Foshan Fosun Chancheng Hospital
Foshan Fosun Chancheng Hospital

Foshan Fosun Chancheng Hospital

foshan

Specialties
26
Departments
38

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About

Foshan Fosun Chancheng Hospital, formerly Foshan Chancheng Central Hospital, was founded in 1958 and is a Grade 3A (tertiary Class A) general hospital in Foshan, Guangdong, combining clinical care, rehabilitation, research and teaching. It runs two campuses with five medical buildings and 232,000 square metres of floor space, has 1,750 authorized beds, and reports more than 3.19 million outpatient and emergency visits and over 70,000 admissions a year, with a staff of more than 2,800 of whom over 1,200 hold mid-level or senior professional titles. Care is organised around orthopedics, covering spine, joint, trauma, hand and sports medicine, together with women's and children's health, cardiology, general and digestive surgery, oncology, traditional Chinese medicine and health management, and 28 key-specialty programmes span 22 clinical fields. The cardiology department holds the national chest pain, atrial fibrillation, heart failure, hypertension and cardiac rehabilitation centre certifications, and neurology holds stroke, memory and headache centre certifications. Technology in routine use includes the da Vinci surgical robot, CyberKnife M6 and VitalBeam radiotherapy systems, spine and joint surgery robots, PET-CT, dual-source CT and 3.0 Tesla MRI. The hospital is an affiliated hospital of Guangdong Medical University and a Foshan clinical college of Guangzhou University of Chinese Medicine, and its Fosun Chancheng International Medical Center coordinates appointments, insurance, interpreting and nursing support for patients from abroad.

Specialties

Physicians

1-12 of 248

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Departments

  • Cardiology
  • Endocrinology and Metabolic Diseases
  • Neurology
  • Pulmonology and Respiratory Medicine
  • Gastroenterology
  • Nephrology and Dialysis Centre
  • Rheumatology
  • Infectious Diseases
  • Spine Surgery
  • Orthopaedics and Joint Replacement
  • Trauma Orthopaedics
  • Sports Medicine
  • Hand Surgery
  • Gastrointestinal, Colorectal and Hernia Surgery
  • Hepatobiliary and Pancreatic Surgery
  • Thoracic Surgery
  • Breast Surgery
  • Thyroid and Vascular Surgery
  • Urology
  • Andrology
  • Neurosurgery
  • Wound Repair
  • Plastic, Reconstructive and Aesthetic Surgery
  • Gynaecology
  • Pediatric Surgery
  • Pediatric Rehabilitation Medicine
  • Precision Oncology Centre
  • ENT, Head and Neck Surgery
  • Dentistry and Oral Surgery
  • Ophthalmology
  • Optometry and Vision Centre
  • Dermatology
  • Alma Laser Aesthetics Centre
  • Physical Medicine and Rehabilitation
  • Modern Sports Medicine Rehabilitation Centre
  • Pain Medicine
  • Interventional Ultrasound Centre
  • Interventional Radiology

Procedures

Technologies and equipment

4D Breast Ultrasound

4D breast ultrasound, also known as automated breast volumetric scanning, is an imaging method that supports the diagnosis of breast cancer. Unlike a hand-held ultrasound, it uses a dedicated probe that moves automatically across the breast to capture the whole organ as a complete three-dimensional volume. It is mainly used alongside mammography, especially for women with dense breast tissue, where a denser background can hide lesions on a standard mammogram. The examination is comfortable, non-invasive and free of ionising radiation, making it a valuable additional layer in breast screening and assessment.

PET-CT

PET-CT is an advanced hybrid imaging method that combines positron emission tomography with computed tomography in a single scan, mapping both the metabolic activity and the anatomical structure of the body at once. A small dose of a radioactive tracer, often a glucose analogue, is injected and gathers in cells that are working harder than normal, which is typical of many tumours. Because it can show where a disease is active before it changes the shape of an organ, PET-CT is one of the most valuable tools for detecting cancer, working out how far it has spread, and checking whether treatment is working.

CyberKnife M6

CyberKnife M6 is a robotic system for stereotactic radiosurgery and stereotactic body radiotherapy (SBRT). Despite the name, there is no knife and no cutting. A small linear accelerator sits on a computer-guided robotic arm and delivers many thin beams of focused radiation from hundreds of angles. The beams converge on the tumour with sub-millimetre accuracy, so a high dose reaches the target while nearby healthy tissue is spared. Imaging during treatment tracks the tumour continuously, and a motion-synchronisation feature follows targets that move with breathing, such as those in the lung or liver. Treatment is non-invasive and painless, needs no rigid head frame, and is usually given as an outpatient over one to five sessions. The decision is always made individually by the radiation oncology team.

EBUS Endobronchial Ultrasound

Endobronchial ultrasound (EBUS) is a minimally invasive method that combines bronchoscopy with ultrasound to examine the airways and the tissues and lymph nodes that surround them. A thin, flexible bronchoscope carrying a camera and a small ultrasound probe is passed through the mouth into the airways, where the probe creates real-time images of structures just beyond the airway wall, such as lymph nodes and masses that cannot be seen with a camera alone. Under this live ultrasound guidance, a fine needle can take samples for the laboratory in the same session, all without any surgical incision.

