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May 9, 2026Journal of Nuclear Medicine and Molecular Imaging0 citationsOpen Access

A case of ischemia with non-obstructive coronary artery associated with coronary microvascular dysfunction diagnosed by coronary angiography and SPECT

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KWKaitao WangHZHan ZhangJZJiajia Zhang

Key Result

Combined assessment using angiography and D-SPECT diagnosed microvascular dysfunction (caIMR 40.6, global CFR 2.18) in a 69-year-old female with INOCA, enabling targeted therapy and symptom relief.

Key Points

  • The aim was to investigate ischemia due to coronary microvascular dysfunction despite non-obstructive coronary arteries.
  • Evaluated a 69-year-old female with chest pain using coronary angiography and SPECT.
  • Measured fractional flow reserve (FFR) and microcirculatory resistance (IMR) during angiography.
  • Utilized D-SPECT for myocardial perfusion assessment.
  • Functional assessments revealed a coronary angiography-derived fractional flow reserve (caFFR) of 0.97 and index of microcirculatory resistance (caIMR) of 40.6.
  • Normal myocardial perfusion was confirmed with D-SPECT (SSS = 0, SDS = 0).
  • Impaired coronary flow reserve (CFR) measured at 2.18, indicating microcirculatory dysfunction.

Study Design

Type

Case Report (n=1)

Structured PICO

P
Population
A 69-year-old female presenting with typical chest pain, diagnosed with ischemia with non-obstructive coronary artery disease (INOCA) and coronary microvascular dysfunction (CMD).
I
Intervention
Combined assessment using coronary angiography-derived fractional flow reserve (caFFR), coronary angiography-derived index of microcirculatory resistance (caIMR), and Cadmium-zinc-telluride single-photon emission computed tomography (D-SPECT) to guide individualized pharmacological treatment.
O
Outcome
Diagnosis of ischemic mechanisms and symptomatic relief.patient reported

Integrating coronary angiography-derived physiological indices with D-SPECT provides a comprehensive framework for diagnosing and managing coronary microvascular dysfunction in patients with INOCA.

Abstract

Ischemia with non-obstructive coronary artery disease (INOCA) is frequently driven by coronary microvascular dysfunction (CMD) but remains difficult to diagnose using conventional angiography alone. A 69-year-old female presented with typical chest pain. Coronary angiography (CAG) revealed no stenosis ≥ 50%, with slow flow in the right coronary artery (RCA). Functional assessment showed a coronary angiography-derived fractional flow reserve (caFFR) of 0.97 and a coronary angiography-derived index of microcirculatory resistance (caIMR) of 40.6 in the RCA. Cadmium-zinc-telluride single-photon emission computed tomography (D-SPECT) showed normal myocardial perfusion (summed stress score SSS = 0, summed difference score SDS = 0), while global coronary flow reserve (CFR) was 2.18 (left anterior descending LAD: 1.78, left circumflex LCX: 2.69, RCA: 2.46), indicating impaired microcirculatory function. The combined assessment established a framework integrating coronary anatomical, left ventricle (LV) function, and CMD. This approach enabled individualized pharmacological treatment targeting microcirculation and anti-ischemia therapy, resulting in symptomatic relief. This strategy precisely reveals ischemic mechanisms in the absence of significant stenosis, optimizing diagnosis, treatment, and prognostic assessment.

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Cite This Study

Wang et al. (2026) conducted a case report in Ischemia with non-obstructive coronary artery disease (INOCA) (n=1). Combined assessment using coronary angiography (caFFR, caIMR) and D-SPECT was evaluated. Combined assessment using angiography and D-SPECT diagnosed microvascular dysfunction (caIMR 40.6, global CFR 2.18) in a 69-year-old female with INOCA, enabling targeted therapy and symptom relief.

synapsesocial.com/papers/69fed0e2b9154b0b82877f6ehttps://doi.org/10.65457/jnmmi-2026-0021
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