Robotic Cardiac Surgery Evaluation Before Treatment focused on comprehensive heart assessment, advanced imaging review, and personalized surgical planning

Understand the pre operative evaluation for Robotic Thoracic Surgery. Learn about tests like Computed Tomography 256 Slice PET CT and Spect CT used for diagnosis.

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Evaluation Before Treatment

Initial Consultation And History

The evaluation process begins with a detailed consultation with the thoracic surgeon. The doctor will review the complete medical history of the patient including smoking history occupational exposures and previous surgeries.

For lung issues they track symptoms like cough shortness of breath or coughing up blood. For esophageal issues they assess difficulty swallowing or weight loss. This initial step establishes the need for surgery and identifies any potential risks. The doctor will explain why robotic surgery is the recommended course of action based on this history and perform a physical examination.

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Advanced Imaging With Computed Tomography 256 Slice

Robotic Thoracic Surgery

The Computed Tomography 256 Slice scanner is an ultra fast CT machine that captures detailed cross sectional images of the chest. In thoracic surgery it is used to visualize lung nodules tumors and the complex vascular anatomy surrounding the lungs and heart.

The speed of the scan reduces motion artifacts from breathing providing crystal clear images of the airways and blood vessels. This roadmap is vital for the surgeon to plan Robotic Lung Surgery allowing them to identify key vessels safely and plan the precise resection of the tumor during the robotic procedure.

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Metabolic Imaging With PET CT

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PET CT combines positron emission tomography with computed tomography to provide metabolic and anatomic information. It uses a radioactive sugar tracer to light up areas of high metabolic activity which are often cancer cells. This scan is highly sensitive for detecting lymph node metastases in lung and esophageal cancer.

A positive PET CT might change the treatment plan from surgery alone to chemotherapy or radiation first. It is a critical tool for accurate staging and treatment planning ensuring that surgery is the right step for the patient.

Functional Imaging With Spect CT

Spect CT or Single Photon Emission Computed Tomography combined with CT provides functional information about the organs. It is particularly useful for evaluating lung function before surgery. By showing which parts of the lung are contributing most to breathing it helps the surgeon predict how well the patient will breathe after a portion of the lung is removed. If a patient has poor lung function removing a large section via Robotic Lung Surgery might be risky so this test helps define the safe limits of resection.

The Role Of Scintigraphy In Evaluation

Scintigraphy also known as a V/Q scan is a nuclear medicine test used to evaluate air flow and blood flow in the lungs. It is a standard test for patients with borderline lung function who are being considered for lung resection. A radioactive tracer is inhaled and injected to map the function of each lung lobe. This quantitative data allows the surgeon to calculate the predicted post operative lung function. This test ensures that the surgery is performed on patients who will have sufficient lung capacity to live comfortably afterwards.

Bronchoscopy And EBUS

Before proceeding with Robotic Lung Surgery it is often necessary to look inside the airways. Bronchoscopy involves passing a flexible camera down the throat into the lungs to visualize the tumor. Endobronchial Ultrasound or EBUS uses a special scope to see through the airway walls and sample lymph nodes in the center of the chest. This biopsy confirms the diagnosis and checks for spread to the lymph nodes. Knowing the exact status of the lymph nodes is crucial for determining the stage of the cancer and the extent of surgery required.

Pulmonary Function Testing

Before undergoing thoracic surgery patients must undergo a comprehensive evaluation of their breathing capacity. Pulmonary Function Tests or PFTs measure how much air the lungs can hold and how quickly air can be moved in and out. These tests also measure how well oxygen moves from the lungs into the blood. The results help the surgeon and anesthesiologist determine if the patient can tolerate the loss of lung tissue and the stress of single lung ventilation during the robotic surgery.

Robotic Thoracic Surgery

Cardiac Stress Testing

Robotic thoracic surgery places specific demands on the heart. During the procedure one lung is deflated to create space for the robot to work which increases the workload on the heart. Therefore a cardiac stress test is often performed. This helps identify any underlying heart conditions that might cause complications during surgery. An echocardiogram may also be done to check heart valve function and pressure in the lung arteries. Ensuring the heart is strong enough is a critical safety step.

Blood Work And Anesthesia Assessment

Routine blood tests are conducted to check for anemia kidney function and clotting ability. Anemia is common in cancer patients so correcting hemoglobin levels before surgery is important. An anesthesiologist will review the airway and allergy history of the patient. Medications such as blood thinners must be stopped in advance to minimize bleeding risk. This comprehensive assessment ensures maximum safety during the operation and smooth recovery from anesthesia.

Pre-Operative Instructions

In the days leading up to the surgery patients receive specific instructions. This may include breathing exercises to strengthen the lungs and smoking cessation which is mandatory to reduce the risk of pneumonia. Patients will be told to stop eating and drinking after midnight the night before the surgery. Following these rules is critical to prevent aspiration during anesthesia and to avoid cancellation of the surgery.

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FREQUENTLY ASKED QUESTIONS

Why is a CT 256 Slice better than a standard CT?

The CT 256 Slice is faster and captures more detail reducing blur from breathing which is essential for accurate lung mapping.

It is performed under sedation so the patient is usually asleep or very relaxed and does not feel pain or remember the procedure.

Yes it involves a small amount of radiation from the tracer and the CT scan but the diagnostic value for cancer staging usually outweighs the risk.

We need to ensure you will have enough breathing capacity left after a portion of your lung is removed to live an active life.

The evaluation process including all scans and clearances typically takes two to three weeks to ensure comprehensive planning for surgery.

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