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NP CHRONICLES Incidental Pulmonary Nodules & Other Incidental Chest CT
Findings A practical framework for the nodule you weren't looking for — plus the thyroid, coronary, and abdominal findings that come along for the ride |
Clinical
education for NP students and new graduates
• Board-relevant •
Based on a Pri-Med CME lecture by Stephen Bujarski, MD (Baylor College
of Medicine / Michael E. DeBakey VA Medical Center)
A
patient falls off a step stool, bruises a rib, and walks out of the ER with a
lung nodule nobody was looking for. It happens constantly: incidental pulmonary
nodules are detected on roughly 30% of all chest CT scans, translating to about
1.6 million people per year in the U.S. who are handed a result they never
expected — and a clinician (often you) who has to decide what to do about it.
The good news: 90–95% of these nodules are benign. The job is figuring out,
systematically, which ones aren't — and knowing what to do with the thyroid
nodule, the coronary calcification, or the liver lesion that showed up in the
same scan.
|
CLINICAL BOTTOM LINE |
|
●
An incidental pulmonary
nodule (IPN) is a well-defined lesion <3 cm, completely surrounded by lung
parenchyma, unrelated to the reason imaging was ordered. ●
Management hinges on
nodule size, morphology (solid vs. subsolid), and the patient's individual
risk — not on reflexive anxiety about cancer. ●
The Fleischner Society
2017 guidelines govern truly incidental nodules; Lung-RADS governs nodules
found on formal lung cancer screening LDCT — know which framework you're in. ●
Small nodules aren't the
only incidental finding worth your attention: thyroid nodules, coronary
calcification, aortic aneurysms, and abdominal organ lesions are common
stowaways on chest CT. |
|
CASE FROM PRACTICE — Case 1 |
|
A
66-year-old man is seen in clinic after an ER visit for chest pain following
a fall off a step stool. A chest X-ray showed no rib fracture but a vague
opacity in the right upper lobe, prompting a CT chest. He's told the scan is
abnormal and to follow up with his primary care clinician. History:
former smoker, quit ~6 years ago, smoked 1 pack/day since age 15 — a ~45
pack-year history. The nodule: 16 mm, right upper lobe, solid, spiculated. Using
a validated risk calculator (Mayo Clinic model — age, nodule diameter,
smoking status, extrathoracic cancer history, upper lobe location,
spiculation, and optional PET uptake), his probability of malignancy came
back at 60.1%, placing him solidly in the intermediate-to-high risk range. He
proceeded to VATS wedge and frozen resection; cancer was detected
intraoperatively, so the surgeon completed a lobectomy with lymph node
dissection. Pathology:
non-small cell carcinoma, invasive adenocarcinoma, poorly differentiated.
Pathologic stage pT1b, pN0, M0 — Stage I. He was placed on post-operative
surveillance. |
Defining
the Incidental Pulmonary Nodule
●
Incidental: a finding
unrelated to the chief complaint and not pertinent to the immediate reason for
the visit.
●
Lung nodule: a well-defined
lesion, completely surrounded by pulmonary parenchyma, measuring less than 3 cm
in size.
Because
only about a quarter of these nodules turn out to be cancer-adjacent concerns,
the instinct to reflexively chase every finding with more imaging or biopsy
isn't just inefficient — it can drive unnecessary invasive procedures. A
systematic, risk-stratified approach is the whole point of the guidelines
below.
Causes of pulmonary
nodules
The
differential is broad. Malignant neoplasia (bronchogenic carcinoma,
carcinoid/neuroendocrine tumors, metastasis, lymphoma) sits alongside benign
neoplasia (hamartoma, chondroma, fibroma, neural tumor, hemangioma), infectious
causes (tuberculosis, fungal infection, lung abscess, round pneumonia,
nontuberculous mycobacteria, nocardia, septic embolus), inflammatory disease
(granulomatosis with polyangiitis, rheumatoid nodule, sarcoidosis), vascular
lesions (AV malformation, hematoma, pulmonary artery aneurysm, pulmonary
infarct), and bronchial lesions (bronchogenic cyst, mucocele, sequestration).