Femtosecond Laser (Laser Vision Correction)

Femtosecond laser technology is the foundation of modern, bladeless laser vision correction, used to treat refractive errors such as short-sightedness (myopia), long-sightedness (hyperopia) and astigmatism. Working with ultra-fast, low-energy pulses, the laser performs the most delicate steps inside the cornea with great precision and without a mechanical blade. It powers several well-known correction methods, in which the laser either creates a thin protective corneal flap or shapes a small disc of tissue to be removed. The aim is the same: to reduce or remove a person's need for glasses and contact lenses, with a fast recovery.

DSA Digital Subtraction Angiography

Digital subtraction angiography (DSA) is an advanced imaging method that shows the blood vessels throughout the body in fine detail. A thin catheter delivers a contrast agent into the arteries, and specialised computer processing strips away the surrounding bone and tissue so that only the vessels stand out sharply. It is used to detect vascular problems such as narrowing, aneurysm, malformation and abnormal connections in the brain, abdomen, skin and limbs. DSA is also the basis for many minimally invasive treatments, allowing a specialist to find and, in the same session, treat a vascular problem through a tiny entry point rather than open surgery.

Da Vinci Robotic Surgery

The da Vinci robotic surgical system lets a surgeon perform complex operations through a few small keyhole incisions instead of one large cut. Sitting at a nearby console, the surgeon controls tiny wristed instruments and a magnified high-definition three-dimensional camera, while the robotic arms translate every hand movement into precise, steady motion inside the body. The system never acts on its own: the surgeon is in full control at all times. For patients, this minimally invasive approach often means less pain, smaller scars, less blood loss and a quicker return to normal life.

3 Tesla MRI

3 Tesla MRI is a high-field magnetic resonance imaging scanner that produces exceptionally detailed pictures of the inside of the body. The "3 Tesla" refers to the strength of its magnet, which is about twice that of a standard MRI scanner, and this extra power allows sharper, higher-resolution images, often in less time. Like all MRI, it uses a strong magnetic field and radio waves rather than X-rays, so there is no ionising radiation involved. It is especially valuable for examining the brain, the nervous system, joints and soft tissues, helping doctors detect and characterise problems that may be hard to see on other scans.

Digital Mammography

Digital mammography is a low-dose X-ray method used to screen for and detect breast cancer at an early stage. It captures very high-resolution digital images of the breast that a radiologist can examine and enhance on screen, revealing small nodules, masses and tiny specks of calcium that may not be felt or seen on other tests. Because it can find changes long before they cause symptoms, it is the cornerstone of breast cancer screening and one of the most effective tools for catching the disease when it is most treatable.

Endoscopic Ultrasound (EUS)

Endoscopic ultrasound (EUS) combines endoscopy and ultrasound in a single thin instrument, allowing the deeper layers of the digestive tract and the organs and tissues around it to be examined in detail. By placing a tiny ultrasound probe at the tip of an endoscope and guiding it inside the body, very close to the area of interest, it produces highly detailed images of structures such as the pancreas, bile ducts and nearby lymph nodes that can be hard to see from the outside. When needed, a fine needle can take a sample for the laboratory during the same procedure, all without any surgical incision.

Robotic Arm-Assisted Orthopedic Surgery

Robotic arm-assisted orthopedic surgery is a technology used mainly in knee and hip replacement to plan and carry out the operation with very high accuracy. A detailed three-dimensional plan is built from the patient's own CT scan, and during surgery a robotic arm guides the surgeon's instruments so that bone is prepared and the implant is positioned to that exact plan. The surgeon always holds and directs the instrument; the robotic arm adds steadiness and built-in limits that protect the surrounding tissue. The aim is a joint that fits and balances well, which can mean less pain and a smoother recovery.

pH-metry (Reflux Diagnosis)

pH-metry is a diagnostic test that confirms reflux disease by directly measuring how much acid reaches the food pipe (oesophagus) over an extended period. It is especially useful when standard endoscopy looks normal but a person still has reflux-type symptoms, because it captures acid exposure that a single snapshot examination would miss. In a common modern version, a tiny pH capsule is attached to the lower oesophagus during a brief endoscopy under sedation, then records acid levels for about 24 to 48 hours before detaching on its own and passing naturally. The result gives an objective picture of whether, and how often, acid is reaching the oesophagus.

IPL (BBL) Intense Pulsed Light

IPL, or intense pulsed light, also known by the brand name BBL (BroadBand Light), is a light-based skin treatment that uses a broad spectrum of wavelengths rather than a single laser beam. Filters let the clinician select the right band of light for each concern, so one device can address brown spots, redness, broken capillaries and overall skin dullness, and even reduce unwanted hair. The light is absorbed by pigment or by the small vessels causing redness, gently breaking them down so the skin clears and looks more even. It is a versatile, comfortable treatment with little to no downtime.

Dual-Energy CT

Dual-energy CT is an advanced form of computed tomography that scans the body at two different X-ray energy levels at the same time. A standard CT uses a single energy and shows mainly the shape and density of tissues, but by comparing how structures behave at two energies, dual-energy CT can tell different materials apart far more precisely. This added information helps doctors characterise what they see, such as distinguishing one type of tissue or deposit from another, and it can often be achieved with less contrast agent and a lower radiation dose. It uses X-rays, as all CT does, but with techniques designed to keep exposure low.

Location

No. 3 Sanyou South Road, Chancheng District, Foshan, Guangdong, China

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