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Kwong, K. K.

Publications and source records attributed to Kwong, K. K..

2 recordsLinked to original sources

Cerebrovascular responses to O2-CO2 exchange ratio under brief breath-hold challenge in patients with chronic mild traumatic brain injury

Breath-by-breath O2-CO2 exchange ratio (bER) is a respiratory gas exchange (RGE) metric, which is the ratio of the changes in the partial pressure of O2 ({Delta}PO2) to CO2 ({Delta}PCO2) between endinspiration and end-expiration, has been demonstrated to characterize the cerebrovascular responses to breath-hold challenge in healthy individuals. We aimed to explore if bER could characterize cerebrovascular responses in patients with chronic mild traumatic brain injury (mTBI) under breath-hold challenge. We also investigated the correlation between bER and the severity of post-concussion symptoms. Blood-oxygenation-level-dependent (BOLD) images were acquired using functional magnetic resonance imaging (fMRI) on eleven patients with chronic mTBI and eleven controls without brain injury history when performing a breath-hold task. Time series of RGE metrics of {Delta}PO2, {Delta}PCO2, and bER were computed, and their cross-correlation with regional change in BOLD ({Delta}BOLD) was calculated. Symptom burden was assessed using the Rivermead Post Concussion Questionnaire (RPQ), and its correlation with RGE changes was also measured. Compared with controls, a diffuse decrease in the correlation between regional {Delta}BOLD and bER was found in the brain of mTBI patients (pfdr<0.05). No significant difference was found between patients and controls for the correlation of regional {Delta}BOLD with {Delta}PO2 and {Delta}PCO2. The averaged changes in bER ({rho}=0.79, p=0.01) and {Delta}PO2 ({rho}=0.70, p=0.03) in breath-hold epochs decreased with increased symptom severity indicated by RPQ scores. Our imaging and symptom severity findings suggest that bER can be used to characterize cerebrovascular responses to breath-hold in mTBI patients. RGE may contribute to the post-concussive symptom severity.

neuroscience↗

Functional magnetic resonance imaging of regional impaired cerebrovascular reactivity for migraineurs in the interictal state

There is still an unmet need of mapping the potential impairment of cerebrovascular reactivity (CVR) in episodic migraineurs in the interictal state. We mapped CVR of 6 episodic migraineurs and 5 headache-free controls (HC) with blood oxygenation level dependent (BOLD) functional magnetic resonance imaging (fMRI) under carbon dioxide (CO2) challenge of 30-second epochs with elevated end-tidal partial pressure of CO2 (PETCO2) by 4-8mmHg. Three migraineurs have migraine without aura (MOA) and the other three have migraine with aura (MA). We found that only MOA subjects showed a reduced or negative BOLD response to CO2 at the red nucleus. All 3 MOA subjects were characterized by bilateral posterior communicating artery hypoplasia (bPCAH) identified by MR angiography (MRA). MOA and HC subjects did not show any significant difference in BOLD responses to CO2 challenge in cortical and white matter while MA subjects showed poor positive association between BOLD responses and PETCO2 in large territories of the cortex and white matter tracts. The combined use of fMRI under CO2 challenge and MRA presented a unique approach to investigate the mechanisms of episodic migraine in the interictal state demonstrating for the first time negative CVR at the red nucleus of the midbrain in patients with MOA. CVR maps obtained from both the midbrain and cortical regions provided various signatures to explore the differences between migraineurs and HC and between MOA and MA.

neuroscience↗