Three
Pathways to Discovery — Three Different Frameworks
How
a nodule was found determines which guideline applies. Conflating these
pathways is a common source of over- or under-management.
●
Incidental discovery
(imaging obtained for an unrelated reason) → Fleischner Society 2017
guidelines, or the parallel American College of Radiology (ACR) incidental
findings algorithm.
●
Lung cancer screening
low-dose CT → Lung-RADS 2022, a distinct structured reporting and management
system.
●
Symptom-driven evaluation
(hemoptysis, unexplained weight loss, persistent cough) → managed on its own
clinical merits, generally with a lower threshold for tissue diagnosis
regardless of nodule size.
Nodule morphology
Nodules
are first sorted as solid or sub-solid (SSN). Sub-solid nodules are further
divided into part-solid (semi-solid) and pure ground-glass (GGO) nodules. This
distinction matters because solid and sub-solid nodules carry different natural
histories and follow different Fleischner follow-up schedules — ground-glass
and part-solid nodules, in particular, can be slow-growing and require longer
surveillance windows before a decision point is reached.
Fleischner
Society 2017 Guidelines
The
Fleischner Society is an international multidisciplinary group — radiology,
pathology, pulmonary medicine, epidemiology, and thoracic surgery — founded in
1969 to build consensus recommendations for chest imaging. Their solid-nodule
guidelines were first published in 2005 and most recently updated in 2017.
These guidelines apply specifically to nodules discovered outside the context
of formal lung cancer screening, and require the clinician to classify the
patient as low risk (<5% annual chance of lung cancer) or high risk (>5%)
based on factors like older age, heavy smoking history, nodule margin
characteristics, and upper lobe location.
A: Solid nodules
|
Nodule type |
<6 mm
(<100 mm³) |
6–8 mm
(100–250 mm³) |
>8 mm
(>250 mm³) |
|
Single, low
risk |
No routine
follow-up |
CT at 6–12 mo,
then consider CT at 18–24 mo |
Consider CT at
3 mo, PET/CT, or tissue sampling |
|
Single, high
risk |
Optional CT at
12 mo |
CT at 6–12 mo,
then CT at 18–24 mo |
Consider CT at
3 mo, PET/CT, or tissue sampling |
|
Multiple, low
risk |
No routine
follow-up |
CT at 3–6 mo,
then consider CT at 18–24 mo |
CT at 3–6 mo,
then CT at 18–24 mo |
|
Multiple, high
risk |
Optional CT at
12 mo |
CT at 3–6 mo,
then CT at 18–24 mo |
CT at 3–6 mo,
then CT at 18–24 mo |
Comments: nodules <6 mm generally don't require routine
follow-up, but certain high-risk patients with suspicious morphology, upper
lobe location, or both may still warrant a 12-month follow-up scan. For
multiple nodules, use the most suspicious nodule to guide management —
follow-up intervals may vary by size and risk.
B: Sub-solid nodules
|
Nodule type |
<6 mm
(<100 mm³) |
≥6 mm
(>100 mm³) |
|
Single, ground
glass |
No routine
follow-up |
CT at 6–12 mo
to confirm persistence, then CT every 2 years until 5 years |
|
Single,
part-solid |
No routine
follow-up |
CT at 3–6 mo
to confirm persistence. If unchanged and solid component <6 mm, annual CT
for 5 years |
|
Multiple |
CT at 3–6 mo;
if stable, consider CT at 2 and 4 years |
CT at 3–6 mo.
Subsequent management based on the most suspicious nodule(s) |
Comments: in certain suspicious nodules <6 mm, consider
follow-up at 2 and 4 years — if a solid component or growth develops, consider
resection. Part-solid nodules cannot truly be classified as such until the
solid component is ≥6 mm; persistent part-solid nodules with a solid component
≥6 mm should be considered highly suspicious. Multiple pure ground-glass
nodules <6 mm are usually benign, but selected high-risk patients may
warrant follow-up at 2 and 4 years.
