Dr Aman Manocha
About Me
Dr Aman Manocha
MD
Radiologist
10 Years Experience
Biography
My Clinic
OPD Hours
| Monday | Morning | 10:00 AM | - | 02:00 PM |
| Evening | 06:00 PM | - | 09:00 PM | |
| Tuesday | Morning | 10:00 AM | - | 02:00 PM |
| Evening | 06:00 PM | - | 09:00 PM | |
| Wednesday | Morning | 10:00 AM | - | 02:00 PM |
| Evening | 06:00 PM | - | 09:00 PM | |
| Thursday | Morning | 10:00 AM | - | 02:00 PM |
| Evening | 06:00 PM | - | 09:00 PM | |
| Friday | Morning | 10:00 AM | - | 02:00 PM |
| Evening | 06:00 PM | - | 09:00 PM | |
| Saturday | Morning | 10:00 AM | - | 02:00 PM |
| Evening | 06:00 PM | - | 09:00 PM | |
| Sunday | Morning | 10:00 AM | - | 02:00 PM |
| Evening | 06:00 PM | - | 09:00 PM |
Services
Specialised care and treatments offered
INTERVENTIONAL RADIOLOGY PROCEDURES
This subspecialty employs image guidance technologies like ultrasound, CT, or fluoroscopy to perform minimally invasive treatments without large incisions. Interventional radiology has revolutionized many therapeutic approaches offering reduced recovery time and lower complication rates compared to traditional surgery.
- Treatment examples: Percutaneous biopsies; draining abscesses; vascular embolization; angioplasty; stent placements are some common interventions.
- The benefits include:
FLUOROSCOPY
The technique called fluoroscopy provides real-time moving X-ray images allowing visualization of dynamic processes within the body such as swallowing or blood flow during interventional procedures. This helps clinicians analyze function along with structure simultaneously.
- Main uses include: gastrointestinal tract examinations (like barium swallow), placement guidance during catheter insertion; cardiac angiograms; joint injections.
- Treatment guidance: This modality assists interventions by showing instruments’ movement directly inside target anatomy enhancing procedural safety.
- User experience: The exam duration varies from seconds up to hour-long depending on complexity demanded by examination type.
- Safety considerations: X-ray exposure is minimized using pulsed fluoroscopy modes but protective shielding remains important.
- Efficacy : It complements static radiographs providing functional insights unattainable otherwise.
This real-time imaging option bridges diagnostic radiology with therapeutic intervention highlighting critical physiologic mechanisms vital for accurate diagnosis and successful therapy delivery .
MAMMOGRAPHY
Mammography is an X-ray based screening method specifically designed for early detection of breast cancer. It plays a crucial role in identifying abnormalities before symptoms appear, improving treatment outcomes significantly.
- Screening purpose: Recommended routinely for women over certain ages or with family history risks to detect small masses or calcifications early on.
- The procedure involves compressing: breast tissue gently between two plates to obtain clear images minimizing distortion and exposure dose during low-dose X-rays acquisition.
- Disease detection: Enables identification of suspicious lumps, architectural distortions or microcalcifications indicative of malignant processes requiring further evaluation.
- Lifestyle impact:The test usually takes about 20 minutes with minimal discomfort; occasional follow-up imaging may be needed based on findings.
Mammography remains an effective preventive tool that facilitates prompt interventions thereby reducing breast cancer mortality through early diagnosis among at-risk populations worldwide.
ULTRASOUND IMAGING
Ultrasound imaging, also known as sonography, uses high-frequency sound waves to create live images of internal body structures. It is frequently employed due to its safety profile and real-time visualization capabilities.
- Applications: Widely used for evaluating abdominal organs, fetal development during pregnancy, blood flow via Doppler ultrasound, and guiding needle biopsies.
- Painless & safe: This technique involves no ionizing radiation making it very safe for all age groups including pregnant women.
- User-dependent quality: Image clarity can vary depending on operator skill and patient characteristics such as body habitus.
- Differentiation capability: Helps distinguish cystic versus solid masses and assess organ texture anomalies effectively.
The portability and immediacy of ultrasound make it an essential frontline imaging option across diverse clinical settings providing valuable diagnostic insights rapidly without discomfort or risk to patients.
MAGNETIC RESONANCE IMAGING (MRI)
An MRI is a sophisticated imaging tool that uses powerful magnets and radio waves to generate detailed images of organs and tissues without the use of ionizing radiation. It is particularly useful for soft tissue evaluation.
- Uses: Commonly applied in neurological, musculoskeletal, and cardiovascular assessment to detect tumors, ligament injuries, or brain abnormalities.
- How it works: Patients lie inside a cylindrical scanner while magnetic fields interact with hydrogen atoms in the body producing image signals.
- Procedure duration: Typically ranges between 20-60 minutes depending on the study area and sequence complexity.
- No radiation risks: Safe for most patients but not suitable for those with certain implants like pacemakers or metal fragments.
This imaging modality provides exceptional contrast between different tissue types enabling accurate diagnosis often unreachable by other techniques. Its versatility makes it indispensable in many diagnostic pathways.
COMPUTED TOMOGRAPHY (CT) SCAN
A Computed Tomography (CT) scan is a diagnostic imaging procedure that uses X-rays and computer technology to create detailed cross-sectional images of the body. It helps physicians get a clear view of bones, organs, soft tissues, and blood vessels to identify abnormalities.
- Indications: CT scans are commonly used to detect injuries, tumors, infections, and vascular diseases.
- Diagnosis process: The scan involves lying still on a table that moves through a donut-shaped machine emitting X-rays from multiple angles.
- Treatment planning: Results aid in diagnosing conditions such as stroke, cancer staging, or internal injuries and guiding biopsies or surgeries.
- Preparation: Some scans require contrast agents to be ingested or injected to enhance image quality.
- Outcomes: Most scans last only minutes and provide quick results for timely medical decisions.
This non-invasive technique offers precise anatomical information crucial for comprehensive patient care in numerous medical scenarios. It is widely valued for its speed and accuracy in clinical diagnosis.