOK KUMAR UDIYA

Well-known Interventional Radiologist Dr. ALOK KUMAR UDIYA is currently a consultant at The CARE CHL, an Indore hospital with NABH accreditation. He has a distinguished medical career and has studied at numerous top federal, state, and international superspecialty medical institutes.

He earned his M.B.B.S. from M G M Medical College in Indore and then M.D. in radiodiagnosis from Lady Hardinge Medical College at Delhi University.

Following that, he completed a fellowship in neuro- and vascular interventional radiology at the Sanjay Gandhi Post Graduate Institute of Medical Sciences (SGPGIMS) in Lucknow, where he gained extensive experience in diagnostic imaging along with hepatobiliary, peripheral vascular, and neurovascular interventions.

The prestigious Institute of the liver and biliary sciences Hospital (ILBS), New Delhi, awarded him a P.D.C.C. (Post Doctoral fellowship) in Hepatobiliary intervention, where he also received further in-depth instruction and advanced training in hepatobiliary and transplant imaging and interventions.

Moreover, he completed a six-month Neuro-Interventional Fellowship (FINR) at the famous University of Zurich, where he received specialized training from Professor Anton Valavanis in the endovascular management of stroke and aneurysm.

Contact Us

Contact No. –  099993 78980

Email – dralokudiya@gmail.com

Hospital

Care CHL
Address – AB Rd, near L.I.G Square, RSS Nagar, Indore, Madhya Pradesh 452008

Time – 10am to 5pm

Clinic
Address – 403 Panama Tower Geeta Bhawan Square Near Crown Palace, Indore, Madhya Pradesh
Time – 6pm To 8pm

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What Is Brain Aneurysm Coiling

Top 5 Risk of Coiling | What Is Brain Aneurysm Coiling

What Is Brain Aneurysm Coiling

A brain aneurysm is a bulge or ballooning in a blood vessel in the brain that can potentially rupture and cause bleeding in the brain. Brain aneurysm coiling, also known as endovascular embolization, is a treatment used to prevent the aneurysm from rupturing.

Brain Aneurysm Coiling

Brain aneurysm coiling is a minimally invasive procedure that involves inserting a catheter into an artery in the groin, threading it up through the aorta and into the affected artery in the brain. Once the catheter is in place, a small wire mesh coil is inserted into the aneurysm. The coil fills the aneurysm and causes the blood to clot, which seals off the aneurysm and prevents it from rupturing.

The benefits of brain aneurysm coiling include a shorter recovery time, minimal risk of complications and the ability to treat larger and more complex aneurysms. In addition, the procedure is less invasive than traditional open surgery and does not require general anesthesia.

However, there are also some risks associated with brain aneurysm coiling. These include stroke, infection and the risk of the aneurysm re-opening.

Here are the main points to consider when discussing brain aneurysm coiling:

  1. What is a Brain Aneurysm? A brain aneurysm is a bulging or ballooning of a blood vessel in the brain. It is caused by weakened walls of the blood vessel, which can lead to a rupture of the vessel and bleeding in the brain.
  2. What is Brain Aneurysm Coiling? Coiling is a minimally invasive procedure used to treat a brain aneurysm. It involves the insertion of a catheter through the femoral artery in the groin or the carotid artery in the neck to deliver a coil or coils into the aneurysm.
  3. How Does Coiling Work? The coil or coils are used to block off the aneurysm, preventing further bleeding and reducing the risk of rupture. This procedure is also known as endovascular coiling or embolization.
  4. What is the Risk of Coiling? Coiling is a relatively safe procedure, with a low risk of complications. However, as with any medical procedure, there is a small risk of side effects, such as stroke, infection, and allergic reactions.
  5. What is the Recovery Time for Coiling? Recovery time varies from patient to patient, but the procedure typically takes 1 to 2 days. After the procedure, patients are typically monitored in the hospital for several days before being discharged.

Brain aneurysm coiling is a highly effective and minimally invasive procedure used to treat brain aneurysms. It has a low risk of complications and a relatively short recovery time. If you are at risk for a brain aneurysm or have been diagnosed with one, it is important to discuss coiling with your doctor to determine if it is the best treatment option for you.

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Top 5 Risk of Coiling

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Coiling is a process used to shape and bind wires together, creating a uniform and aesthetically pleasing finish. This process is commonly used in electrical wiring, mechanical engineering, and electronics. While coiling has many advantages, it also carries certain risks that can lead to serious injury and damage. Here are the top five risks of coiling:
1. Electrical Shock: If wires are not properly coiled, the insulation may be compromised, leading to an electrical shock if the wires come into contact with each other.

2. Fire Hazard: Improperly coiled wires can cause a short circuit, leading to sparks and even a fire.

3. Mechanical Injury: Coiling wires can be a tedious and potentially dangerous task. Improperly coiled wires can cause cuts, scrapes, and other physical injuries.

4. Damage to Equipment: If wires are not coiled correctly, they can cause damage to equipment. This can lead to costly repairs or replacements.

5. Damage to Computer Components: Incorrectly coiled wires can lead to damage to sensitive computer components, such as memory chips and processors. Coiling is a valuable process but it is important to follow safety guidelines and use the proper tools and techniques