Source: MacMahon H, Naidich DP, Goo
JM, et al. Guidelines for
Management of Incidental Pulmonary Nodules Detected on CT Images: From the
Fleischner Society 2017. Radiology 2017;284:228-243.
Practical
Guidance at the Point of Care
●
Individual and nodule risk
factors: age, smoking history, personal or family history of cancer; nodule
size, shape, morphology, and whether it's single or multiple.
●
Prior imaging: is there
anything to compare against? If so, is the nodule new, growing, or stable?
●
Ask yourself whether there
are corresponding signs or symptoms pointing toward cancer, infection, or
systemic disease — the nodule rarely exists in isolation from the rest of the
history.
Risk predictor models
Multiple
validated models estimate the probability that a given nodule is malignant,
using overlapping independent predictors: age, smoking history, personal cancer
history, nodule diameter, spiculation, and nodule location. Models differ by
the population they were derived from — the Mayo Clinic model, the Brock model,
and a VA-derived model are commonly cited, built respectively from general
clinical populations, screening cohorts, and veterans. Many clinicians also
estimate probability intuitively — a reasonable approach when validated against
these formal models, though studies suggest gestalt alone often under- or
over-estimates risk compared to a structured calculator.
|
Risk
category |
Probability
of malignancy |
|
Low |
<5% |
|
Intermediate |
5% to 65% |
|
High |
>65% |
|
NUANCE TO REMEMBER |
|
Risk
stratification isn't just three buckets — it should change what you do next.
One commonly cited approach: consider watchful waiting only at very low
post-test probabilities (<2%), biopsy at lower post-test probabilities
(2–20%), and surgical evaluation at higher post-test probabilities (>70%).
Shared decision-making belongs at every step in between. |
Sampling options
●
Bronchoscopically —
including newer robotic-assisted bronchoscopic biopsy platforms for peripheral
lesions.
●
Percutaneously, via
interventional radiology (CT-guided biopsy).
●
Surgical resection —
including VATS wedge biopsy with intraoperative frozen section, which can be
extended to lobectomy and lymph node dissection if malignancy is confirmed on
the table.
The
ACR Approach to Incidental, Asymptomatic Solid Nodules
The
American College of Radiology's Incidental Findings Committee publishes a
parallel white paper and decision algorithm for managing incidental thoracic CT
findings. For patients with limited life expectancy, significant comorbidities,
or age under 35, management depends on the individual clinical scenario rather
than a fixed protocol. For the general population age 35 and older, nodules are
first sorted by risk (low risk <5%, high risk ≥5%) and then by size:
|
Risk
category |
<6 mm |
6–8 mm |
>8 mm |
|
Low risk
(<5%) |
No further
workup |
CT at 6–12 mo;
then consider at 18–24 mo |
CT at 3 mo or
PET/CT and/or tissue sampling |
|
High risk
(≥5%) |
No follow-up,
or CT at 12 mo |
CT at 6–12 mo;
then at 18–24 mo |
CT at 3 mo or
PET/CT and/or tissue sampling |
Source: Managing Incidental Findings on Thoracic CT: Lung
Findings. A White Paper of the ACR Incidental Findings Committee. J Am Coll
Radiol. 2021;18(9):1267-1279.
Shared
Decision-Making
Hearing
the words "lung cancer" — even in the context of an incidental nodule
with a low probability of malignancy — is stressful, and it's normal for
patients to be anxious even when the actual risk is small. Patient education
materials, such as the American Thoracic Society's "What is a Lung
Nodule?" handout, are a useful anchor for these conversations: covering
why the finding was flagged, how common nodules are, whether they cause
symptoms, what determines the size-based follow-up interval, and what active
surveillance will actually look like going forward. Framing next steps as a
shared decision — not a unilateral order for more scans or a biopsy — improves
both understanding and follow-through.
|
CASE FROM PRACTICE — Case 2 |
|
A
63-year-old woman comes to clinic for an incidental lung nodule found on a CT
chest obtained for persistent cough following a COVID-19 diagnosis. Former
smoker, quit ~5 years ago, 0.5–1 pack/day for 33 years. A
repeat CT chest around 6 months later shows interval growth of approximately
3 mm. Growth on a follow-up scan is itself a significant data point,
independent of the original size or morphology classification, and generally
escalates the management pathway toward tissue sampling. She
underwent robotic-assisted bronchoscopic biopsy. Pathology: adenocarcinoma,
moderately to poorly differentiated, with acinar and lepidic growth patterns. |
|
CASE FROM PRACTICE — Case 3 |
|
A
73-year-old male veteran is found to have a nodule on chest X-ray during a
pre-operative evaluation, prompting a CT chest. He describes a chronic
"smoker's cough," is a former smoker (quit ~1 year ago, 48
pack-years), and reports an unintentional 10-lb weight loss over 6 months. The
nodule was 13 mm; a risk calculator using his age, smoking history, and
nodule characteristics returned a 64.5% probability of malignancy — high
enough to warrant tissue sampling rather than watchful waiting. Interventional
radiology performed a CT-guided biopsy of the left upper lobe nodule.
Pathology: caseating granulomatous inflammation with acid-fast positive
organisms. Sputum AFB cultures later returned positive for non-TB
mycobacteria (Mycobacterium avium complex, MAC) — not cancer. This
case is a useful counterweight to Cases 1 and 2: even a nodule with a high
calculated malignancy probability and a compelling clinical story (weight
loss, smoking history, chronic cough) can turn out to be granulomatous
infection. High-probability doesn't mean certain, and tissue sampling exists
precisely to settle that distinction rather than to confirm a preconceived
diagnosis. |
Incidentally detected
nodules on incomplete thoracic CT scans
Not
every CT that captures part of the lung was intended as a chest CT — abdominal
or cardiac CTs frequently image lung bases incidentally. General guidance for
nodules found this way:
●
Small nodules (<6 mm):
no further investigation is generally recommended.
●
Intermediate size (6–8 mm):
recommend a dedicated full CT chest, with timing based on risk profile (roughly
3–12 months), then follow Fleischner guidelines from there.
●
Nodules >8 mm: obtain a
full CT chest promptly and follow Fleischner guideline recommendations.
Lung
Cancer Screening and Lung-RADS
Formal
lung cancer screening is a distinct pathway with its own eligibility criteria
and its own structured reporting system — don't apply Fleischner
incidental-nodule intervals to a screening-detected nodule, and vice versa.
|
USPSTF SCREENING CRITERIA
(GRADE B) |
|
The
USPSTF recommends annual screening for lung cancer with low-dose CT (LDCT) in
adults aged 50 to 80 years who have a 20 pack-year smoking history and
currently smoke or have quit within the past 15 years. Screening should be
discontinued once a person has not smoked for 15 years, or develops a health
problem that substantially limits life expectancy or the ability or
willingness to undergo curative lung surgery. |
Lung-RADS
(American College of Radiology, 2022 version) is the structured category system
applied to screening LDCT findings, from Category 0 (incomplete) through
Category 4X (highest suspicion). Two categories are worth knowing by name:
|
Lung-RADS
category |
Estimated
population prevalence |
Management |
|
0 — Incomplete |
~1% |
Comparison to
prior CT needed, additional imaging needed, or short-interval (1–3 mo) LDCT
if findings suggest an inflammatory/infectious process |
|
S —
Significant or potentially significant |
~10% |
Modifier
applied to any category for clinically significant findings unrelated to lung
cancer; managed as appropriate to the specific finding |
Source: Adapted from JAMA. 2021;325(10):962-970, and American
College of Radiology Lung-RADS v2022 (release November 2022).
Beyond
the Nodule: Other Incidental Findings on Chest CT
Category
S exists because a chest CT frequently captures more than lungs. Some of these
findings need real follow-through of their own:
Symptom-worthy pulmonary
findings
●
A patient reporting cough,
upper respiratory symptoms, dysphagia, or recurrent bronchitis deserves a
direct conversation about symptoms alongside the imaging review — not just a
nodule follow-up plan.
●
Chronic undiagnosed
findings are sometimes uncovered this way, including non-TB mycobacterial
infection (as in Case 3), tree-in-bud opacities, and bronchiectasis — findings
a patient may have been living with under a label of "smoker's
cough."
Other structures commonly
flagged
●
Pulmonary: emphysema,
pleural effusion, pulmonary fibrosis / interstitial lung disease.
●
Thyroid nodule.
●
Coronary artery
calcification, aortic aneurysm.
●
Pancreatic, hepatic, or
renal lesions.
●
Lymphadenopathy.
None
of these are the primary reason the scan was ordered, but each carries its own
downstream workup — and each is a reminder to actually read the full radiology
report, not just the line about the lung nodule.
Key
Takeaways
●
Define it correctly: an IPN
is <3 cm, well-defined, surrounded by parenchyma, and unrelated to why the
scan was ordered — and roughly 90–95% of these are benign.
●
Match the guideline to the
discovery pathway: Fleischner 2017 for truly incidental nodules, Lung-RADS for
screening-detected nodules, and clinical judgment for symptom-driven workups.
●
Risk-stratify using
validated models (Mayo, Brock, VA) rather than gestalt alone, and let the
resulting probability — not anxiety — drive the choice between surveillance,
biopsy, and surgical referral.
●
Growth on interval imaging
is a management-changing finding in its own right, independent of the original
size or morphology category.
●
A high pretest probability
of malignancy doesn't guarantee cancer — granulomatous infection, NTM, and
other benign causes remain on the differential until tissue says otherwise.
●
Read the whole report:
incidental thyroid, cardiac, and abdominal findings on chest CT are common and
often need their own referral.
References
MacMahon H, Naidich DP, Goo JM, et al. Guidelines for Management
of Incidental Pulmonary Nodules Detected on CT Images: From the Fleischner
Society 2017. Radiology. 2017;284(1):228-243.
Managing Incidental Findings on Thoracic CT: Lung Findings. A
White Paper of the ACR Incidental Findings Committee. J Am Coll Radiol.
2021;18(9):1267-1279.
US Preventive Services Task Force. Screening for Lung Cancer: US
Preventive Services Task Force Recommendation Statement. JAMA.
2021;325(10):962-970.
American College of Radiology. Lung-RADS v2022. Release date
November 2022.
Evaluating the Patient with a Pulmonary Nodule. JAMA.
2022;327(3):264-273.
Tanner NT, et al. Physician Assessment of Pretest
Probability of Malignancy and Adherence with Guidelines for Pulmonary Nodule
Evaluation. Chest. 2017;152(2):263-270.
Baldwin DR, et al. Solid and Subsolid Nodule Classification.
Thorax. 2015;70:794-798.
Lazarus, Ost. The Solitary Pulmonary Nodule — Deciding When to
Act? Seminars in Respiratory and Critical Care Medicine. 2013;34(6).
American Thoracic Society Patient Education Series. What is a
Lung Nodule? Am J Respir Crit Care Med. 2016;193:P4-P54 (updated June 2020).
Bujarski S. Incidental Pulmonary Nodules & Other Incidental
Findings on Chest Imaging. Pri-Med Institute CME, Baylor College of Medicine /
Michael E. DeBakey VA Medical Center.
NP Chronicles — Clinical education for NP
students and new graduates. For educational purposes; always practice within
your scope and consult current full-text guidelines for patient-specific
decisions.